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高速船用汽油机缸盖水套CFD分析及优化
引用本文:杨靖,马凯,刘凯敏,陈小强,邓华,马孝勇.高速船用汽油机缸盖水套CFD分析及优化[J].船舶工程,2016,38(3):41-45.
作者姓名:杨靖  马凯  刘凯敏  陈小强  邓华  马孝勇
作者单位:湖南大学,汽车车身先进设计制造国家重点实验室,长沙410082;湖南大学,先进动力总成技术研究中心,长沙410082
基金项目:国家高技术研究发展计划(863计划)项目(2012AA111703);湖南省研究生科研创新项目(CX2015B088)
摘    要:本文以某高速船用汽油机气缸盖做为研究对象,利用CFD软件对气缸盖内冷却液流动及传热过程进行流固耦合模拟,分析并评价了该汽油机气缸盖的冷却性能,并针对冷却水套缸垫上水孔提出优化方案。结果表明:气缸盖温度分布不均匀,最高温差约137K,缸盖水腔局部区域流动分布较差,鉴于此,本文依据正交设计方法提出了9种对缸垫上水孔尺寸及位置的优化方案,对比改进后的气缸盖温度场、流场结果,选择出最佳改进方案;改进后,水套内冷却液流动更好,冷却性能得到了改善,有效的降低了气缸盖壁面的温度。

关 键 词:高速船用汽油机  气缸盖  水套  传热  流固耦合  优化
收稿时间:2015/12/17 0:00:00
修稿时间:2016/3/17 0:00:00

The Analysis and Optimization on CFD Method of a High-speed Marine Gasoline Engine Cylinder Head and Water-jacket
YangJing,MaKai,LiuKaiMin,ChenXiaoQiang,DengHua and MaXiaoYong.The Analysis and Optimization on CFD Method of a High-speed Marine Gasoline Engine Cylinder Head and Water-jacket[J].Ship Engineering,2016,38(3):41-45.
Authors:YangJing  MaKai  LiuKaiMin  ChenXiaoQiang  DengHua and MaXiaoYong
Institution:State Key Laboratory Of Advanced Design And Manufacturing For Vehicle Body Of Hunan University,State Key Laboratory Of Advanced Design And Manufacturing For Vehicle Body Of Hunan University,State Key Laboratory Of Advanced Design And Manufacturing For Vehicle Body Of Hunan University,State Key Laboratory Of Advanced Design And Manufacturing For Vehicle Body Of Hunan University,State Key Laboratory Of Advanced Design And Manufacturing For Vehicle Body Of Hunan University,State Key Laboratory Of Advanced Design And Manufacturing For Vehicle Body Of Hunan University
Abstract:This paper took a high-speed marine gasoline engine cylinder head as a study object and utilized software of CFD, applied the method of FSI to simulate the flow and heat transfer phenomenon of cooling water, analyzed and evaluated the cooling performance of this gasoline engine cylinder head, based on the water holes of cylinder head gasket, proposed the optimization schemes .The results show that: the cylinder head temperature distribution is nonuniform, the maximum temperature difference is about 137K, the flow distribution is poorer in the local area of cylinder head water cavity, for that reason, 9 optimization schemes are proposed according to the location and bore diameter of water holes of cylinder head gasket based on orthogonal design method, after compared with calculation results of temperature and velocity fields of each projects, choose the best improvement plan; after the improvement, the coolant flow distribution is better than before in the water jacket, the cooling performance is improved of water jacket, and the wall temperature of cylinder head is effective reduced.
Keywords:cylinder head  water jacket  heat transfer  FSI  optimization
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