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基于DPM模型的U形管道内燃油压降及换热特性研究
引用本文:王新河,李迪,纪学玮,徐擎立,焦兆才,刘翔,张天来. 基于DPM模型的U形管道内燃油压降及换热特性研究[J]. 内燃机与配件, 2022, 0(4): 33-35. DOI: 10.3969/j.issn.1674-957X.2022.04.011
作者姓名:王新河  李迪  纪学玮  徐擎立  焦兆才  刘翔  张天来
作者单位:中国航空油料有限责任公司,北京100088;中国民用航空飞行学院,广汉618307
摘    要:为探究民用航空器燃油系统换热器内燃油流动特性和换热特性的规律,本文建立了换热器的U形管道简化模型,利用DPM模型进行了数值模拟研究,对比了附加质量力和含水率对管道压降与传热的影响.研究结果表明,压降计算受到附加质量力和含水率的影响,加入附加质量力和含水率增高会使压降计算升高,但附加质量力和含水率对管道出口温度影响较小....

关 键 词:燃油系统换热器  流动特性  换热特性  压降

Research on Fuel Pressure Drop and Heat Transfer Characteristics of U-shaped Pipe Based on DPM
WANG Xin-he,LI Di,JI Xue-wei,XU Qing-li,JIAO Zhao-cai,LIU Xiang,ZHANG Tian-lai. Research on Fuel Pressure Drop and Heat Transfer Characteristics of U-shaped Pipe Based on DPM[J]. Internal Combustion Engine & Parts, 2022, 0(4): 33-35. DOI: 10.3969/j.issn.1674-957X.2022.04.011
Authors:WANG Xin-he  LI Di  JI Xue-wei  XU Qing-li  JIAO Zhao-cai  LIU Xiang  ZHANG Tian-lai
Affiliation:(China Aviation Fuel Co.,Ltd.,Beijing 100088,China;Civil Aviation Flight University of China,Guanghan 618307,China)
Abstract:In order to explore the laws of fuel flow characteristics and heat transfer characteristics in the heat exchanger of the civil aircraft fuel system,a simplified model of the U-shaped pipe of the heat exchanger is established in this paper,and the DPM model is used to conduct a numerical simulation study,and compare the additional mass force and The effect of moisture content on pressure drop and heat transfer in pipes.The research results show that the calculation of pressure drop is affected by the additional mass force and water content.Adding additional mass force and water content will increase the pressure drop calculation,but the additional mass force and water content have little effect on the outlet temperature of the pipeline.On the other hand,in the U-shaped pipe,the heat transfer effect of the elbow area is much stronger than that of the straight pipe area,and with the increase of the water content,the heat transfer effect is enhanced.
Keywords:fuel system heat exchanger  flow characteristics  heat transfer characteristics  pressure drop
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