分离膨胀室参数对摩托车单缸发动机排气压力振荡的影响

Q4 Social Sciences
Kārlis Banis
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引用次数: 0

摘要

摘要研究了分离排气膨胀室参数对火花点火内燃机压力振荡的影响。众所周知,排气膨胀室在主要装备单缸发动机的高性能摩托车的原始设备(OE)和售后设备(AE)排气系统制造商中越来越受欢迎,但这些公司不愿透露上述膨胀室的任何详细操作原理。本研究的主题是用于高性能摩托车的膨胀室(独立的)类型,特别是当测试不同的室体积、位置和通道尺寸时,它对排气压力脉动的影响。在Solidworks Flow Simulation环境下,对模拟发动机满负荷稳态运行的简化排气管模型进行了时变计算流体动力学(CFD)分析。以本田CRF450R摩托车发动机为例,使用1D发动机性能计算器软件对其进行了全面定义,确定了任意曲轴位置下的燃烧室压力和排气门升程。根据发动机参数和转速,计算了集气管入口处的排气体积流量。测量了与物理时间相关的平均压力值,并绘制了整个集管进口截面的图。研究人员对8种不同的集气管和排气膨胀室组合进行了建模和测试,并在低、中、高发动机转速下对结果进行了比较。研究发现,排气膨胀室的存在往往会抑制排气阀开启时产生的压力振荡的幅度和频率。观察表明,根据性能导向摩托车的设计,增加一个膨胀室有助于减少发动机调整的负面影响,同时也抑制了积极的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Effect of separated Expansion Chamber Parameters on Exhaust Pressure Oscillations in Single Cylinder Motorcycle Engine
Abstract This paper investigates the effect of separated exhaust expansion chamber parameters on pressure oscillations in spark-ignited internal combustion (IC) gasoline engines. It is known that exhaust expansion chambers are becoming increasingly more popular among both – original equipment (OE) and aftermarket equipment (AE) exhaust system manufacturers for performance-oriented motorcycles equipped with mainly single cylinder engines, but the companies are reluctant to reveal any detailed principles of operation of the mentioned expansion chambers. The subject of this research is the type of expansion chamber (separate) as used on performance-oriented motorcycles, particularly its’ effect on exhaust pressure pulsations as different chamber volumes, locations and passage sizes are tested. Time-dependent computational fluid dynamics (CFD) analysis was carried out in Solidworks Flow Simulation environment on a simplified exhaust header pipe model imitating engine operation at full load and steady speed. Honda CRF450R motorcycle engine was used as the example and fully defined using a 1D engine performance calculator software to determine the combustion chamber pressure and exhaust valve lift at any given crankshaft position. Volume flow rate of exhaust gasses at the header pipe inlet was calculated based on engine parameters and operating speed. The average pressure values with respect to physical time were measured and graphed across the header pipe inlet cross-section. Eight different header pipe and exhaust expansion chamber combinations were modelled, tested, and results compared at low, medium and high engine speeds. It was found that the presence of exhaust expansion chamber tends to dampen the amplitude and decrease the frequency of pressure oscillations generated at the opening of the exhaust valve(s). Observations show that the addition of an expansion chamber as per design of performance-oriented motorcycles helps to decrease the negative effect of engine tuning while also dampening the positive effect.
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来源期刊
Rural Sustainability Research
Rural Sustainability Research Social Sciences-Geography, Planning and Development
CiteScore
1.40
自引率
0.00%
发文量
0
审稿时长
9 weeks
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