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Intake Manifold Length Effects on Turbocharged Gasoline Downsizing Engine Performance and Fuel Economy

机译:进气歧管长度对涡轮增压汽油缩小发动机性能和燃料经济性的影响

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Downsizing of the spark ignition engine is accepted as a key contributor to reducing fuel consumption. Turbocharged engines are becoming commonplace in passenger vehicles, replacing naturally aspirated larger capacity engines. However, turbocharged engines have typically suffered from "lag" during transient operation. This perceived effect is a combination of the low speed steady state torque and a slower rate to reach maximum torque during a load step. In order to increase customer acceptance of downsized concepts it is vital that the low speed torque and transient response are optimized. Variable Length Intake Manifolds (VLIM) have long been an established method of improving the full load performance of naturally aspirated engines. The manifold length being "tuned" to provide a high-pressure pulse at intake valve closing to maximize cylinder filling and deliver improved performance. This same approach could be applied to turbocharged engines to improve low speed torque and transient response. This paper investigates the affects of VLIM technology applied to a 1.4-litre turbocharged gasoline direct injection engine. It demonstrates improvements in low speed torque and transient response achieved through tuning. It also investigates the tuning options available at high speed on a turbocharged engine and demonstrates the fuel consumption benefits that can be achieved through varying manifold runner length.
机译:火花点火发动机的缩小尺寸被认为是降低燃料消耗的关键贡献者。涡轮增压发动机在乘用车中变得普遍存在,取代了自然吸气的较大容量发动机。然而,涡轮增压发动机通常在瞬态操作期间遭受“滞后”。这种感知效果是低速稳态扭矩的组合和较慢的速率,以在负载步骤期间达到最大扭矩。为了提高客户接受缩小概念,它至关重要的是优化低速扭矩和瞬态响应。可变长度的进气歧管(VLIM)长期以来一直是提高自然吸气发动机的满载性能的建立方法。歧管长度“调谐”以在进气阀关闭时提供高压脉冲,以最大化气缸填充并提供改进的性能。这种方法可以应用于涡轮增压发动机,以提高低速扭矩和瞬态响应。本文研究了VLIM技术应用于1.4升涡轮增压汽油直喷发动机的影响。它展示了通过调谐实现的低速扭矩和瞬态响应的改进。它还在涡轮增压发动机上以高速调整调整选项,并展示了通过不同的流形赛道长度实现的燃料消耗益处。

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