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Numerical Investigation of the Latent Heat Storage During the Melting Driven Natural Convection Around Heat Source Embedded in a Rectangular Cavity: Application to the Passive Cooling

机译:矩形腔中嵌入热源周围熔融驱动自然对流过程中潜热存储的数值研究:在被动冷却中的应用

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Heat transfer within a cavity of adiabatic walls and containing a heat source (electronic component), carried by a substrate (board), in one of its sides is investigated. The strategy is to use a phase change material (PCM) as a heat sink for cooling the electronic component. The choice of this type of material is justified by their high density of energy storage. A 2D mathematical model is developed using the enthalpy-porosity method. The effect of natural convection is considered during the PCM melting process. Numerical investigations are focused on determining the optimal orientation of cavity for efficient cooling and also on the effect of the type of PCM (organic or inorganic) guaranteeing a long operating time while avoiding any failure.
机译:研究了绝热壁腔内的热传递,并在其侧面之一中包含了由基板(板)承载的热源(电子元件)。该策略是使用相变材料(PCM)作为散热器来冷却电子组件。这种类型的材料的选择因其高能量存储密度而合理。使用焓-孔隙率方法开发了二维数学模型。在PCM熔化过程中考虑了自然对流的影响。数值研究的重点是确定腔体的最佳方向以进行有效冷却,并且还关注PCM(有机或无机)类型的影响,以确保较长的工作时间,同时避免发生任何故障。

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