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首页> 外文期刊>International Journal of Engine Research >Burn angles and form factors for Wiebe function fits to mass fraction burned curves of a spark ignition engine with variable valve timing
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Burn angles and form factors for Wiebe function fits to mass fraction burned curves of a spark ignition engine with variable valve timing

机译:Wiebe函数的燃烧角和形状因数适合于可变气门正时的火花点火发动机的质量分数燃烧曲线

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摘要

The charge burn characteristics of a port-injected spark ignition engine with a pent-roof combustion chamber and variable valve timing have been investigated experimentally. The engine was run under stoichiometric mixture operating conditions over ranges of intake and exhaust valve timings, engine speed, and engine load. Empirical functions have been developed for the 0–90 per cent mass fraction burned angle and the form factor, which define Wiebe function fits to the mass fraction burned variation in the crank angle domain. The burn angle and form factor have been related to the level of charge dilution by burned gas, engine speed, ignition timing, and charge density at spark timing. The dilution level has the strongest influence on the burn rate and profile. The dilution level varied with intake and exhaust valve timings, external exhaust gas recirculation, and engine load. The results indicate that intake and exhaust valve timings influence combustion primarily by modifying the charge dilution with burned gas and charge density.
机译:实验研究了带有顶棚燃烧室和可变气门正时的带有端口进气的火花点火发动机的充气燃烧特性。在进气门和排气门正时,发动机速度和发动机负载的范围内,发动机在化学计量的混合气运行条件下运行。已经为0-90%的质量分数燃烧角和形状因数开发了经验函数,这些函数定义Wiebe函数适合曲柄角域中的质量分数燃烧变化。燃烧角度和形状因数与通过燃烧气体的电荷稀释程度,发动机转速,点火正时和火花正时的电荷密度有关。稀释水平对燃烧速率和轮廓有最大的影响。稀释水平随进气门和排气门正时,外部排气再循环和发动机负载而变化。结果表明,进气门和排气门正时主要通过改变燃烧气体和充气密度来改变充气稀释度,从而影响燃烧。

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