首页> 外文会议>Advances in Electronic Packaging 2005 pt.C >REMOTE HEAT PIPE BASED HEAT EXCHANGER PERFORMANCE IN NOTEBOOK COOLING
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REMOTE HEAT PIPE BASED HEAT EXCHANGER PERFORMANCE IN NOTEBOOK COOLING

机译:笔记本散热中基于远程热管的换热性能

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Remote heat pipe based heat exchanger cooling systems are becoming increasingly popular in cooling of notebook computers. In such cooling systems, one or more heat pipes transfer the heat from the more populated area to a location with sufficient space allowing the use of a heat exchanger for removal of the heat from the system. In analsysis of such systems, the temperature drop in the condenser section of the heat pipe is assumed negligible due to the nature of the condensation process. However, in testing of various systems, non linear longitudinal temperature drops in the heat pipe in the range of 2 to 15℃, for different processor power and heat exchanger airflow, have been measured. Such temperature drops could cause higher condenser thermal resistance and result in lower overall heat exchanger performance. In fact the application of the conventional method of estimating the thermal performance, which does not consider such a nonlinear temperature variations, results in inaccurate design of the cooling system and requires unnecessarily higher safety factors to compensate for this inaccuracy. To address the problem, this paper offers a new analytical approach for modeling the heat pipe based heat exchanger performance under various operating conditions. The method can be used with any arbitrary condenser temperature variations. The results of the model show significant increase in heat exchanger thermal resistance when considering a non linear condenser temperature drop. The experimental data also verifies the result of the model with sufficient accuracy and therefore validates the application of this model in estimating the performance of these systems.
机译:基于远程热管的热交换器冷却系统在笔记本计算机的冷却中越来越受欢迎。在这样的冷却系统中,一个或多个热管将热量从人口稠密的区域转移到具有足够空间的位置,从而允许使用热交换器从系统中去除热量。在这样的系统的分析中,由于冷凝过程的性质,假定热管的冷凝器部分中的温度下降可忽略不计。但是,在各种系统的测试中,已经测量了不同处理器功率和热交换器气流的情况下,热管中的非线性纵向温度下降幅度为2至15℃。这样的温度下降可能导致更高的冷凝器热阻,并导致更低的整体热交换器性能。实际上,不考虑这种非线性温度变化的传统的估计热性能的方法的应用导致冷却系统的设计不准确,并且需要不必要的更高的安全系数来补偿这种不准确性。为了解决该问题,本文提供了一种新的分析方法,用于在各种操作条件下对基于热管的热交换器性能进行建模。该方法可用于任意冷凝器温度变化。当考虑非线性冷凝器温度下降时,模型的结果表明热交换器的热阻显着增加。实验数据还以足够的准确性验证了模型的结果,因此验证了该模型在评估这些系统性能方面的应用。

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