115cc发动机排气歧管发散特性优化设计提升高端动力

R. Murali, S. A. Bakar, Z. Razlan, Aziz Ishak, Ika Syahira Abdullah, M. A. Rojan, Zunaidi Ibrahim, W. K. Wan Ahmad
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引用次数: 0

摘要

排气系统尤其是排气歧管是影响火花点火发动机性能的重要部件。排气系统中影响发动机性能的关键因素是背压。背压是排气系统最大压力和大气压力之间的差值。根据之前的研究,不优化的排气歧管设计会导致较高的背压,从而降低SI发动机的性能和燃油效率。本研究旨在通过一维发动机分析优化排气歧管发散特性,提升115cc SI发动机的高端动力。采用田口法进行信噪比分析,进行设计优化。分析发现,在高端发动机转速下,优化后的排气歧管散度配置可使平均制动功率提高4.67%。优化后的排气歧管散度配置还可以提高发动机的制动扭矩和燃油效率,从而直接减少对环境的碳足迹。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design Optimization of Exhaust Manifold's Divergence Characteristics in Enhancing High-End Power in 115cc SI Engine
The exhaust system especially the exhaust manifold is an essential component that affects the performance of the Spark Ignition (SI) engine. The critical factor inside the exhaust system that affects the engine's performance is backpressure. Backpressure is known as the difference between maximum pressure in the exhaust system and atmospheric pressure. Based on previous studies, it was found that an un-optimal exhaust manifold's design leads to higher backpressure that reduces the performance and the fuel efficiency of the SI engine. This research aimed at enhancing the high-end power of the 115cc SI engine by optimizing the exhaust manifold's divergence characteristics through 1D engine analysis. S/N ratio analysis was used through Taguchi's method as a tool to conduct the design optimization. From the analysis, it was found that the optimal exhaust manifold's divergence configuration improved the mean brake power by 4.67% at high-end engine speed. It is expected that the optimal exhaust manifold's divergence configuration could also improve the engine's brake torque and fuel efficiency which could directly reduce the carbon footprint to the environment.
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