Thursday, July 2, 2009

You Can Honda S2000 turbocharger kit

The car was first shown as a concept at the Tokyo Motor Show in 1995, The whole world would have to wait another 4 years to buy it. The S2000 is named for its engine displacement of 2L, carrying on in the tradition of the S500 and S800 roadsters of the 1960s. Honda altered the car's setup multiple times throughout its production to include changes to the chassis, powerplant and crivetrain. There are 2 versions according to the Honda specifications, chassis AP1 was pre '03 and the second designation after. Though cosmetically similar, the AP2 incorporated significant changes to the drivetrain and suspension. The car was discontinued just before the turn of 2010.

The most dramatic change to the second-generation S2000 was the new engine. As the F22's stock engine internals are forged, it can make an incredible amount of horsepower on a turbocharged stock engine block. There are examples runinng the standard block with almost half the power of a Bugatti Veyron!.

Things you'll need:
Turbocharger

Turbo intake
Exhaust manifold
Inter- or charge-cooler
Blowoff valve
Oil/coolant lines
A suitable ECU

If you're on a budget, second-hand units can help keep the costs down considerably. There are many models out there from Mitsi 18G's to some of the smaller turbo diesel units to help eliminate the low-mid range gap in the S2000 powerband. Those with the money should certainly not scrimp in this area - always try to get the best, highest-throughput turo that you can afford. Measure your turbocharger's air inlet, and purchase an aftermarket turbo air intake with the same neck diameter to replace the F22's stock intake system.

A tubular manifold from and aftermarket company will really help with the numbers so consider it over a home-made welding job. These can be custom fabricated by an exhaust shop to bolt to the F22 and accept your specific turbocharger. Alternatively, numerous aftermarket exhaust manifolds that mount to various turbochargers are available for the F22.

Charge or intercooler is an often-debated point. A turbo really heats up the air as it's forced throught the turbines so you need this system to safeguard agaiinst pinging and detonation. As the F22 is a high-compression engine, a large, front-mount intercooler system is ideal, as the engine will perform poorly with high intake temperatures. You will need to modify the valance to make it all fit.


Purchase a blowoff valve. These mount to the upper intercooler piping, intended to release excess charged air from the intake track when the throttle is lifted. Dump valves are largely a "one size fits all" solution and will fit most applications.

The turbo will need new oil/water lines dependent on how it is cooled. Putting your own pipes together is easy - just get the lengths you need of stainless braided lines from a local auto factor - the relevant fitting are always available on eBay.

The final and most important step is to get the engine and turbo setup properly mapped, preferably by a professional with a rolling road. For budget setups, a piggyback ECU tuner can be used. Professional dyno tuning for turbocharged F22 engines is important, as a poor engine tune will lead to low horsepower numbers, and possibly engine failure.
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Saturday, June 27, 2009

When Stouffville Toyota Says Drive Clean...They Mean Clean.

Consider the Toyota Prius; classed as an SULEVa Super Ultra Low Emissions Vehiclealso AT-PZEV: an Advanced Technology Partial Zero Emission Vehicle. You know its clean when new acronyms must be coined to describe it.

The estimated fuel efficiency rating of the 2009 Prius is 4.7 L/100 km. Based on U.S. official ratings in that same year, the Prius was rated the most efficient car powered by liquid fuel available.

If youre looking for a used Toyota, to lower the ticket price, consider the advantages in the 2004-to-2008 XW20 Prius. It uses an industry-first, all-electric A/C compressor for cooling, and features an electric power steering system to minimize engine belt-driven engine accessories. Its NiMH battery is smaller and lighter than those of its predecessors, and this battery pack is warranted for 160,000 km or 8 years.

If a used Toyota means a 2005 to 2008 model, the second generation Prius might be the auto you seek. Built and sold inside this four-year window, Toyota reduced the Prius price in 2008 by 8 percent, so this can be considered when you offer a purchase price.



The third-generation Prius, released in 2009, has a 1.8L, 98 hp engine. Add to that the power of the electric motor and the horsepower jumps to a total of 134. The larger engine displacement allows for increased torque, reducing RPM to improve fuel economy at highway speeds.

This third-generation Prius also has an electric water pump, so is the first production engine that does not use accessory belts. The electric motor and other hybrid power components are also smaller than industry average, hence adding to the efficiency rating, as the inverter/motor/transaxle weight comes in 20 percent lighter than the Gen II model.

Also, the 2009 Prius turns on with a start button, so is ready to drive immediately with the electric motor. The electric pumps warm the engine with previously-saved hot engine coolant before the combustion engine is started...the delay between electric and combustion engine start-up is about seven seconds. An EV button maintains electric vehicle mode after start-up and under low-load driving conditions, so permits quiet, no-fuel-consumption short-journey trips.



When the Prius first came out, it was dubbed "Hollywoods latest politically-correct status symbol" since so many celebrities bought and drove a Prius. Several companies in the USA offered cashback incentives to employees purchasing the car.

Go to Stouffville Toyotas Facebook fan page and let us know why you drive one. Or tweet your comments to @greenesttoyota...or visit our showroom in Stouffville.

If youre looking for a cleaning-driving, fuel-saving, comfortable and environmentally-friendly car, look no further than Stouffville Toyota. Come take a Prius out for a drive. You can save money and save the world by reducing emissions.

Jack Freeman has been writing informative articles on Toyota cars for many years. He has recently written some wonderful articles on Toyota Matrix and Toyota Markham . For more information on the Toyota Matrix, see http://stouffvilletoyota.net./
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Wednesday, June 24, 2009

What Does BMW Stand For

BMW is probably one of the biggest brands in the world. One look at the front grille and the blue, white and black logo on the hood and you know that the lucky person who zoomed past you is driving one of those German beasts known as the BMW. And along with its robust motorcycle arm, it is not merely a 'car maker'. It is an 'automobile maker'. But do you know what does BMW stand for? No? Well read on to know more about the company which claims to make 'the ultimate driving machine'.

Full-Form and Details for BMW

BMW is the abbreviation of 'Bayerische Motoren Werke'. Most people think BMW is short for 'Bavarian Motor Works' which is the English translation of the actual name. But the name under which this company is registered is the German name.

BMW today produces a plethora of automobiles ranging from luxury sedans to SUVs to Race Rally cars, to Formula One cars. And it produces a range of bikes as well!

It is interesting to follow the naming pattern of the BMW types of cars. The name of any BMW car has three basic parts. In the luxury sedan range, the first part is numerically identifying the series of the car. The next two numbers show the engine displacement divided by 100. The third part may contain one letter or two which tells you a bit more about the car. Let us take the example of a car which the BMW has named the 730 Ld. This means that the car belongs to the '7' series of the BMW luxury sedan, has a displacement of 3000 cc. 'L' stands for long-wheel based and 'd' stands for diesel. Other common nomenclatures used at the end of the numerical part include: a = automatic, h = hydrogen, I = fuel injected, sDrive = rear wheel drive and xDrive = four wheel drive.

Other common ranges under the BMW umbrella includes the 'M' range for motorsport range, 'L' for a super luxury car, 'X' for the SUVs and 'Z' for the two-seater roadsters.

BMW History Timeline

So I hope you got the answer to your question 'what does BMW stand for?' Now let me continue this article with a brief history of the company.

1913: Karl Rapp established Rapp Motorenwerke which manufactured aircraft engines. He begins manufacturing aircraft engines which have some mechanical problems. Karl Rapp is removed and is replaced by Max Friz. Rapp Motorenwerke is renamed Bayerische Motoren Werke GmbH.

Not too far away in Bavaria itself, Gustav Otto runs an aircraft manufacturing factory Bayerische Flugzeugwerke. Bayerische Flugzeugwerke and Bayerische Motoren Werke GmbH combine to form a company known as Bayerische Motoren Werke GmbH. Or BMW as it is known today.

1918: Bayerische Motoren Werke GmbH becomes a public company after the roaring success of the very first aircraft engine, the Type IIIA.

1921: BMW produces its first motorized bicycle called 'Flink'.

1929: BMW's 750cc motorcycle sets the world speed record (216.74 km/hr) in Munich.

1935: BMW K 12 becomes the first motorcycle built with the revolutionary telescopic front fork hydraulic shock absorber.

1938: The BMW 328 wins the Mille Miglia race which ran between Brescia and Rome.

1945: BMW produce their first ever bicycle with a lightweight aluminum frame for easier riding.

1953: BMW produce their 100,000th motorcycle, the R 67/2.

1956: BMW produces its first ever small car, the Isetta.

1961: BMW launch their first sports based family sedan, the 1500.

1967: BMW launch the limited edition BMW 1600.

1976: BMW produce the world's first bike with full fairing, the R 100 RS.

1978: BMW launches its first racing model, the BMW M1.

1981: BMW becomes the first European automobile company to have a subsidiary in Japan.

1983: Nelson Piquet drives the BMW powered car to its first ever Formula 1 series championship.

1986: BMW's 745i becomes the first car of European make with a liquid hydrogen tank and internal fuel preparation.

1990: BMW gets the rights to produce the engine for the legendary Rolls Royce cars.

So this was all about what does BMW stand for and a brief history of the BMW car and company. BMW is the dream car of so many people around the world. I know I would love to own one of those Bavarian beauties!
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Saturday, June 20, 2009

What A Classic Car Can Do For You, things You Need To Know About Classic Cars

Gone are the days when classic cars were considered to be quiet expensive and royal purchases. Today the time has came when even a common man can think of purchasing classic cars. In olden times in USA these cars were produced in limited quantity but now this is not the case. There was time when driving classic cars was considered to be difficult due to lack of safety features like seat belts, brake performance, etc. But today you can find classic cars with custom coachwork, power brakes, engine displacement, power clutch, automatic lubrication system, etc. So safety of classic cars for sale cannot be challenged now.

Meaning of classic cars
Is there any difference between classic cars or old cars? Definitely yes, classic cars are not old cars though people consider them as one of the old cars. CCCA that is classic car club of America describes classic car as superior car with classic design and high technical standards. Now the definition provided by CCCA does not justify the actual meaning of classic car as there are classic cars with high tech features like one shot lubrication system and power brakes.

Actual classic car are those are fifteen years old and are maintained properly as they should showcase the same kind of designs and features like that it was fifteen years back.

Comparison between new and classic cars
Classic cars are those which are re designed or redeveloped from old cars by adding some of the excellent features whereas new cars are completely original and latest manufactured vehicle. The major difference between these new and classic car is the involvement of cost. Classic cars are less expensive then that of new cars as there are redeveloped. In case of classic car it becomes easy to get spare parts as they are not sealed completely. But in new cars there are areas which are sealed and if you need to replace any of the part belonging to such area then you are left with no option and it gets wasted.

There are many countries where you can even enjoy various tax benefits like zero rated tax in case of classic cars for sale. Classic cars being on streets display status symbol and are very much appreciated by viewer. You are bound to get many compliments for your classic car.

Maintenance of classic cars
Why you want to maintain classic old car? Value of classic car would increase in future if you maintain it properly. Consider it as your investment in some property and not any scrap. As compared to new car classic car demand more maintenance especially when it comes to maintaining exterior look. While talking about maintenance of classic cars also take in to account some of the factors like regular oiling, testing engine, etc. Always keep the exterior portion of classic car neat and clean as it assist in increasing value of car. Also without fail get your car insured for protection.

In case of classic cars for sale one thing is clear and that is it is the luxurious thing to purchase and is good status symbol.
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Monday, June 15, 2009

Ways To Possibly Lower Your Motorcycly Insurance Premium

Though it isn't officially required in several states, many motorists prefer to get a motorcycle insurance. It is a good and extremely significant coverage in case the inevitable happens. After all, simply being careful while driving your motorcycle and wearing safety gears isn't the only insurance you need.

Most of us are aware that motorcycles have higher rate of accidents per unit distance compared to cars. This is because of the exposed driver and the reality that most vehicle drivers are unable to see these smaller driving machines in the traffic line.

If you are transferring to a new state or you have just purchased a motorcycle, you should check first the insurance law of your state before whooshing down the road with your bike. This way, you can be sure that you are driving or riding legally. In case your state requires you to have liability coverage, then there are lots of motorcycle insurance options available for you.

To find the best deals on motorcycle insurance, it is always advisable to inquire first before setting your hands in a particular policy. There are key factors that affect your motorcycle insurance premium. Among them are:

1.)Engine displacement size (in cubic centimeter) of your motorcycle. Most of the times, you'll have higher motorcycle insurance premium if your bike employ a larger displacement engine. This type of motorcycles is generally more expensive and they boast superior performance.

2.)Make or brand of the Motorcycle. It isn't such a big factor, but it is usually considered in calculating the motorcycle insurance premium. A motorcycle brand with few models usually cost higher than a usual brand.

3.)The age of the driver or the owner. Older drivers normally benefit from cheaper motorcycle insurance rates than younger drivers using the same type of motorcycle.

4.)Type of bike. The type of bike you own and you are planning to insure also affect the rate of your motorcycle insurance. Sport bikes are normally expensive and thus require higher premium.

5.)Is your motorcycle garaged? If your bike will be parked in a garage if you're not using it, your premium won't be as high as those who are leaving their motorcycle parked out along the pavement. In the latter case, the motorcycle will be prone to accidents and theft and consequently, it will require higher insurance rate.

6.)Driving Record. Your driving record as well as your experience affects your motorcycle insurance payment. If your driving record has been messed up by too many tickets and accidents, then you should expect to pay for higher rates.

7.)Number of miles driven every week. It is an important consideration in calculating your motorcycle insurance payment, since the mileage you are likely to put on your motorcycle will push your premium up or pull it down. So you have to decide first if your bike will serve as your service in your daily commute or it is intended only for leisure. If you will use your motorcycle in your everyday activities, then expect to pay higher premium.

8.)Locality. This factor also matter in the computation of the cost of your motorcycle insurance. If you are residing in a big city, expect slightly higher rates compared to those who are living in a rural area but are insuring the same type of bike.

To get a full motorcycle insurance coverage, make sure that your insurance covers liability coverage, no-fault coverage, passenger coverage, collision coverage, uninsured coverage, collision coverage and service coverage.
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Thursday, June 11, 2009

Turbo Calculator Explained

Turbo calculators are useful software applications that help you choose the right turbocharger for your build up. Good calculators have additional features that help you maximize the potential of your turbo setup including improving the spool characteristic and maintaining reliable control over your boost pressure.

Intro to turbos

Turbochargers are air compressors that are typically attached to an engine to improve its performance. The compressor side of the turbocharger intercepts the air coming into the engine's intake system and compresses it before it reaches the cylinders. This compression increases the air density allowing the engine to ingest more oxygen molecules (which are essential to the combustion process) in the same cylinder volume, ergo making the engine breathe like a larger displacement engine and ultimately allowing it to produce more power.

The turbine side of the turbocharger is what drives the compressor wheel described above. The turbine intercepts the exhaust gasses coming out of the engine, and uses part of the thermodynamic energy stored in those hot and rapidly moving gasses to spin the turbine wheel. This turbine wheel is physically connected to the compressor wheel and as it picks up speed the turbo starts to spool - which is the point at which the compressor reaches a high enough speed where it can start to compress the air to overfeed the intake side of the engine as described earlier.

Matching turbo size to engine demand

Now there are many possible combinations of different sizes of compressors and turbines creating an array of turbochargers to work on any vehicle. For example a very large displacement engine that does not have a high horsepower target will have require a larger turbine that will not choke the exhaust flow but a smaller turbo that does not have to do that much work compressing air for such a small power target. Alternatively, a small displacement engine with a very high power target, such as a drag racing four cylinder engine will require a smaller turbine side for quicker spool, but with an over-sized compressor side to be able to deliver a very high power target at a very high pressure ratio.

What a good turbo calculator does is help you choose the right turbocharger to match both the intake side and the exhaust side of your engine to give the best balance between quick spool and reaching our overall power targets.

Generally speaking, larger turbines and larger compressor wheels are larger and heavier... and require more time and more energy to spool them up. At the same time larger turbines and larger compressor wheels are able to support higher power targets without choking off or limiting the engine flow. This is the inherent trade off between spool and peak power that is the nature of the turbo sizing game.

Factors affecting engine demand

Knowing that the turbo is both driven by the engine exhaust flow, and also knowing that the turbo needs to ultimately have a higher peak air flow than our engine (in order to force feed it and raise our power levels)... then at the core of any good turbo calculator is a good engine model that understands how much power and flow the engine is already making in order to choose an appropriate turbocharger.

The are several factors that affect engine demands that most performance enthusiasts are very likely to perform on their cars prior to, or during doing a turbo conversion or installing a turbocharger kit.

For example:

* Increasing the displacement of the engine will typically increase the engine's power between 2% and 15% depending on the type of over-bore or stroker kit used.

* Raising the rpm at which the engine produces its peak power level will affect power by the ratio of those two rpms... for example using an aftermarket camshaft to allow the engine to produce peak power at 7500 rpms as opposed to 6500 rpms for the stock camshaft should increase power delivery by roughly 15% depending on the exact tune.

* Other modifications such as a new intake manifold or a larger exhaust system and a better designed exhaust manifold for the turbo system may raise the engine's volumetric efficiency at peak flow by anywhere between 5 and 15%

Combining all of those factors together, it is possible that the engine that you are trying to turbocharge is already producing up to 50% more power (and thus has 50% higher demands from the proposed turbocharger) than a stock engine that is still performing to its original manufactured parameters.

Calculating your ideal pressure ratio

Now that we know our new engine demand and power levels (after factoring in any modifications we have performed as mentioned earlier), we can then move on to choosing a turbocharger that is matched to this exact engine combination.

Normal engines breathe under the sole effect of ambient air pressure due to the Earth's atmospheric conditions. These conditions vary with things like elevation and humidity; however, in general most engines breathe due to a pressure differential of 1 bar of boost (or 1 atmosphere) between the outside air, and the vacuum inside the cylinder.

If our current engine produces 450 horsepower at 1 atmosphere in naturally aspirated form, and we would like to make 750 horsepower with a turbocharger then the logic goes as follows:

To force the engine to flow 750 horsepower instead of 450 horsepower, the turbocharger needs to create a condition where the intake manifold of the car is operating above the normal atmospheric pressure of 1bar. The exact pressure level required in an ideal world is actually the ratio of those two power levels which is 1.66 bar (or 1.66 atmosphere) of pressure since air flow and air pressure are linearly related.

Knowing this now, we know that we are looking for a turbocharger that can flow 750 horsepower worth of air (roughly 1125 cubic feet per minute) at a pressure ratio of 1.66.

This figure of 1125 cfm @ 1.66 PR is the key to choosing the right compressor wheel that is capable of flowing that much air, at that pressure level, at a high enough efficiency level.

The real Density Ratio vs the ideal Pressure ratio

As stated earlier, in ideal conditions a pressure ratio of 1.66 is enough to reach our power goals. However, in the real world, air temperature rises when air is compressed. This temperature rise causes the air to expand as we are trying to compress it which reduces its density.

The combination of this thermal expansion is a loss in compressor efficiency. The ideal compressor has a density ratio of 2.0 at a pressure ratio of 2.0, i.e. when the air is compressed to twice the pressure, it is now at half the size, and at double the density... However in the real world, the density ratio always lags behind the pressure ratio depending on the thermal efficiency of the compressor wheel where it is possible that our target pressure ratio of 1.66 that our actual density ratio is 1.5 which means the actual power we will make at this boost level will be 675 horsepower rather than the target of 750.

Using a good inter-cooler, after the turbocharger can bring the overall system efficiency up close to 85% or 90%. But this means that in most cases, you have to know that most turbo calculators are about 10 to 15% off of your target power level and that you will need slightly more boost pressure to reach your target power goal. That is unless the turbo calculator knows the exact point on the compressor map where you will make peak power, and unless it corrects for both the compressor efficiency at that point as well as the inter cooler efficiency (which are the two factors affecting the gap between the real density ratio and the ideal pressure ratio),

As the turbo calculator gives you a short list of possible turbochargers that will meet your power and boost pressure goals to match your engine demands, it is a good habit to choose a slightly over-sized turbocharger where your data point (1125 cfm @ 1.66 PR) is sitting in the middle of the compressor map on a high efficiency island, rather than at the far right of the compressor map of a smaller turbocharger that is almost maxed out for this engine combination. Having a slightly over-sized turbocharger allows you to compensate for the slight difference between the actual density ratio and the calculated pressure ratio that most calculators can't correct for, and with this larger turbo you will be able to slightly raise your actual boost pressure to make sure you still reach your target power goal. A smaller turbocharger that has your target data point at the far edge of the compressor map will ultimately have a lower compressor efficiency on that larger outer island and will have no more room to grow with you for any future modifications or power increases.

Turbine Aspect Ratio Sizing

Now that we have found the compressor wheel that matches our engine demands, we must move on to choose the right turbine aspect ratio to get the best spool characteristics out of our turbocharger. On most street engines running pressure ratios in the 2.0 range you will find that turbocharger manufacturers have already coupled adequately sized turbine wheels to match the compressor wheel to give good overall performance.

However, even having that already taken care of by the manufacturer, the customer is still left with a choice turbine aspect ratios which helps target a certain spool rpm in trade-off for peak flow.

The turbine aspect ratio is the ratio of the diameter of the turbine inlet pipe to the radius of the turbine wheel. To simplify this explanation think of a fan mounted with pin on a long straw. The fastest way to get the fan to spin up is typically to blow on the outer edge of the fan lobes by focusing all of your breathe as a tight stream of air on that outer rim. This 'nozzle' like air injection helps spool the fan but ultimately shaping your mouth into a nozzle limits the amount of peak air that you will be able to blow at the fan before back pressure builds up in your moth.

Alternately, opening your mouth and blowing on a larger area of the fan takes longer for the fan to reach its peak speed but in the end you are able to blow larger amounts of air through the fan without building up pressure in your mouth.

The turbine aspect ratio is the ratio of the inlet area of the turbo to the turbine wheel diameter, and so having chosen a single turbine wheel and fixing that diameter, altering the size of the turbine housing inlet changes the size of the air 'nozzle' injection into the turbine for the air coming out of the engine's exhaust ports.

A smaller aspect ratio has a smaller inlet area which enhances the nozzle effect and gives faster spool. A larger aspect ratio has a larger inlet area which distributes the air across a larger area of the turbine wheel, which does not promote spool, but ultimately helps the engine breathe more easily at peak flow levels without creating so much back pressure in the exhaust manifold.

Generally speaking the turbine aspect ratio (A/R) is chosen based on:

* Displacement: The larger the engine displacement, the more power it can produce at lower rpms levels, the less 'nozzle' assist it needs from the turbine housing, the larger the aspect ratio can be.

* Engine redline and target spool rpm: The higher the engine redline, the wider the range of rpms we have to make power in, the less urgent it is to spool the turbo at 2500 rpms (when you have up to 10,000 rpms to make power with) and the more likely we are to choose a larger aspect ratio.

* The peak pressure ratio: The higher the pressure ratio we are shooting for, the wider the dynamic range of power output that we will see from the engine between being off boost and on boost, and the higher the flow requirement will be on the typically smaller turbine side (which is matched to the smaller engine to get any kind of spool in the first place) and thus the larger the aspect ratio will be chosen (albeit on typically a smaller radius turbine for these cases).

A good turbo calculator is able to take into account these different factors and recommend an aspect ratio that will give a good compromise between spool rpm (the rpm at which the turbo first starts to produce power) and the peak flow capacity of the turbine wheel (which can degrade by up to 25% - a significant amount - for a 0.40 A/R housing vs a 1.20 A/R housing for example).

Waste-gate sizing

The waste-gate is an exhaust port that is controlled by turbo pressure. Once the pressure in the intake manifold reaches our desired pressure ratio, the waste-gate port is opened to direct exhaust gasses away from the turbine wheel and directly into the exhaust system. This bypass prevents more energy from reaching the turbine and regulates the turbine wheel rpm.

The general concept behind waste-gate sizing is two fold:

1- The larger the waste-gate the more energy you can take away from the turbine, and the more accurate your boost control can be. Smaller waste-gates can be overwhelmed at higher flow levels and show side-effects like 'boost creep' at high rpms.

2- The waste-gate needs to flow a percentage of the total exhaust airflow related to percentage utilization of the turbocharger. For example, a turbocharger that fully spools at 2500 rpms on an engine that has a 7500 rpm redline needs to bypass two thirds of the exhaust air away from the turbine since only one third of the engine output is enough to spool the turbo.

Similarly, the larger your turbocharger is compared to your power goals (having a 1000hp capable turbocharger on a 600hp engine for example) the larger the waste-gate needs to be in order to move exhaust energy away from the turbine preventing the turbo from going to its maximum rpms and producing too much boost and too much power (which the engine may not be prepared to fuel or handle).

So either way, there is a minimum waste-gate port size that will be able to handle a reasonably matched turbocharger to your engine demands. As you oversize the turbocharger larger and larger (leaving room for future upgrades and more power) and as you lower your spool rpm and your turbine A/R lower and lower, then you need to compensate by using an even larger waste-gate port to manage your boost levels properly.
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Monday, June 8, 2009

Top Ten most selling cars in India

Indian auto market is the second largest auto market in the world and favorite destination for automobile companies from all over the world. Indian car lovers often prefer to purchase fuel efficient and reliable car so that they can enjoy the great service. Every buyer wants to get best value for their money and that prompted various auto makers to introduce the car keeping in the minds of customer's need. Today, Indian auto market is saturated with various cars from different automobile companies, which are engaged to lure buyers by offering eye catchy looks, comfortable interior and raft of incredible features. Here is a list of top ten cars that successfully lured the buyers by offering wonderful mileage and better performance.

Maruti Alto, Maruti is a leading automobile company in domestic auto market and successfully drew the attention of people by offering fuel efficient cars at quite affordable price. Maruti Alto got huge demand since the day of launching for cute exterior and various features. It witnessed surging sales figure

Hyundai i10, It is the second most selling small car by South Korean automobile company, Hyundai Motors. It became huge popular among customers for its sporty looks and plenty of robust features. It includes stunning and roomy interior with mounted audio control, Bluetooth control on steering wheel and more.

Maruti WagonR, it is another hatchback from Maruti Suzuki that tantalizes the sense of a large number of buyers for its awesome appearance and wonderful fuel economy. It is powered by 1.0L KB-series petrol engine with 998 cc engine displacement and delivers great performance.

Marui Swift, it is better known as a B segment vehicle and attracts buyer by offering unmatched design. It is also known as a fuel efficient car and well equipped with plethora of advanced features.

Maruti Swift Dzire, it is the most popular sedan by domestic automobile company. It comes with 1.2 L, 1197 cc, K -12 series engine and offers better performance. The luxurious hatchback includes BSIV emission norms and 5-Speed manual transmission.

Hyundai i20, it is an upgraded version of old model Hyundai i10 and lures buyer by its classy exterior and a number of robust features. It is priced between Rs 45, 8599 to Rs 78, 9063.

Hyundai Santro, It is a well known hatchback from Hyundai motors and earned huge response. The car comes with petrol engine with 1086cc engine displacement and offers bets value for money.

Tata Indica, it includes everything to lure most of the car lovers. The hatchback comes with classy exterior and powerful engine with advanced technology. It easily delivers 14.5 kmpl on city road and 17.2 kmpl on highway.

Ford Figo, it is a newly launched B segment vehicle, which became huge popular among Indian buyers for its elegant exterior and luxurious interior. It comes at affordable price and includes various features.

Honda City, it is offered by German auto giant Honda motors. The luxurious sedan witnessed much response and surging sales figure.
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