涡轮增压器
柴油
汽车工程
燃烧
曲柄
燃油喷射
内燃机
重型的
喷油器
柴油机循环
柴油机
废气再循环
环境科学
核工程
机械
工程类
汽油机
机械工程
圆柱
化学
物理
有机化学
涡轮机
作者
Mirko Baratta,Roberto Finesso,Hamed Kheshtinejad,Daniela Anna Misul,Ezio Spessa,Yixin Yang,Massimo Arcidiacono
出处
期刊:SAE International journal of engines
[SAE International]
日期:2013-09-08
卷期号:6 (3): 1566-1579
被引量:11
摘要
An innovative 0D predictive combustion model for the simulation of the HRR (heat release rate) in DI diesel engines was assessed and implemented in a 1D fluid-dynamic commercial code for the simulation of a Fiat heavy duty diesel engine equipped with a Variable Geometry Turbocharger system, in the frame of the CORE (CO2 reduction for long distance transport) Collaborative Project of the European Community, VII FP. The 0D combustion approach starts from the calculation of the injection rate profile on the basis of the injected fuel quantities and on the injection parameters, such as the start of injection and the energizing time, taking the injector opening and closure delays into account. The injection rate profile in turn allows the released chemical energy to be estimated. The approach assumes that HRR is proportional to the energy associated with the accumulated fuel mass in the combustion chamber. This procedure allows an accurate calculation of different combustion parameters important for engine calibration, such as MFB50 (50% of fuel burned mass fraction crank angle).
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