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多孔泡沫金属相界面传热系数的研究 被引量:2
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作者 张丹 李菊香 《功能材料》 EI CAS CSCD 北大核心 2010年第A02期365-367,共3页
基于简单立方体模型并采用翅片理论分析得出了流体在多孔泡沫金属通道内层流强制对流时相界面传热系数的表达式,并在不同条件下研究了流体流速和孔隙结构对相界面传热系数的影响,结果表明,相界面传热系数随着流体流速的增大而增大,随着... 基于简单立方体模型并采用翅片理论分析得出了流体在多孔泡沫金属通道内层流强制对流时相界面传热系数的表达式,并在不同条件下研究了流体流速和孔隙结构对相界面传热系数的影响,结果表明,相界面传热系数随着流体流速的增大而增大,随着多孔泡沫金属孔密度的增大而增大,而随着多孔泡沫金属的孔隙率的增大先增大后减小。 展开更多
关键词 多孔泡沫金属 简单立方体模型 翅片理论 相界面传热系数
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Thermal performance analysis of non-uniform height rectangular fin based on constructal theory and entransy theory 被引量:4
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作者 YANG Ai Bo CHEN Lin Gen +2 位作者 XIE Zhi Hui FENG Hui Jun SUN Feng Rui 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2016年第12期1882-1891,共10页
A model of non-uniform height rectangular fin, in which the variation of base's thickness and width are taken into account, is established in this paper. The dimensionless maximum thermal resistance(DMTR) and the ... A model of non-uniform height rectangular fin, in which the variation of base's thickness and width are taken into account, is established in this paper. The dimensionless maximum thermal resistance(DMTR) and the dimensionless equivalent thermal resistance(DETR) defined based on the entransy dissipation rate(EDR) are taken as performance evaluation indexes. According to constructal theory, the variations of the two indexes with the geometric parameters of the fin are analyzed by using a finite-volume computational fluid dynamics code, the effects of the fin-material fraction on the two indexes are analyzed. It is found that the two indexes decrease monotonically as the ratio between the front height and the back height of the fin increases subjected to the non-uniform height rectangular fin. When the model is reduced to the uniform height fin, the two indexes increase first and then decrease with increase in the ratio between the height of the fin and the fin space. The fin-material fraction has no effect on the change rule of the two indexes with the ratio between the height of the fin and the fin space. The sensitivity of the DETR to the geometric parameters of the fin is higher than that of the DMTR to the geometric parameters. The results obtained herein can provide some theoretical support for the thermal design of rectangular fins. 展开更多
关键词 constructal design entransy theory maximum thermal resistance equivalent thermal resistance rectangular fin generalized thermodynamic optimization
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