Wednesday, October 16, 2019
Who can enforce the articles of association Essay
Who can enforce the articles of association - Essay Example This sort of contract (statutory contract) has certain features distinct from an ordinary contract. These features were explained by the Court of Appeal in Bratton Seymore Service Co Ltd v Oxborough. These features include: i. Origin. The contract being a statutory one originates from the statute instead of an agreement between the parties. By virtue of the fact that it is statutory, it cannot be invalidated on grounds of misrepresentation, mistake, undue influence or duress. iii. Ammendment. The contract can only be amended by a special majority. This means that only a minimum of three-quarters of the members are required to vote in favor of the resolution. This is encapsulated under Sec. 21. With the contracts characterized by the above features the question of enforcement becomes a major issue mainly because of the last feature- Rights. Not all members of the company have the right to enforce rights contained in the articles. So this raises the question- who has such rights? The enforcement of statutory contracts has been the subject of constant academic debates due to contradictory case law. This will be illustrated by two cases. The following two cases illustrate the complexities that arise when a member tries to enforce a companyââ¬â¢s articles. In this case, the articles contained a clause stating that a certain member would be appointed as the companyââ¬â¢s solicitor. This member was not appointed as such and proceeded to unsuccessfully sue the company for breach. The court held that the member could not sue simply because there was no contractual relationship between a member as solicitor and the company. The companyââ¬â¢s articles of association contained a clause stating that ââ¬Ëno resolution of directors on certain matters would be valid if either of two named managing directors voted against the resolutionââ¬â¢. The plaintiff was one of the managing directors and he voted against this resolution but the company
Tuesday, October 15, 2019
Introduction to Global Business Assignment Example | Topics and Well Written Essays - 1250 words
Introduction to Global Business - Assignment Example two decades, China has become an attractive option for foreign entrepreneurs to invest because of the low wages on offer and access to cheap materials. However, just because China has a lot of economic potential does not mean that it is easy for foreign investors to succeed there. The number one determining factor of whether a foreign entrepreneur is successful or not largely comes down to culture. Chinese culture has a long history that is steeped in traditional, yet it is becoming more open to the west as Chinese leaders realize that economic growth can benefit the masses. This paper will discuss in detail about what to do when setting up business in China and what should not be done. The stories of three British entrepreneurs (Tony, Peter, and Vance) will provide examples that show the good and the bad of conducting business in China. When doing business in China, it is important to have respect for the local people and cultural customs. It was not until recently that China was opened up to the world, so the country naturally has a very low opinion of foreigners and expects them to make every effort to do business the Chinese way. Because of the obvious cultural differences, such as in language and communication techniques, it is a must to get some inside local knowledge on how to conduct business there. In ââ¬Å"Brits get rich in China,â⬠Tony was the only one to realize this before he opened business there; he managed to find a Chinese business partner, Miss Dy (Akmadakmal 2012). Tony even admitted that if he was going to do well in China, then it is a must to find a local Chinese business partner. Also, Peter eventually chose to work with a Chinese business partner, Cecil P., but only after failing to succeed by himself (Akmadakmal 2012). Unlike the other two entrepreneurs, Peter had never visited China before he decided to make the move there to sell his air conditioning energy saving units; he is also 70 years old, which shows maybe that he was unwilling to
The method for carrying Essay Example for Free
The method for carrying Essay My aim is to investigate the mathematical propagation of bad tomatoes This is essentially an investigation of patterns derived from a simple set of rules for this propagation, in the manner of a simplified life genesis program. The rules are as followed: 1. The first hour, any one of the tomatoes (depending on the investigation) turns bad 2. From that hour on, any tomato touched by a bad tomato will turn bad itself, on an hourly basis. 3. Tomatoes are constrained within an nn grid, which restricts propagation of bad tomatoes. As visible from the rules, this allows for creation of simple models to show the propagation of bad tomatoes. From these, I hope to derive formulae, or sets of rules if formulae are not possible, to make logical predictions. We shall define the variables as will be used in the description of this investigation as follows: n The hour in which a tomato turns g The grid size (g2) x The number of turned tomatoes in each n h The number of hours taken for all tomatoes to go bad t Total number of turned tomatoes (equal to g2) Contents Item Page number Introduction 1 Contents 2 Mapping of tomatoes in the middle of a side 3 Tomatoes in the corner 7 Conclusion. This grid represents the propagation of bad tomatoes in an nxn square, covering grids up to size 2424. Some of the results for this data are plotted on the table below: While at first it seems the patterns in this table should be obvious, this is deceptive. Only by splitting the table into three regions do we see the separate patterns defining the table. These regions, as shown in the following table, allow patterns to emerge. These patterns do not, as you would expect, work down with different numbers in the same grids, but instead work across with the same number in different grids. In the first region (yellow), we see that, in every case, x is equal to n+n-1. The latter two regions (green and purple) are substantially harder, and require a sequential approach. Naturally, the first step in devising a formula, to take n and g and return x, is determining which region the number lies in. This is a simple matter of comparing g with n. Once we know the region, we can use a set op steps to calculate the number x. The method for carrying out this operation will be described shortly. The left grid shows an updated version of my results demonstrating the three regions yellow, green and purple, as well as some extra data formulated from the patterns observed. This is the first step in trying to formulate equations to work on all situations. Before moving on to the main essence of the project, finding a formula to derive x from n and g, we shall examine a few other formulae not directly related to this but still relevant to the investigation. Ã To find the total number of hours taken for all tomatoes to go bad within a grid, you use a formula depending on g. This formula also depends on whether g is odd or even: Ã If g is odd, then h=((g+1)/2)-1 If g is even then h=(g/2)+1 Ã In all square grid situations, t is always g2. The number of tomatoes to turn each hour in an infinite grid, starting on the side in the centre is equal to 2n-1. The total number of tomatoes that are bad after each hour is equal to n2. We shall briefly describe the patterns used to expand this table and in the following formulae: Yellow numbers always go up by 0 each grid size Green numbers go up by 1 Purple numbers go up by 3 Green/yellow boundaries go up by 1 Purple/green boundaries go up by 2 We now move on to analyse the main problem: the individual number of tomatoes to turn in each hour. This, as mentioned earlier, is a much more complicated program, and requires division of the grid into three regions. The following steps attempt to demonstrate how, and why, this is done. 1. The first step is to compare n with g, to work out which region the answer is likely to lie in. For this example we shall use two numbers, grid size 24 and tomato number 25. Compare n with g: If ng, x lies in the purple region If n=g, x lies in the green region If gn, x lies in green or yellow and further calculation is needed: If g is odd: if g= n-((g-1)/2) x is yellow, and if gn-((g-1)/2) then x is green If g is even: if g= n-(g/2) x is yellow, and if gn-(g/2) x is green We then move to region specific instructions: Yellow x =2n-1 Green x =g Purple. (Calculating purple numbers is substantially more complex) (Also note the existence of bln, a new variable we introduce here whose meaning will be explained later) Do n mod 3: N mod 3 = 0 then Bln = 2(n/3) N mod 3 = 1 then Bln = (2((n+2)/3))-1 N mod 3 = 2 then Bln = 2((n+1)/3) Do g bln Again, look at n mod 3: If 0, multiply last number by 3 and add 1 If 1, multiply last number by 3 and add 2 If 2, multiply last number by 3 and add 3 Therefore, by this process we can calculate any number from the grid size and the hour. For our example, g = 24 and n = 25, we would do the following: 1.n g, therefore x is purple 2. 25 mod 3 is 1, therefore bln = 2(27/3))-1 = 17 3. 24 17 is 7 4. 25 mod 3 is 1, therefore we: 5. Multiply 7 by 3 = 21 6. And add 2, giving 23 I have checked this with both an extended table of results (created using the patterns found earlier), and with a small excel macro designed to count the numbers of tomatoes turned each hour. Both yield the same result. Ã The left is the segment from my expanded table showing the result. The 23 in the middle of the table represents grid size 24 and hour 25 what my formula predicted. The left here is the automatic count from my macro. The data reads (for a 2424 table) hour,count (or n,x). This also agrees with my prediction. We shall here briefly explain how the purple formula works (formulas for both green and yellow are self-explanatory). I observed that the base line (the line marking the bottom of the purple section- representative of the number of tomatoes to turn bad in the final hour) of the purple section follows a three stage recurring pattern. Because we are working from the base line to reach our result, as the numbers go up by 3 each time, calculating the start point and value of the base line for each hour was essential. To work easily with a three -stage recurrence, we needed to work in base 3, the easiest implementation of which involves modulo arithmetic. By doing n mod 3, we work out which stage of the cycle represents the first grid size for tomatoes to turn in a particular hour. Once the cycle is split, we can show different formulae for each stage, derived from observance of the patterns.
Sunday, October 13, 2019
Upgrading Existing Land Rover Defenders Powertrain
Upgrading Existing Land Rover Defenders Powertrain Upgrade the existing Land Rover Defenders powertrain Introduction The design teams project aim: To propose a program and new engine design to upgrade the existing Land Rover Defenders powertrain The following report discusses weaknesses of the current LR Defender along with a subsequent review of advanced engine technologies. Finally the design targets for the new proposed engine are defined with all necessary parameters calculated and justified. The design team have also considered the cost, manufacturability and marketing affects of the new engine as well as the performance requirements. Benchmarking The current LR Defender engine will be critically analysed in-relation to the vehicles main competitors in the market place. This will allow the weaknesses of the current engine model to be determined and thus rectified for the new specification engine. The engine throughout the following section will be critically analysed in the following main areas; Acceleration speed performance Engine power effectiveness (MEP and power density) Emissions of harmful gases and particulates Fuel economy The potential customer perception of vehicles engine and other performance criterion (including value for money). The following competitor vehicles were researched and compared to the current LR Defender to establish baseline requirements for the new spec engine; Jeep Wrangler Unlimited (regarded as the main competitor) Mercedes-Benz G-Class G550 Nissan Patrol GR Toyota Land Cruiser 3.0 D For a table of the above vehicles full specifications, benchmarked with the existing LR Defender, refer to Fig.4.7 in Appendix.1. Analysis Discussion By reviewing the benchmarking table, Fig.4.7 in Appendix.1, it becomes apparent that the current LR Defender is slower than its competitors by taking 14.7 seconds to reach 0 62 mph compared with the Jeep Wranglers time of 11.7 seconds. Although the LR Defender is not expected to have a very fast acceleration time, as it is an off-utility vehicle, potential customers may be discouraged by the Defenders slow acceleration characteristics compared to the Jeep and its other competitors. The fastest acceleration time is achieved by the Mercedes-Benz G550 which can go 0 62 mph in an impressive 6.1 seconds with its supercharged 5L V8 petrol engine. The cost of the Mercedes-Benz G550 however is 50,250 (compared to 27,610 for the Defender) and has twice the engine capacity of the Defender, so is expected to be far more powerful with its petrol engine compared to the 2.4L turbocharged diesel Defender engine. The design teams proposal is that the current LR Defender engine should at least match or beat its rival the Jeep Wrangler in areas such as acceleration time from 0-62 mph as the Defender is more expensive than the Jeep and approximately 230kg lighter. Another issue is that the Defenders top speed is the lowest out of all its competitors. This low top speed has also attracted criticism from motoring journalist Jeremy Clarkson (2006) who stated that the biggest drawback of the LR Defender is its weak engine and thus corresponding slow acceleration and top speed. The new LR Defender engine must eliminate these same criticisms to become more competitive in the market place and thus more appealing to potential customers. Vehicle Power per cylinder (kW/cylinder) Power Density Ratio (kW/L) LR Defender 2.4L D 4inl 22.50 37.48 Jeep Wrangler 2.8L D 4inl 32.50 46.81 Mercedes Benz G550 5.5L V8 petrol 47.75 70.23 Nissan Patrol GR 3.0 D 4inl 29.50 39.96 Toyota Land Cruiser 3.0D 4inl 30.75 41.25 Fig.1.0 compares the effectiveness of the engines that were benchmarked in detail. It shows that the Defenders current engine has the lowest power density in terms of engine capacity. This is a big weakness as it shows that the when not taking into account the Defenders relatively small engine capacity, its engine is vastly underpowered. The Mercedes Benz G550 as expected displays the best power density as it is a gasoline engine. The Defenders regarded closest rival in terms of target market and image, the Jeep Wrangler, also shows a much greater power density ratio. Or group propose to increase the engines the power density to be comparable with the Jeep Wrangler with at least a ratio of above 43kW/L. Vehicle Torque (Nm) MEP (Mpa) LR Defender 2.4L D 4inl 360 1.885 Jeep Wrangler 2.8L D 4inl 400 1.815 Mercedes Benz G-Class G550 5.5L V8 petrol 391 0.903 Nissan Patrol GR 3.0 D 4inl 380 1.619 Toyota Land Cruiser 3.0D 4inl 410 1.729 A weakness of the current Defender however is highlighted test drive of the vehicle by motor journalist Jeremy Clarkson (2006) for the Times Newspaper. He stated that the vehicle simply did not have enough torque to pull a horse trailer behind it at a reasonable speed. This can be backed up by the data seen in Fig.1.1 above which shows that the current Defender engine produces the least amount of torque out of all its competitors. This weakness is heavily compounded by the fact that the vehicle is marketed as an off-road vehicle and thus needs high torque requirements to be-able to navigate through steep and loose terrain effectively. As a consequence customers may be off put by the fact that the current Defender has less torque than its competitors and thus this issue will have to be addressed when upgrading the existing engine. The new engine must be made more environmentally friendly than the current engine as January 2013 will see the current Euro 5 emissions targets replaced by the Euro 6 legislation and thus stricter emissions targets. The Defender is third best out the five competitors the vehicle was benchmarked against in regards to CO2 emissions, which is an indicator for overall total emission performance. The current Defender comes second best to the Jeep Wrangler in regards to fuel economy, by achieving a combined fuel economy of 28.3 mpg. However the other diesel engine competitors, the Nissan Patrol and Toyota Land Cruiser are less fuel efficient than the Defender. When purchasing an off-road vehicle such as the Defender, fuel economy may not be the most important factor but it has become more important to potential customers over the last decade. The same could be said for the greater importance of emissions performance that potential customers may look for. The new Defender engine is likely to be more powerful and thus a better fuel economy target (comparable to 32.8mpg of the Jeep Wrangler) may be out of reach. However through reviewing and selecting technologies, the fuel economy performance could be improved slightly or at least kept the same. From analysing the Defender, by using the data displayed in Fig.4.7 (Appendix.1), it can be seen that the vehicle is neither the best nor worst performing vehicle in regards to fuel economy, but averagely in relationship to competitors. The balance of the current Defenders inline four engine configuration, according to Nunney (2006), has perfect primary balance because when one pair of pistons are moving up, the other pair are moving down at the same time. Inline four engines however do not have perfect secondary dynamic balance. This is because piston acceleration varies depending on its vertical position within the cylinder head in relation to the crankshaft that it is connected to. This leads to one pair of pistons moving faster than the other, which creates a secondary imbalance and results in the engine vibrating vertically. Nunney (2006) also explains that at low power configurations the secondary imbalance (vibration) is not too severe but can get considerably worse with increasing size and powerful engines. This may explain why the current inline 4 Defender engine has a lower displacement than its competitors, to reduce secondary imbalance vibration in order to appeal to potential customers and save costs on designing a crankshaft to damp heavy engine vibration. The following strengths are also exhibited by the current engine; Highest MEP value out of the competitors benchmarked against Best strength to weight ratio (could be due to basic interior making vehicle lighter) Potential customers may overlook the apparent power and torque shortfalls as the highly regarded Land Rover brand may persuade people to buy the vehicle anyway. Summary of existing Defender engine (compared to competitors); Weaknesses Strengths Slowest acceleration from 0 62 Mph Best Mean Effective Pressure of 1.885Mpa, better than competitor vehicles Lowest top speed of only 82 mph Highest Power to weight ratio (kW/kg) More expensive than Jeep Wrangler by >4000 even with poorer speed performance. Fuel economy is not the worst Lowest Power per cylinder produced (kW/cyl) Emission of CO2 is not the worst Secondary imbalance of straight inline four engine configuration (rivals also have this weakness) Long history of Defender may appeal to potential customers, thus engine shortcomings may be overlooked Lowest torque produced out of competitors Not the best in either fuel consumption or emissions, even with smallest capacity engine Lowest Power Density Ratio (kW/L) Current Vehicle Performance Trends Fig 1.3 shows the performance trends for Jaguar engines up to 2010. While exact performance targets cannot be extrapolated from the graph, The design group can see that the new Defender engine needs to have an increase in specific engine power. However with the increase in power, increased emissions and fuel consumption will occur. This in conjunction with Fig 1.4 below from Richardson (2010) shows how CO2 emissions have decreased despite the trend of engine power also increasing. While the trends from Figs 1.3 and 1.4 show that performance trends increase and emissions trends decrease, the group is concluding that potential customers for a LR Defender will be less likely concerned about the vehicles emissions or fuel economy compared to non-SUV vehicles customers. Thus increasing the torque (and power) of the current engine to match its competitors is prioritised. It is conceded that any improvement in fuel economy and emissions departments will be limited, but in the interests of Land Rovers image, any improvement on these characteristics will be beneficial. Advanced Engine Technology Supercharging Turbo-charging Technology Superchargers (mechanical drive driven) This is a device comprising of an air compressor to force more air into the engine. Forcing a greater amount of air (under positive pressure) into the engine provides more oxygen for the combustion process than without a supercharger. As a result more fuel can be thus provided for stoichiometric combustion reaction to occur and allowing more work per a cycle to be done. This thus increases the power output of the engine. The advantage of supercharging according to Daniels (2001) is that it multiplies the engines BMEP and torque by the amount the air compressor increases the atmospheric pressure into the engine. Supercharged engines also experience better throttle response than naturally aspirated engines. The disadvantage of using a supercharger is that it is generally less thermally efficient than the more common used turbocharger (which uses energy from otherwise wasted exhaust gas). Another drawback highlighted by Harris (2002) is that supercharging (particularly mechanical-supercharging techniques) puts extra strain on the engine and its components as they are required to withstand extra strains provided by the supercharging boost. This requires the engine to be made stronger, thus thicker, heavier and more expensive. Daniels (2001) also explains how the noise generated by a superchargers mechanical drive components can contribute to extra passenger discomfort. Turbochargers These devices consist of a turbine and a compressor and are a type of supercharger. The difference is that instead of mechanically driving a compressor to force more air into the engine, turbochargers uses the engines own exhaust gases (which would have been otherwise wasted). It does this by converting the kinetic energy from exhaust gases into rotational energy to turn a turbine. The turbine is connected to the compressor on the same shaft, thus this powers the compressor to draw in atmospheric air and pump it pressurised into the engine. The advantages of a turbocharger are same as for a supercharger as previously described of increasing engine BMEP. This is appropriate for the LR Defender which will need the extra power if being used off-road or in mountainous steep roads, which is the market the vehicle is targeted to. Turbochargers are also more thermally efficient than superchargers due to use of the otherwise wasted exhaust gas. This thus decreases exhaust emissions and fumes expelled into the atmosphere. Daniels (2001) also explains that for mainly diesel engines variable geometry turbochargers can maintain an appropriate exhaust gas speed though the turbo turbine when the engine is at low load. Disadvantages include the need for a cooler to cool exhaust gas before it enters the turbine therefore adding weight and bulk to the engine. During operation turbochargers also experience a turbo lag when the throttle is applied. As previously explained the LR Defenders competitors (particularly its main rival the Jeep Wrangler) have more powerful engines than the current Defender 2.4litre 4 cylinder engine. If upgrading the engine by increasing its cylinder capacity, more air (particularly oxygen) will need to be supplied to the cylinders for combustion. Thus the use of twin-turbochargers may be required to force more air into the cylinders to make the combustion process stoichiometric. Also the advantage of using two smaller turbochargers (twin-turbo), instead of a larger single turbocharger, is that turbo-lag is reduced. Usually a small turbocharger provides boost at low engine speeds and the second kicks in and supplies boost at higher engine speeds. There are two widely known types of twin-turbochargers called Parallel and Sequential types. When comparing the advantages and disadvantages of mechanically-driven superchargers and turbochargers it was decided to use turbochargers as they are more environmentally friendly and fuel efficient to run. The current engine for the LR Defender uses a variable geometry turbocharger and it is likely the new spec engine will also be turbocharged by the same type of unit. Variable Valve Timing Systems Camless Valve Systems Autoweek Magazine (2005) states that camless valve systems were tested in 2005 by Valeo on two Peugeot 407s successfully under extreme weather conditions and intensive testing. The valves were controlled by individual actuators and powered through solenoids to open and close valves. The advantages of camless systems, explained by Daniels (2001), include the following; Valve timing can be altered to as desired In theory some cylinders could be shut off (at low load) to allow others to run more efficiently Valve timing and lift can be matched to the needs of the engine with an estimated saving of up to 20% on fuel saving. The mechanical design of the engine can be simplified as the usage of a camshaft and other associated valve gear become redundant. The advantages however are currently overshadowed by the power needs of the camless system and the associated complexity and reliability issues if the vehicle has electrical problems. Peter Brown who is vice president of powertrain engineering and design for Ricardo stated in Autoweek Magazine (2005) It comes down to complexity and cost which sums up why camless systems are still not (although many think they eventually will be) utilised in passenger vehicle engines. For The new LR Defender engine camless systems will not be used for the disadvantages described above. Variable Valve Timing Technology Mechadyne International (2006) states that that the use of variable valve train systems can substantially reduce both fuel consumption and exhaust emissions. The amount by which the variable valve train systems reduce fuel consumption and emissions is going to be approximated to 10%. This is because, as the Bosch Automotive Handbook (2007) states, BMWs VALVETRONIC system reduces fuel consumption and exhaust emissions by over 12%. According to the Bosch Automotive Handbook (2007) the following types of variable valve timing technology are available; Camshaft phase adjustment Camshaft-lobe control Fully variable valve timing with camshaft Fully variable valve timing without camshaft Camshaft Phase Adjustment This type of variable valve timing adjusts the phase that the cams are in contact with the levers that open and close the valves. To change the phase of the camshaft small adjustments are made, by electrically controlled actuators, to the camshaft as a function of engine speed. Typically the camshaft can only be controlled to move to two pre-calculated extreme positions. Advantages include greater power, torque and efficiency being experienced for a wider range of engine speeds. Disadvantages to other valve timing methods include the limited range in which the valves timings can actually be altered. Fully Variable Valve Timing with Camshaft These types of systems can vary both valve lift and timing. The lobes on the camshaft have a curved profile which in conjunction with the camshaft being able to move freely laterally, this enables the valve lift and timing to also be varied independent to each other, which is an obvious advantage to the previously limited valve control systems mentioned above. Fully Variable Valve Timing without Camshaft These types of systems are very different, to the previously mentioned, as it replaces the use of a camshaft with either the following types of control methods solenoid (electromagnetic) or electro-hydraulic actuators. The biggest advantage of these systems are that operate independently from the crankshaft and thus this allows the valves to be opened at any time period of the engines cycle. This, as stated by the Bosch Automotive Handbook (2007), offers the greatest degree of freedom for valve timing and thus the greatest potential for reducing fuel consumption. Also deactivation of certain cylinders can be achieved thus allowing the active cylinders to work more efficiently at lower engine speeds. Disadvantages are however that superchargers cannot be installed (without very expensive and complicated design), and while space is saved from not using a camshaft, electrical components can be bulky and hazardous. Also the cost of fully variable valve timing systems means it is unlikely they will be incorporated into The new engine design. Camshaft-Lobe Control In these types of systems it becomes possible for a valves timing to be controlled by three separate camshaft lobes depending on the engine speed. According to the Bosch Automotive Handbook (2007) the one lobes profile is tailored so that valve timing and lift is optimised for the lower to mid engine speed range. Another lobes profile is optimised for higher engine speeds by maximising valve lift and opening times. Systems such as Hondas VTEC and Toyotas WTI use camshaft-lobe control method. Camshaft-lobe shifting types of variable valve timing also share similar advantages and disadvantages to the camshaft phase adjustment method. This type of variable timing (camshaft-lobe control) will be used for the new engine design. This is because it doesnt cost as much (or weigh as much) as the other variable valve timing systems while still being hugely advantageous in terms of performance, fuel economy and emissions control gain. Fuel Injection Systems Common Rail Fuel Injection These fuel systems consist of a common rail tubing system maintained at constant high pressure via a pump. Injectors for each cylinder in the engine are in turn connected to the common rail tubing. The injectors have solenoid valves which are electronically controlled via an engine ECU (Electronic Control Unit) to open and close at the desired timings as explained in detail by DENSO (2005). An advantage of common rail fuel injection is that control of fuel injection (according to Daniels, 2001) is at the injector itself and not at the pump which is the case with other fuel injection systems. Higher pressures can also be achieved thus more fuel can be injected into the cylinder in a shorter amount of time with better fuel atomisation, as described by DENSO (2005), leading to high combustion efficiency and a reduction in emissions. This is important as new emissions targets will have to be met in 2014 with the Euro 6 legislation when the vehicle will be on the market. The main disadvantage of this type of injection technology according to Daniels (2001) is that the injectors are expensive to manufacture and inherently complicated in design. Piezoelectric Injectors (For Common Rail Systems) Instead of using solenoid valves which are more frequently used in common rail fuel injection system, piezoelectric injectors can be used in higher performance engines. These injectors work by using piezoelectric crystals that expand when supplied with an electrical charge and thus opening and closing fuel injection valves. The following attributes of piezoelectric type injectors are common; Greater compact dimensions than solenoid valve injectors. More accurate control over injection timing and fuel volume. Piezoelectric injectors can be used with Accelerometer Pilot Control (APC) to minimise diesel engine vibration at low engine speeds. This is achieved by injecting a small quantity of fuel before the main injection quantity. Piezoelectric injectors can also operate faster with more frequency than solenoid valves (approximately five times faster), which allows greater control over fuel consumption and emissions. The Bosch Automotive Handbook (2007) states that the use of piezo-injectors for common rail fuel systems can reduce emissions by up to 20%. Emissions Reduction Technologies Stanton (2009) from roadtransport.com explains how the European Parliament (EP) and European Commission (EC) have agreed new targets for comply with Euro-6 emission legislation. The new Euro-6 targets will have to be met by vehicle manufacturers and thus the new spec LR Defender by 1st January 2013. This is before the new LR Defender model will reach Job 1 (mid to late 2013). It is therefore important that new and existing technologies are reviewed in Emissions control to meet these targets. In recent years the environmental performance of vehicles influences potential customers more than ever in their buying decision. It is therefore important we maintain Jaguars highly regarded brand image and compete with competitors by meeting the existing (Euro-5) and future Euro-6 emissions targets. Diesel Particulate Filters (DPF) This is a device which is responsible for removing small particulate particles and soot from the exhaust gas of a diesel engine. A DPF is not 100% but is normally found to be over 50% efficient most of the time. A good feature of a DPF is that its function according to torquecars.com (2008) is independent to a catalytic converter thus ensuring a fault in the DPF will not affect overall emissions critically. The advantages of particulate filters are much publicised including removing dangerous small particles from an engines emissions. The two types of DPF, active and passive, have their own advantages and disadvantages. The main disadvantages of DPF, explained by torquecars.com (2008), are highlighted below; The filters can get very hot causing a possible fire safety hazard. To remove a DPF very technical changes have to be made to the affected ECUs to change the sensitivity of sensors in the vehicles engine and exhaust. A DPF can decrease engine performance by at most 10% Bhp. Other Technologies Accelerometer Pilot Control (APC) Diesel engines are known to display harsh chugging and vibration at low engine speed, which can now be minimised through technology called Accelerometer Pilot Control (APC). An APC system, described by Delphi (2008) consists of an accelerometer (microphone) attached to the engine block which listens to the nature of the combustion which may have caused vibrations occur throughout the engine block. An engine management system then minimises the unwanted vibrations and noise by optimising the amount of fuel pilot injected for combustion, in a closed loop system, until acceptable noise and vibration levels are reached. ECU Remapping According to mobilechiptune.com (2007), when we remap an engine ECU we are fine tuning the program that deals with engine performance. Remapping or upgrading an ECU could therefore potentially increase the available engine power and torque. Mobilechiptune.com (2007) also states that remapping a diesel turbo engine ECU will produce 30 50% BHP on exact the specification, where diesel engines give the most impressive power and torque gains available. A remap of the ECU will definitely be required be a twin-turbo (or other technologies) are added to the new engine, however the ECU itself is only likely to achieve small gains in efficiency, fuel economy and emissions. Summary of Chosen Technologies Fig1.5 below shows the selected technologies the group is proposing for inclusion into the new Defenders engine. Fig1.5 also shows estimates of the expected improvement over engine performance, emissions and fuel economy. Also see Section.3 for justification to estimates below. Feature Selected Technology Twin-Turbo (reused exhaust gas Variable Valve train Diesel Particulate Filter Piezo Injectors* Improved ECU Mapping APC Performance, BHP + 20% + 10% 10% + 5% + 2.5% + 2.5% Emissions, CO2 g/km + 5% 10% ~ 0% 10% 2.5% 2.5% Fuel Economy, mpg 10% + 10% ~ 0% +10% + 2.5% + 2.5% *Piezo injectors as opposed to solenoid controlled injectors in a common rail fuel injection system. 3. Selection of Engine Arrangements Modified engine parameters: Total engine capacity 3000 cc. Capacity per each cylinder 500 cc. Number of cylinders 6 Type of engine Diesel engine The target is to improve engine performance (mainly torque) by increasing the number of cylinders from 4 to 6. Although there is a reduction of capacity per cylinder, a net increase in total engine capacity of 600 cc will not only compensate it, but also increases total horsepower produced. Kayne (2009) states that 6 cylinder engines are more suited to towing, off-road, hilly and mountainous areas while experiencing greater throttle response. Bore size is thus reduced from 89.9 mm to 82 mm while retaining the same stroke length. Bore/stroke ratio is 1.15, which is within the range of 1-1.3 for diesel engine. The weight of the current engine is estimated as being 180kg taken from a BMW 2.5L inline 4 diesel engine (plus weight added for turbo) from data compiled by Williams (2006), which is a similar spec to the current Defenders 2.4L turbo inline 4. The new engine is estimated as being 25% larger thus heavier by the same margin, and an additional 50kg for the additional technologies a dded. The new engine weight is thus taken as approximately 300kg. 4. Determination of Design Targets This section of the report provides estimations for the new engines power, torque, fuel economy and emissions characteristics. Below Fig1.7 Shows modifications to the Defenders current engine will affect the new engines power performance. Performance Estimation Feature Estimated affect on engines Performance BHP (%) affect from current Defenders 121 BHP engine Increasing engine capacity by 600cc + 25 % + 30 BHP Upgrading current Turbocharger to a Twin-turbo charger + 20 % + 24 BHP Installing a Variable valve train system Camshaft Lobe Control + 10 % + 12 BHP Decreasing the bore from 89.9mm to 82mm 10 % 12 BHP Adding a Diesel Particulate Filter 10 % 12 BHP Piezo-electric injectors (instead of solenoid valves) in common-rail system + 5% + 6 BHP Miscellaneous; -Accelerometer Pilot Control (APC) -Improved ECU Mapping -Improved intake air flow + 5 % + 6 BHP Total affect in BHP = + 50 % 60 BHP Increase Given the maximum power for previous engine is 121 bhp. Therefore, the new engines maximum power is: Power = (121 + 30 + 24 + 12 12 12 + 6 + 6)bhp = 181 bhp = 135kW Torque and Power at 3 operating conditions: T = 368.5 Nm @ max power (3500rpm) T = 400.0 Nm @ max torque (2000rpm) T = 120.0 Nm @ idle (1000rpm) The Torque at various engine speeds were calculated via using the following equation: Engine power: Pe=2*? *N* T Figure 1.8 shows the estimated power and torque curves for the vehicle. Justification of Targets Estimations While the decision has been taken to increase the engines capacity, increasing the engines power to increase the vehicles acceleration and torque characteristics, the fuel economy and emissions of the engine also has to improve. This is due to more stringent legislation and targets, as well as the expectations from potential customers who expect the engine to improve in every department. It may be said that that increasing the engines capacity from 2.4L to 3L means that the targets of decreasing the fuel consumption and emissions will be difficult. The group would argue however that the current Defenders engine is underpowered compared to its competitors and was consequently the recipient of bad reviews from motor journalists (such as Jeremy Clarkson, 2006). The Defenders potential customer market also may not require huge improvements in fuel consumption and emissions. This is because the Defender is going to be utilised for and marketed as an off-field vehicle with specialist applications such as towing and rough terrain excursions. These categories of vehicles are expected by customers to have poorer fuel economy and emissions than other smaller vehicle types. These customer expectations will therefore be beneficial when designing the engine as while emissions and fuel economy is targeted to at least stay the same, the issue of increasing the Defenders torque can be prioritised. The increase in engine capacity naturally means the emissions and fuel consumption will increase. To overcome this advanced engine technology will be utilised in order to decrease the emissions and fuel consumption. Estimations will be made regarding how much saving (in terms of percentage) the addit
Saturday, October 12, 2019
Discrimination toward the Black People in Ernest J Gaines :: social issues
Discrimination toward the Black People in Ernest J Gaines CHAPTER I INTRODUCTION Charles Johnson states that actually there had been no ââ¬Å"Black problemâ⬠until the Civil War. It is because before the Blacks had only been chattels. The War happened because the Blacks want their freedom in education, employment, the vote, regularized marriage and even the acquisition of a surname (Butcher: 243). The Congress in 1875 adopted a statue which allowed the equality of facilities and accommodation for every race and color, but the famous Plessy-Ferguson Decision in 1896 gave legal discrimination and segregation by virtue of its ââ¬Å"separate but equalâ⬠doctrine. This doctrine arouse the discrimination and segregation toward the Black people (Gordon: 108) The Autobiography of Miss Jane Pittman which is written by Ernest J Gaines consists the life of Blacks in America who are discriminated by the White Americans. This issue inside Gainesââ¬â¢ novel attracts me to analyze the topic of discrimination toward the Blacks in America. The analysis applies interdisciplinary approach to find the aspect of social, history and morality inside the novel discussed. The method of research of this paper uses the library research. The primary source of this paper is Ernest J Gainesââ¬â¢ The Autobiography of Miss Jane Pittman and the second sources are the information which is taken from the library books and the Internet. CHAPTER II THE DISCRIMINATION OF THE BLACK PEOPLE This chapter discusses about the discrimination toward the Black people in America which is reflected by Gaines in his novel. Gaines tells about the discrimination which is experienced by Jane Pittman and her race. Jane Pitman has been lived for one hundred and ten years. Therefore, through his novel, Gaines explains about Pittmanââ¬â¢s live from her childhood until her old age which happens during the civil war up to the civil right movement < E:Teen Voices Volume 3 Book Review The Autobiography of Miss Jane Pittman.htm> The civil war that happened in America did not end both the slavery and the discrimination toward the Black Americans. The discrimination toward them is still continued in which it causes the Civil Right Movement. The first prove about the discrimination toward the Blacks is the slave names which are given to the Blacks. It means that the slaves are given the names which are different from the Whiteââ¬â¢s names. They are for example Ticey, Buck and Big Laura The names are given by their masters (Gaines:17). Any slaves who are dares to owe the names like the Whiteââ¬â¢s names will be punished by their masters.
Friday, October 11, 2019
Ethan Frome Essay
2nde COURSEWORK ââ¬â possible titles Essay Topics 1. With reference to at least two characters in the novel Ethan Frome, show in detail how Wharton uses setting to reflect character. OR Explore the different ways in which setting is used in this novel. 2. Choose two key scenes and explore how Wharton brings to life the tension (or the antagonism) that exists between Zeena and Ethan. 3. Explore how Wharton creates suspense in the novel Ethan Frome. 4. Explore the ways in which Wharton arouses sympathy in the reader for the main character, Ethan Frome. OR How far and in what ways does Wharton make Ethan Frome a sympathetic character? 5. Analyse the different ways in which loneliness is presented in Ethan Frome. Text Analysis 1. Re-read from page 72 ââ¬Å"Confused motions of rebellion stormed in himâ⬠to page 74 ââ¬Å"Tears rose in his throat and slowly burned their way to his lids.â⬠How does the writer illustrate Ethanââ¬â¢s changing emotions? How does this passage prepare us for events to come? 2. Re-read from page 16 ââ¬Å"When his wife first proposed that they should give Mattie an occasional evening â⬠¦Ã¢â¬ to page 17 ââ¬Å"and that words had at last been found to utter his secret soul.â⬠What does this passage reveal about Ethanââ¬â¢s feelings towards Mattie and explore the way in which Wharton brings to life those feelings? 2nde COURSEWORK ââ¬â possible titles Essay Topics 1. With reference to at least two characters in the novel Ethan Frome, show in detail how Wharton uses setting to reflect character. OR Explore the different ways in which setting is used in this novel. 2. Choose two key scenes and explore how Wharton brings to life the tension (or the antagonism) that exists between Zeena and Ethan. 3. Explore how Wharton creates suspense in the novel Ethan Frome. 4. Explore the ways in which Wharton arouses sympathy in the reader for the main character, Ethan Frome. OR How far and in what ways does Wharton make Ethan Frome a sympathetic character? 5. Analyse the different ways in which loneliness is presented in Ethan Frome. Text Analysis 1. Re-read from page 72 ââ¬Å"Confused motions of rebellion stormed in himâ⬠to page 74 ââ¬Å"Tears rose in his throat and slowly burned their way to his lids.â⬠How does the writer illustrate Ethanââ¬â¢s changing emotions? How does this passage prepare us for events to come? 2. Re-read from page 16 ââ¬Å"When his wife first proposed that they should give Mattie an occasional evening â⬠¦Ã¢â¬ to page 17 ââ¬Å"and that words had at last been found to utter his secret soul.â⬠What does this passage reveal about Ethanââ¬â¢s feelings towards Mattie and explore the way in which Wharton brings to life those feelings? 2nde COURSEWORK ââ¬â possible titles Essay Topics 1. With reference to at least two characters in the novel Ethan Frome, show in detail how Wharton uses setting to reflect character. OR Explore the different ways in which setting is used in this novel. 2. Choose two key scenes and explore how Wharton brings to life the tension (or the antagonism) that exists between Zeena and Ethan. 3. Explore how Wharton creates suspense in the novel Ethan Frome. 4. Explore the ways in which Wharton arouses sympathy in the reader for the main character, Ethan Frome. OR How far and in what ways does Wharton make Ethan Frome a sympathetic character? 5. Analyse the different ways in which loneliness is presented in Ethan Frome. Text Analysis 1. Re-read from page 72 ââ¬Å"Confused motions of rebellion stormed in himâ⬠to page 74 ââ¬Å"Tears rose in his throat and slowly burned their way to his lids.â⬠How does the writer illustrate Ethanââ¬â¢s changing emotions? How does this passage prepare us for events to come? 2. Re-read from page 16 ââ¬Å"When his wife first proposed that they should give Mattie an occasional evening â⬠¦Ã¢â¬ to page 17 ââ¬Å"and that words had at last been found to utter his secret soul.â⬠What does this passage reveal about Ethanââ¬â¢s feelings towards Mattie and explore the way in which Wharton brings to life those feelings? 2nde COURSEWORK ââ¬â possible titles Essay Topics 1. With reference to at least two characters in the novel Ethan Frome, show in detail how Wharton uses setting to reflect character. OR Explore the different ways in which setting is used in this novel. 2. Choose two key scenes and explore how Wharton brings to life the tension (or the antagonism) that exists between Zeena and Ethan. 3. Explore how Wharton creates suspense in the novel Ethan Frome. 2nde COURSEWORK ââ¬â possible titles Essay Topics 1. With reference to at least two characters in the novel Ethan Frome, show in detail how Wharton uses setting to reflect character. OR Explore the different ways in which setting is used in this novel. 2. Choose two key scenes and explore how Wharton brings to life the tension (or the antagonism) that exists between Zeena and Ethan. 3. Explore how Wharton creates suspense in the novel Ethan Frome. 4. Explore the ways in which Wharton arouses sympathy in the reader for the main character, Ethan Frome. OR How far and in what ways does Wharton make Ethan Frome a sympathetic character? 5. Analyse the different ways in which loneliness is presented in Ethan Frome. Text Analysis 1. Re-read from page 72 ââ¬Å"Confused motions of rebellion stormed in himâ⬠to page 74 ââ¬Å"Tears rose in his throat and slowly burned their way to his lids.â⬠How does the writer illustrate Ethanââ¬â¢s changing emotions? How does this passage prepare us for events to come? 2. Re-read from page 16 ââ¬Å"When his wife first proposed that they should give Mattie an occasional evening â⬠¦Ã¢â¬ to page 17 ââ¬Å"and that words had at last beenà found to utter his secret soul.â⬠What does this passage reveal about Ethanââ¬â¢s feelings towards Mattie and explore the way in which Wharton brings to life those feelings? d 4. Explore the ways in which Wharton arouses sympathy in the reader for the main character, Ethan Frome. OR How far and in what ways does Wharton make Ethan Frome a sympathetic character? 5. Analyse the different ways in which loneliness is presented in Ethan Frome. Text Analysis 1. Re-read from page 72 ââ¬Å"Confused motions of rebellion stormed in himâ⬠to page 74 ââ¬Å"Tears rose in his throat and slowly burned their way to his lids.â⬠How does the writer illustrate Ethanââ¬â¢s changing emotions? How does this passage prepare us for events to come? 2. Re-read from page 16 ââ¬Å"When his wife first proposed that they should give Mattie an occasional evening â⬠¦Ã¢â¬ to page 17 ââ¬Å"and that words had at last been found to utter his secret soul.â⬠What does this passage reveal about Ethanââ¬â¢s feelings towards Mattie and explore the way in which Wharton brings to life those feelings? 2nde COURSEWORK ââ¬â possible titles Essay Topics 1. With reference to at least two characters in the novel Ethan Frome, show in detail how Wharton uses setting to reflect character. OR Explore the different ways in which setting is used in this novel. 2. Choose two key scenes and explore how Wharton brings to life the tension (or the antagonism) that exists between Zeena and Ethan. 3. Explore how Wharton creates suspense in the novel Ethan Frome. 4. Explore the ways in which Wharton arouses sympathy in the reader for the main character, Ethan Frome. OR How far and in what ways does Wharton make Ethan Frome a sympathetic character? 5. Analyse the different ways in which loneliness is presented in Ethan Frome. Text Analysis 1. Re-read from page 72 ââ¬Å"Confused motions of rebellion stormed in himâ⬠to page 74 ââ¬Å"Tears rose in his throat and slowly burned their way to his lids.â⬠How does the writer illustrate Ethanââ¬â¢s changing emotions? How does this passage prepare us for events to come? 2. Re-read from page 16 ââ¬Å"When his wife first proposed that they should give Mattie an occasional evening â⬠¦Ã¢â¬ to page 17 ââ¬Å"and that words had at last been found to utter his secret soul.â⬠What does this passage reveal about Ethanââ¬â¢s feelings towards Mattie and explore the way in which Wharton brings to life those feelings? 2nde COURSEWORK ââ¬â possible titles Essay Topics 1. With reference to at least two characters in the novel Ethan Frome, show in detail how Wharton uses setting to reflect character. OR Explore the different ways in which setting is used in this novel. 2. Choose two key scenes and explore how Wharton brings to life the tension (or the antagonism) that exists between Zeena and Ethan. 3. Explore how Wharton creates suspense in the novel Ethan Frome. 4. Explore the ways in which Wharton arouses sympathy in the reader for the main character, Ethan Frome. OR How far and in what ways does Wharton make Ethan Frome a sympathetic character? 5. Analyse the different ways in which loneliness is presented in Ethan Frome. Text Analysis 1. Re-read from page 72 ââ¬Å"Confused motions of rebellion stormed in himâ⬠to page 74 ââ¬Å"Tears rose in his throat and slowly burned their way to his lids.â⬠How does the writer illustrate Ethanââ¬â¢s changing emotions? How does this passage prepare us for events to come? 2. Re-read from page 16 ââ¬Å"When his wife first proposed that they should give Mattie an occasional evening â⬠¦Ã¢â¬ to page 17 ââ¬Å"and that words had at last been found to utter his secret soul.â⬠What does this passage reveal about Ethanââ¬â¢s feelings towards Mattie and explore the way in which Wharton brings to life those feelings? 2nde COURSEWORK ââ¬â possible titles Essay Topics 1. With reference to at least two characters in the novel Ethan Frome, show in detail how Wharton uses setting to reflect character. OR Explore the different ways in which setting is used in this novel. 2. Choose two key scenes and explore how Wharton brings to life the tension (or the antagonism) that exists between Zeena and Ethan. 3. Explore how Wharton creates suspense in the novel Ethan Frome. 4. Explore the ways in which Wharton arouses sympathy in the reader for the main character, Ethan Frome. OR How far and in what ways does Wharton make Ethan Frome a sympathetic character? 5. Analyse the different ways in which loneliness is presented in Ethan Frome. Text Analysis 1. Re-read from page 72 ââ¬Å"Confused motions of rebellion stormed in himâ⬠to page 74 ââ¬Å"Tears rose in his throat and slowly burned their way to his lids.â⬠How does the writer illustrate Ethanââ¬â¢s changing emotions? How does this passage prepare us for events to come? 2. Re-read from page 16 ââ¬Å"When his wife first proposed that they should give Mattie an occasional evening â⬠¦Ã¢â¬ to page 17 ââ¬Å"and that words had at last been found to utter his secret soul.â⬠What does this passage reveal about Ethanââ¬â¢s feelings towards Mattie and explore the way in which Wharton brings to life those feelings?
Thursday, October 10, 2019
European Invasion
The European invasion of the New World from the 15th century to the 18th century altered the lives of the Native Americans that lived in eastern North America in more ways than they couldââ¬â¢ve ever imagined. The New World provided raw materials, such as metal as soil. The massive invasion all begun in 1492 which was then known as the massive ââ¬Å"whiteâ⬠invasion and Columbusââ¬â¢s discovery marked the beginning of this invasion which overtook all of North America over the next four centuries. The lives of the Native Americans would never be the same.European settlers introduced the Native Americanââ¬â¢s to new costumes but not all, if any, were good. Europeans brought Christianity into the New World and introduced the Native Americans to the religion. Europeans thought that Native Americans would be easy to convert into Christianity. ââ¬Å"These people would be easy to convert to our holy faithâ⬠is famous quote by Jacques Cartier. Europeans didnââ¬â¢t con sider the Native Americans opinions or beliefs and frankly they didnââ¬â¢t care. Europeans also introduced the Native Americans with diseases that they werenââ¬â¢t use to, for example malaria and infections to smallpox and measles.Due to all of these diseases the population of North America decreased and continued to until about the 1700s. The Europeans were also armed with technology and the Native American cultures of their civilizations were lost. Europeans took over the New World between the 15th and 18th century, although that wasnââ¬â¢t their main objective. Their main objective was to settle and gain land in North America. With the arrival of the Europeans governments and laws were formed that didnââ¬â¢t benefit the Native Americans in anyway.Europeans claimed lands and Native Americans were forced to accept that the Europeans were now in charge. Europeans had all the authority in the New World. Native Americans were experiencing New World imperialism. Native Amer icans became frightened and started living in fear. Decrease in population and war resulted in the creation of new communities for instance the Choctaw. To trade a faster pace and consume more money was what the Europeans dreamed of and they didnââ¬â¢t want anything or anyone to get in the way of their dream. Native Americans were dragged into the expanding economy.Before the Europeans had invaded the New World, North America had a strong military force that began in the Mohawk Valley. They were known as the Iroquois and were merged by the Mohawks, the Oneidas, the Cayugas, and the Senecas, which was five Indian nations. The Native Americans were such powerful individuals but then the Europeans came along and stripped them of all their pride and altered the way they once looked at life. All and all, right before the Native Americans eyes change was happening and the way they lived was never how it once was before.The Native Americans had their land ripped from right underneath th em without any warning or any sign. Though the Native Americans of eastern North America may have had questions to why their lives were being altered. The Europeans invaded the New World during the 15th-18th century without any answers to why they were doing so. The Europeans had expectations and a plan. They didnââ¬â¢t stop at any means and they were determined to follow through with the success of their invasion.
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