燃烧科学与技术
燃燒科學與技術
연소과학여기술
JOURNAL OF COMBUSTION SCIENCE AND TECHNOLOGY
2014年
1期
31-37
,共7页
赵昌普%李小毡%张军%杨俊伟%朱航%朱云尧
趙昌普%李小氈%張軍%楊俊偉%硃航%硃雲堯
조창보%리소전%장군%양준위%주항%주운요
柴油机%废气再循环%热效应%稀释效应%燃烧%排放
柴油機%廢氣再循環%熱效應%稀釋效應%燃燒%排放
시유궤%폐기재순배%열효응%희석효응%연소%배방
diesel engine%exhaust gas recirculation(EGR)%thermal effect%dilution effect%combustion
以改进的KIVA-3V程序为计算平台,在转速为1,600,r/min,每循环喷油量为52.8,mg工况下,分别进行了EGR 的热效应和稀释效应对柴油机燃烧和排放影响的数值模拟.结果表明,EGR 的热效应对滞燃期影响较大,而稀释效应成为制约最高爆发压力和缸内温度的主要因素,且随着氧气体积分数的降低,热效应对最高爆发压力的影响增强;EGR导致碳烟排放增加是由于EGR的稀释效应,低温燃烧时碳烟排放的降低是EGR的稀释效应和热效应相互作用的结果;相比稀释效应,EGR 的热效应是实现低温燃烧的主要因素,高进气热容更易改善 NOx和碳烟排放的折衷关系.
以改進的KIVA-3V程序為計算平檯,在轉速為1,600,r/min,每循環噴油量為52.8,mg工況下,分彆進行瞭EGR 的熱效應和稀釋效應對柴油機燃燒和排放影響的數值模擬.結果錶明,EGR 的熱效應對滯燃期影響較大,而稀釋效應成為製約最高爆髮壓力和缸內溫度的主要因素,且隨著氧氣體積分數的降低,熱效應對最高爆髮壓力的影響增彊;EGR導緻碳煙排放增加是由于EGR的稀釋效應,低溫燃燒時碳煙排放的降低是EGR的稀釋效應和熱效應相互作用的結果;相比稀釋效應,EGR 的熱效應是實現低溫燃燒的主要因素,高進氣熱容更易改善 NOx和碳煙排放的摺衷關繫.
이개진적KIVA-3V정서위계산평태,재전속위1,600,r/min,매순배분유량위52.8,mg공황하,분별진행료EGR 적열효응화희석효응대시유궤연소화배방영향적수치모의.결과표명,EGR 적열효응대체연기영향교대,이희석효응성위제약최고폭발압력화항내온도적주요인소,차수착양기체적분수적강저,열효응대최고폭발압력적영향증강;EGR도치탄연배방증가시유우EGR적희석효응,저온연소시탄연배방적강저시EGR적희석효응화열효응상호작용적결과;상비희석효응,EGR 적열효응시실현저온연소적주요인소,고진기열용경역개선 NOx화탄연배방적절충관계.
This paper presents the numerical simulation of influences of thermal and dilution effects of EGR on diesel combustion and emissions based on modified KIVA-3V source code under the speed of 1 600,r/min and the fuel injec-tion quantity of 52.8,mg per cycle of a diesel engine. The results show that the thermal effect of EGR has greater influ-ence on ignition delay,while the influence of dilution effect on in-cylinder temperature and maximum cylinder pres-sure is larger. The increase in soot emissions by introducing EGR is due to the dilution effect of EGR. Under the condi-tion of low temperature combustion,the decrease in soot emissions is due to the combined interaction of thermal and dilution effects of EGR. Compared with the dilution effect of EGR,its thermal effect is a crucial factor in realizing low temperature combustion,and high intake heat capacity is easier to improve the tradeoff relationship between NOx and soot emissions.