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Heat Transfer Characterizations Of Heat Pipe In Comparison With Copper Pipe

机译:热管与铜管的传热特性

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The article presents some significant experimental data for studying the heat transfer behavior of heat pipe, which will further help the cooling efficiency improvement of the heat pipe cooler. It is well known that the heat pipe owns the extreme large heat conductivity and is often integrated with cooling plates for CPU cooling. The heat pipe uses special heat transfer techniques to obtain extremely large heat conductivity, which are the inside liquid evaporation for heat absorption and the inside microstructural capillarity for condensation. These special techniques yield the instant heat transfer from the heat source to the remote side directly, but the special heat transfer behavior is changed due to the integration with cooling plates. The destroyed heat transfer behavior of the heat pipe causes the cooling efficiency of the heat pipe cooler to be not able to reach a predicted good value. To improve the cooling efficiency of the heat pipe cooler we recover the original heat transfer behavior of the heat pipe integrated with cooling plates. This work first built a CPU simulator in accordance with the ASTM standard for heating the heat pipe, then uses the color schlieren technique to visualize the sequent heat flux nearby the heat pipe and the infrared thermal camera for quantitative temperature measurements synchronously. The result shows that the heat flux first appears at the opposite side from the heat source and there exhibits also the highest temperature. This is different from the heat transfer behavior of the copper pipe. Another very interesting result is that the heat flux of the cooling plate nearest to the heat source is first viewed than the others, which is similar to the integration with the copper pipe.
机译:本文为研究热管的传热行为提供了一些重要的实验数据,这将进一步帮助提高热管冷却器的冷却效率。众所周知,热管具有极高的导热率,并且通常与冷却板集成在一起以进行CPU冷却。热管使用特殊的传热技术来获得极大的导热率,这些导热率是内部液体蒸发以吸收热量,内部微结构毛细作用以冷凝。这些特殊技术可以直接将热量从热源直接传递到远端,但是由于与冷却板集成在一起,因此特殊的热传递行为发生了变化。热管的传热行为受到破坏,导致热管冷却器的冷却效率无法达到预期的良好值。为了提高热管冷却器的冷却效率,我们恢复了与冷却板集成在一起的热管的原始传热行为。这项工作首先根据ASTM标准构建了一个CPU模拟器来加热热管,然后使用彩色schlieren技术可视化热管附近的后续热通量,并通过红外热像仪同步进行定量温度测量。结果表明,热通量首先出现在与热源相反的一侧,并且在那里也呈现出最高温度。这与铜管的传热行为不同。另一个非常有趣的结果是,首先观察到的是最靠近热源的冷却板的热通量,这类似于与铜管的集成。

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