燃烧科学与技术
燃燒科學與技術
연소과학여기술
JOURNAL OF COMBUSTION SCIENCE AND TECHNOLOGY
2015年
3期
209-216
,共8页
张韦%吴伟%朱明%陈贵升%陈朝辉
張韋%吳偉%硃明%陳貴升%陳朝輝
장위%오위%주명%진귀승%진조휘
高原环境%废气再循环(EGR)%工作特性%模拟
高原環境%廢氣再循環(EGR)%工作特性%模擬
고원배경%폐기재순배(EGR)%공작특성%모의
plateau environment%exhaust gas recirculation(EGR)%operation characteristic%simulation
基于D19型高压共轨柴油机的一维仿真模型,研究高原环境下EGR对柴油机工作特性的影响,并将其CFD 模型与 TRF 化学动力学模型耦合,研究高海拔下(2,km)EGR 中的各组分对燃烧及污染物生成的影响。结果表明:高原环境会使EGR适用范围缩小,使碳烟排放对EGR更加敏感;EGR中非主要组分对缸内放热率、压力、温度及CO排放、碳烟排放并无明显影响,但会导致NO排放呈现先减少后增加的趋势,其终值比只有EGR主要组分时的值高;在高原环境与 EGR 的共同作用下,芘与苯、萘、菲呈现不同的变化趋势,高温缺氧的环境使大量芘生成碳烟,且氧化量减少,导致碳烟终值约为0,km、无,EGR时的7倍。
基于D19型高壓共軌柴油機的一維倣真模型,研究高原環境下EGR對柴油機工作特性的影響,併將其CFD 模型與 TRF 化學動力學模型耦閤,研究高海拔下(2,km)EGR 中的各組分對燃燒及汙染物生成的影響。結果錶明:高原環境會使EGR適用範圍縮小,使碳煙排放對EGR更加敏感;EGR中非主要組分對缸內放熱率、壓力、溫度及CO排放、碳煙排放併無明顯影響,但會導緻NO排放呈現先減少後增加的趨勢,其終值比隻有EGR主要組分時的值高;在高原環境與 EGR 的共同作用下,芘與苯、萘、菲呈現不同的變化趨勢,高溫缺氧的環境使大量芘生成碳煙,且氧化量減少,導緻碳煙終值約為0,km、無,EGR時的7倍。
기우D19형고압공궤시유궤적일유방진모형,연구고원배경하EGR대시유궤공작특성적영향,병장기CFD 모형여 TRF 화학동역학모형우합,연구고해발하(2,km)EGR 중적각조분대연소급오염물생성적영향。결과표명:고원배경회사EGR괄용범위축소,사탄연배방대EGR경가민감;EGR중비주요조분대항내방열솔、압력、온도급CO배방、탄연배방병무명현영향,단회도치NO배방정현선감소후증가적추세,기종치비지유EGR주요조분시적치고;재고원배경여 EGR 적공동작용하,비여분、내、비정현불동적변화추세,고온결양적배경사대량비생성탄연,차양화량감소,도치탄연종치약위0,km、무,EGR시적7배。
The effects of exhaust gas recirculation(EGR)on the operation characteristics of diesel under high altitude were studied based on the one-dimensional simulation model of D19 high pressure common rail diesel engine. The effects of different components of EGR on combustion and emissions generation under high altitude(2,km)were ana-lyzed by coupling the CFD model with TRF chemical kinetic model. The calculation results show that the scope of EGR application will become narrower and soot emission will be more sensitive to EGR under high altitude. The inci-dental components of EGR have no obvious influence on heat release rate,pressure,temperature in cylinder and CO and soot emissions,but they will cause NO emission to derease first and then increase,resulting in a final value higher than that when there are only the main components. The trend of pyrene is different from that of benzene, naphthalene and phenanthrene under the effects of plateau environment and the EGR. A large amount of soot was gen-erated from pyrene under high temperature and hypoxic environment. As a result,the soot emission is seventimes that under the altitude of 0,km and in the absence of EGR.