Optimization of combustion chamber geometry for stoichiometric diesel combustion using a micro genetic algorithm

Citations

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36
Citations

SCOPUS

49

초록

This paper describes the optimization of combustion chamber geometry and engine operating conditions for stoichiometric diesel combustion, targeting lower gross indicated specific fuel consumption. The KIVA code, coupled with a micro genetic algorithm population of nine for each generation was used. The optimization variables were composed of ten variables related to the combustion chamber geometry and engine operating conditions. In addition, an auto mesh generator was developed for generating various kinds of combustion chambers, such as open-crater, re-entrant, deep, and shallow types. In addition, the computational models were validated against the experimental results for a stoichiometric process in terms of the combustion pressure history and emissions. Through the preset optimization, a 35% improvement in the gross indicated that specific fuel consumption was achieved. In addition, the optimization results showed that the optimum engine operating conditions employed a premixed charge compression ignition combustion regime with early injection and a narrow spray included angle. Furthermore, a higher boost pressure was used to prevent fuel film formation.

키워드

Combustion chamber geometryMicro genetic algorithmKIVA codeStoichiometric diesel combustionLOW-TEMPERATURE COMBUSTIONGASOLINEFUELCFD
제목
Optimization of combustion chamber geometry for stoichiometric diesel combustion using a micro genetic algorithm
저자
Park, Sung Wook
DOI
10.1016/j.fuproc.2010.07.015
발행일
2010-11
유형
Article
저널명
Fuel Processing Technology
91
11
페이지
1742 ~ 1752