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dc.contributor.author谢志平
dc.contributor.author伍卫
dc.contributor.author杨俊杰
dc.contributor.author陈文芗
dc.date.accessioned2016-05-17T02:45:49Z
dc.date.available2016-05-17T02:45:49Z
dc.date.issued2015-5-28
dc.identifier.citation厦门大学学报(自然科学版),2015,(3):126-131
dc.identifier.issn0438-0479
dc.identifier.otherXDZK201503022
dc.identifier.urihttps://dspace.xmu.edu.cn/handle/2288/105969
dc.description.abstract为提高柴油机的热管理水平,研究了柴油机部件之间热传递关系.采用流固耦合法和集总参数法,建立了一个柴油机的热阻-热容(rC)动态传热网络模型.该模型中各节点之间的热阻是关于柴油机部件的几何尺寸、材料属性和运行参数的函数,因此该热阻-热容模型可应用于其他相似的内燃机.以台架试验的柴油机为仿真对象,利用MATlAb中的龙格-库塔算法计算其传热模型的矩阵微分方程,预测了柴油机气缸套、气缸盖、活塞、冷却液、机油和废气的温度.为验证仿真结果,分别测量了柴油机的冷却液、机油和废气的温度,结果表明,仿真结果与实测数据变化趋势一致.
dc.description.abstractThermal behaviors of diesel-engine components are studied for enhancing thermal management levels.A concise resistance-capacitance(RC)model for diesel engines is presented based on liquid-solid coupled and lumped parameter theory.For each resistance,an expression as a function of diesel engines components geometry,material properties,and operational parameters is derived to make the model applicable to other similar engines.The matrix differential equation of diesel engines on the bench test is calculated by using the Runge-Kutta algorithm in MATLAB.Temperatures of the cylinder liner,cylinder head,piston,coolant,oil and gas are predicted in the model,and are measured to validate the simulation result.Computed conclusions agree well with experimental results in variation tendency.
dc.description.sponsorship福建省科技厅工业高校产学合作重大项目(2014H6026)
dc.language.isozh_CN
dc.subject柴油机
dc.subject热阻-热容网络
dc.subject热传递
dc.subject数值模拟
dc.subject热管理
dc.subjectdiesel engines
dc.subjectresistance-capacitance network
dc.subjectheat transfer
dc.subjectnumerical simulation
dc.subjectthermal management
dc.title一种柴油机热阻-热容的热管理模型
dc.title.alternativeA Thermal Management Model for Diesel Engines Based on Resistance-capacitance Theory
dc.typeArticle


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