首页> 外文会议>ASME international mechanical engineering congress and exposition >CONTINUOUSLY VARYING EXHAUST PIPE LENGTH AND DIAMETER TO IMPROVE THE PERFORMANCE OF A NATURALLY ASPIRATED SI ENGINE
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CONTINUOUSLY VARYING EXHAUST PIPE LENGTH AND DIAMETER TO IMPROVE THE PERFORMANCE OF A NATURALLY ASPIRATED SI ENGINE

机译:不断改变排气管长度和直径,以提高自然吸气SI发动机的性能

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Wave tuning is a concept which increases the volumetric efficiency of a naturally aspirated engine by providing a scavenging effect to clear out residual gases and increase inflow of fresh charge. This paper analyses the effects of tuning pulsating sonic wave produced over a broad range of speeds in the exhaust manifold of a single cylinder 510 cc SI engine, on the power and torque of the engine. 1-D model of the engine is modeled using Ricardo Wave. The simulation results obtained through the parametric analysis are compared with the standard data provided by the engine testing. On average, 7% increase in torque and 6% increase in power are observed by continuously varying exhaust pipe length. While continuously varying exhaust pipe diameter, 6% increase in torque and power is observed. When combined together, the continuously varying exhaust pipe length and diameter produce 8.5% increased torque and 9% increased power, respectively.
机译:波调谐是通过提供清除作用以清除残留气体并增加新鲜装料的流入量来提高自然吸气发动机的容积效率的概念。本文分析了在单缸510 cc SI发动机的排气歧管中在很宽的转速范围内产生的调节脉动声波对发动机功率和扭矩的影响。使用Ricardo Wave对引擎的一维模型进行建模。将通过参数分析获得的模拟结果与发动机测试提供的标准数据进行比较。通过不断变化的排气管长度,平均观察到扭矩增加了7%,功率增加了6%。在不断改变排气管直径的同时,观察到扭矩和功率增加了6%。当组合在一起时,连续变化的排气管长度和直径分别产生8.5%的增加的扭矩和9%的增加的功率。

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