Analysis of combustion chamber insulation effects on the performance and exhaust emissions of a DI diesel engine using a multi-zone model

C.D. Rakopoulos, G.N. Taklis, E.I. Tzanos
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引用次数: 22

Abstract

A comprehensive two-dimensional multi-zone model of a diesel engine cycle is presented in this study, in order to examine the influence of insulating the combustion chamber on the performance and exhaust pollutants emissions of a naturally-aspirated, direct injection (DI), four-stroke, water-cooled diesel engine. The heat insulation is taken into account by the corresponding rise of wall temperature, since this is the final result of insulation useful for the study. It is found that there is no remarkable improvement of engine efficiency, since the decrease of volumetric efficiency has a greater influence on it than the decrease of heat loss to the coolant, which is converted mainly to exhaust gas enthalpy (significant rise of the exhaust gas temperature). As far as the concentration of exhaust pollutant emissions is concerned, it is found that the rising heat insulation leads to a significant increase of the exhaust nitric oxide (NO) and to a moderate increase of the exhaust soot concentration. Plots of temperature, equivalence ratio, NO and soot distributions at various instants of time inside the combustion chamber, emanating from the application of the multi-zone model, aid the correct interpretation of the insulation effects gaining insight into the underlying mechanisms involved.

用多区模型分析燃烧室隔热对直喷式柴油机性能和废气排放的影响
本文建立了柴油机循环的二维多区域综合模型,研究了燃烧室隔热对自然吸气直喷四冲程水冷式柴油机性能和排气污染物排放的影响。墙体温度的相应升高也考虑到了隔热效果,因为这是对研究有用的隔热效果的最终结果。研究发现,发动机效率并没有显著提高,因为容积效率的降低对发动机效率的影响大于冷却剂热损失的减少,而冷却剂热损失主要转化为废气焓(废气温度显著升高)。就尾气污染物排放浓度而言,发现隔热系数的提高导致尾气一氧化氮(NO)的显著增加,尾气烟尘浓度的适度增加。通过应用多区模型,绘制出燃烧室内不同时刻的温度、等效比、NO和煤烟分布图,有助于正确解释隔热效果,从而深入了解所涉及的潜在机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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