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变物性条件下基于(火积)理论的圆柱体热源构形研究 被引量:6

Constructal Investigation of a Cylindrical Heat Source Based on Entransy Theory With Temperature-Dependent Properties
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摘要 建立了导热基座上的三维圆柱体热源层流散热模型,考虑空气的变热物性,研究了热源半径、强度和位置以及热源和基座的热导率对当量热阻和最大热阻的影响。结果表明:当给定热源强度和热导率时,存在一个临界半径使得当量热阻和最大热阻取最大值;当量热阻和最大热阻均随热源位置从入口处向出口处移动而增加。当给定热源半径和位置时,提高热源和基座的热导率,当量热阻和最大热阻均减小;热源强度不影响当量热阻和最大热阻随半径的变化趋势。 The 3-D model of heat dissipation with laminar flow for the cylindrical heat source on the heat conduction base is established.Taking the temperature-dependent air properties into consideration,the influences of the radius,the strength,the location of the heat source,the thermal conductivities of the heat source and the base on the maximum thermal resistance and the equivalent thermal resistance are investigated.The results show that when the strength of the heat source and the thermal conductivities are fixed,there exists a critical radius corresponding to the maximums of equivalent thermal resistance and maximum thermal resistance;and the equivalent thermal resistance and the maximum thermal resistance all increase as the heat source moves from the inlet to the outlet.When the radius and the location of the heat source are fixed,the equivalent thermal resistance and the maximum thermal resistance can be reduced by improving the thermal conductivities of the heat source and the base,and the strength of the heat source can not change the curvilinear trends of the equivalent thermal resistance and the maximum thermal resistance along with the change of the radius.
出处 《工程热物理学报》 EI CAS CSCD 北大核心 2016年第9期1994-1999,共6页 Journal of Engineering Thermophysics
基金 国家自然科学基金(No.51206184 No.51579244 No.51356001 No.51176203)
关键词 电子器件 构形理论 (火积)理论 散热优化 变物性 electronic component constructal theory entransy theory heat dissipation optimization variable properties
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  • 1Garimella S V, Fleischer A S, Murthy J Y, et al. Ther- mal Challenges in Next-generation Electronic Systems [J]. Components and Packaging Technologies, IEEE Transac- tions on, 2008, 31(4): 801- 815.
  • 2Deng Qihong. Fluid Flow and Heat Transfer Characteris- tics of Natural Convection in Square Cavities Due to Dis- crete Source-sink Pairs [J]. International Journal of Heat and Mass Transfer, 2008, 51(25): 5949 -5957.
  • 3王涵,夏新林.变物性对有凸出热源通道换热计算的影响[J].节能技术,2011,29(2):129-133. 被引量:2
  • 4Alawadhi E M, Bourisliy R I. Forced Convection in a Wavy Channel With Discrete Heat Sources [J]. Interna- tional Journal of Numerical Methods for Heat & Fluid Flow, 2012, 22(2): 215 -227.
  • 5Kamath P M, Balaji C, Venkateshan S P. Heat Trans- fer Enhancement With Discrete Heat Sources in a Metal Foam Filled Vertical Channel [J]. International Commu- nications in Heat and Mass Tr'ansfer. 2014. 53: 180- 184.
  • 6过增元,程新广,夏再忠.最小热量传递势容耗散原理及其在导热优化中的应用[J].科学通报,2003,48(1):21-25. 被引量:101
  • 7GUO Zengyuan, ZHU Hongye, LIANG Xingang. Entransy-A Physical Quantity Describing Heat Transfer Ability [J]. International Journal of Heat and Mass Trans- fer, 2007, 50(13/14): 2545- 2556.
  • 8过增元.热学中的新物理量[J].工程热物理学报,2008,29(1):112-114. 被引量:42
  • 9陈林根.[火积]理论及其应用的进展[J].科学通报,2012,57(30):2815-2835. 被引量:35
  • 10程雪涛,梁新刚,过增元.孤立系统内传热过程的(火积)减原理[J].科学通报,2011,56(3):222-230. 被引量:21

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