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MODELING THE EFFECTS OF INTAKE PLENUM VOLUME ON THE PERFORMANCE OF A SMALL NATURALLY ASPIRATED RESTRICTED ENGINE

机译:模拟摄入增压体积对小型自然吸气式限制发动机性能的影响

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Intake tuning is a significant method of boosting performance by enhancing volumetric efficiency in a naturally aspirated engine. Elements of intake tuning can involve varying intake runner length, geometry and plenum shape and volume. Previous research has demonstrated the beneficial effects of increasing plenum volume on engine torque. This objective of this study was to evaluate the ability of analytical and two computer based models (simple and complex) to accurately predict the effects of varying plenum volume on steady state and transient engine performance for a small restricted spark ignition engine. The computer models were only moderately successful in characterizing steady state performance. The simple model matched torque peak locations but failed to adequately predict the advantageous effect of plenum volume on torque. The complex model more effectively simulated torque effects of plenum volume increase but did not adequately capture torque peak locations. Both models underestimated mid-range torque by up to 20%. Transient manifold filling was estimated well with both the complex computer model and analytical methods. Transient torque response differed by only 1-2 engine cycles and was also well predicted by the computer simulation.
机译:进气调是通过提高天然吸气发动机的体积效率来提高性能的显着方法。进气调节的元素可以涉及不同的进气跑道长度,几何和压力型形状和体积。以前的研究表明,增加压力体积对发动机扭矩的有益效果。本研究的这一目标是评估分析和两台基于计算机的模型(简单和复杂)的能力,以准确地预测不同增压体积对小型限制火花点火发动机的稳态和瞬态发动机性能的影响。计算机模型仅在表征稳态性能方面是中等成功的。简单的型号匹配扭矩峰值位置但未能充分预测压力体积对扭矩的有利效果。复杂模型更有效地模拟压力体积增加的扭矩效应,但没有充分捕获扭矩峰值位置。两种模型都低估了中档扭矩高达20%。复杂计算机模型和分析方法估计瞬态歧管填充。瞬态扭矩响应仅不同1-2个发动机循环,并且通过计算机仿真也得到了很好的预测。

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