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Theory and experiment of contact melting of phase change materials in a rectangular cavity at different tilt angles

机译:不同倾斜角下矩形腔内相变材料接触熔化的理论与实验

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HighlightsThe theoretical analysis of the tilted rectangular cavity is carried out.A two-dimensional heat transfer model is constructed by experiment.An improved Nusselt boundary layer model for tilt angles is proposed.Natural convection plays more important role to enhance the heat transfer.The total melting time of 60° in seven different tilt angles is the shortest.AbstractDuring the heat transfer of phase change materials in a closed cavity, natural convection and contact melting play important roles in heat transfer enhancement. An improved Nusselt boundary layer model is proposed to describe the contact melting process of phase change material in a rectangular cavity at different tilt angles. A 2-dimensional visualization experimental set for contact melting process of phase change material is put up. The melting process of n-octadecane in a rectangular cavity at 7 different tilt angles (0°, 15°, 30°, 45°, 60°, 75°, 90°) is recorded by digital camera. The liquid fraction, dimensionless height and the total melting time of the phase change materials in the tilted rectangular cavity are obtained through digital image processing mothed. The dimensionless height of solid phase change materials and liquid fraction are consistent with the theoretical solution. And the shortest total melting time is when the tilt angle is 60°.
机译: 突出显示 对倾斜的矩形腔进行了理论分析。 < ce:list-item id =“ o0010”> 通过实验构建了二维传热模型。 提出了一种改进的倾斜角度Nusselt边界层模型。 自然对流在增强热传递方面起着更重要的作用。 The在七个不同的倾斜角度下,总熔化时间最短为60°。 摘要 在密闭腔中相变材料的热传递过程中,自然对流和接触熔化起着重要作用增强传热。提出了一种改进的Nusselt边界层模型来描述相变材料在矩形腔中在不同倾斜角下的接触熔化过程。建立了相变材料接触熔化过程的二维可视化实验装置。用数码相机记录在七个不同倾斜角(0°,15°,30°,45°,60°,75°,90°)的矩形腔中正十八烷的熔化过程。通过数字图像处理,获得了倾斜矩形腔中相变材料的液体分数,无量纲高度和总熔化时间。固相变材料的无量纲高度和液体分数与理论解是一致的。并且最短的总熔化时间是当倾斜角度为60°时。

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