首页> 外文会议>ASME summer heat transfer conference;HT2009 >NANOFLUID SUSPENSIONS AS DERIVATIVE OF INTERFACE HEAT TRANSFER MODELING IN POROUS MEDIA
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NANOFLUID SUSPENSIONS AS DERIVATIVE OF INTERFACE HEAT TRANSFER MODELING IN POROUS MEDIA

机译:纳米流体悬浮液在多孔介质中界面传热建模中的应用

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Spectacular heat transfer enhancement has been measured in nanofluid suspensions. Attempts in explaining these experimental results did not yield yet a definite answer. Modeling the heat conduction process in nanofluid suspensions is being shown to be a special case of heat conduction in porous media subject to Lack of Local thermal equilibrium (LaLotheq). The topic of heat conduction in porous media subject to Lack of Local thermal equilibrium (LaLotheq) is reviewed, introducing one of the most accurate methods of measuring the thermal conductivity, the transient hot wire method, and discusses its possible application to dual-phase systems. Maxwell's concept of effective thermal conductivity is then introduced and theoretical results applicable for nanofluid suspensions are compared with published experimental data.
机译:已经在纳米流体悬浮液中测量了惊人的传热增强。试图解释这些实验结果的尝试还没有得出确切的答案。对纳米流体悬浮液中的热传导过程进行建模被证明是在缺乏局部热平衡(LaLotheq)的情况下多孔介质中热传导的一种特殊情况。回顾了缺少局部热平衡(LaLotheq)的多孔介质中的热传导主题,介绍了测量热导率的最准确方法之一,即瞬态热线法,并讨论了其在双相系统中的可能应用。 。然后介绍了麦克斯韦的有效导热系数的概念,并将适用于纳米流体悬浮液的理论结果与已发表的实验数据进行了比较。

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