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Experimental investigation of natural convection near a wall containing phase change material

机译:含相变材料壁附近自然对流的实验研究

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An experimental investigation is conducted to characterize the natural convection heat transfer along panels which contain phase change materials (PCM). A dedicated configuration has been defined for this study. In this configuration, the natural convection heat transfer is triggered by a temperature scan in the ambient air. The temperature scan is responsible for the energy storage and release in the PCM panels. The corresponding experimental set-up was built and several melting and solidification tests were performed, with different values of the ambient temperature scan speed. The tested PCM panel is the Energain (R) wallboard by DuPont (TM). The system first reaches a stationary regime when the PCM is fully solid or liquid. During the stationary regime, the wall to air temperature difference and the convection heat flux are constant. The phase change causes an increase of these quantities. It is characterized by a first dynamic stage, a wall temperature slowdown/retrogression process, and a second dynamic stage. The two dynamic stages are well correlated to the PCM thermal characteristics. However, the temperature slowdown/retrogression phenomenon is unexpected. It consists in an extreme slowdown of the wall surface temperature evolution, which turns into a retrogression during the solidification experiments. The temperature slowdown/retrogression has never been observed before with PCM wallboards. (C) 2016 Elsevier Masson SAS. All rights reserved.
机译:进行实验研究以表征沿包含相变材料(PCM)的面板的自然对流传热。为此研究定义了专用配置。在这种配置中,自然对流传热是由环境空气中的温度扫描触发的。温度扫描负责PCM面板中的能量存储和释放。建立了相应的实验设置,并使用不同的环境温度扫描速度值执行了一些熔化和固化测试。经过测试的PCM面板是杜邦(TM)生产的Energain(R)墙板。当PCM完全固态或液态时,系统首先达到静止状态。在静止状态下,壁对空气的温差和对流热通量是恒定的。相变导致这些数量的增加。它的特征在于第一动态阶段,壁温降低/回退过程和第二动态阶段。这两个动态阶段与PCM热特性密切相关。但是,温度下降/倒退现象是出乎意料的。它包括壁面温度演变的极端减慢,这在凝固实验期间变成倒退。以前从未使用PCM墙板观察到温度下降/回退。 (C)2016 Elsevier Masson SAS。版权所有。

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