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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Experimental analysis of the V-Charge variable drive supercharger system on a 1.0 L GTDI engine
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Experimental analysis of the V-Charge variable drive supercharger system on a 1.0 L GTDI engine

机译:1.0L GTDI发动机上V-Charge可变驱动增压器系统的实验分析

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摘要

A compound charging system that pairs a turbocharger with a supercharger seems to be a potential trend for future passenger car gasoline engines, as the strength of both could be enhanced and the deficiencies of each could be offset. The use of a fixed-ratio positive-displacement supercharger system on a downsized turbocharged gasoline engine has already appeared on the market. Although such systems can achieve enhanced low-end torque and improved transient response, several challenges still exist.An alternative solution to the fixed-ratio positive-displacement supercharger is the V-Charge variable ratio centrifugal supercharger. This technology utilizes a Torotrak continuously variable transmission (CVT) coupled to a centrifugal compressor for near silent boosting. With a wide ratio spread of 10:1 and rapid rate of ratio change, the compressor speed can be set independently of the engine speed to provide an exact boost pressure for the required operating points, without the need to recirculate the air through a bypass valve. A clutch and an active bypass valve can also be eliminated, due to the CVT capability to down-speed, thus improving the noise vibration and harshness performance. This paper will, for the first time, present and discuss the V-Charge technology optimization and experimental validation on a 1.0 L GTDI engine to achieve a better brake specific fuel consumption and transient response over the turbo-only and the fixed-ratio positive-displacement supercharger solution. The potential for the V-Charge system to increase the low-end torque and enable a down-speeding strategy is also discussed.
机译:一种复合充电系统,其对具有增压器的涡轮增压器对,似乎是未来乘用车汽油发动机的潜在趋势,因为可以提高两者的强度,并且每个都可以抵消。在市场上出现了在缩小涡轮增压汽油发动机上的固定比率正排量增压器系统已经出现在市场上。虽然这种系统可以实现增强的低端扭矩和改进的瞬态响应,但仍存在若干挑战。固定率正排量增压器的替代方案是V-CONTRACS可变比离心式增压器。该技术利用托罗克拉克连续可变变速器(CVT),耦合到离心式压缩机,用于靠近无声升压。具有10:1的宽比率和比率变化的快速变化,可以独立于发动机速度设定压缩机速度,为所需的操作点提供精确的增压压力,而无需重新绕过空气旁通阀。也可以消除离合器和有源旁通阀,由于CVT能力下降速度,从而提高了噪声振动和苛刻性能。本文首次出现并讨论1.0L GTDI发动机上的V-Charge技术优化和实验验证,以实现更好的制动燃料消耗和瞬态燃料消耗和瞬间响应涡轮增压和固定比率积极 - 位移增压器解决方案。还讨论了V-Chartion系统增加了低端扭矩并实现了下快速策略的可能性。

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