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SHAPE FACTOR IN THE LATENT-HEAT-THERMAL-ENERGY-STORAGE SYSTEMS

机译:潜热-热能存储系统中的形状因子

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摘要

An approximate mathematical model of contact melting of an unfixed material in an elliptical capsule is developed The main characteristic scales and non-dimensional parameters, which describe the principal features of the melting process, are found, Choosing the special heat flux distribution on the wall of the capsule allows us to derive a closed-form evolution equation for the motion of the solid, which also determines the melting rate. It is shown that the melting rate depends on the shape of the capsule. The elliptical capsules show higher rate of melting than the circular ones. The vertically elongated capsules provide more effective melting than the horizontally elongated ones, even though they have the same aspect ratio and vertical cross-sectional areas. The time required for complete melting can be achieved by the right choice of the shape of the capsule, which is specified by the value of the aspect ratio. This is especially important for the design of practical latent-heat-thermal-energy-storage systems.
机译:建立了椭圆形胶囊中未固定物质接触熔化的近似数学模型。找到了描述熔化过程主要特征的主要特征尺度和无量纲参数,选择了容器壁上的特殊热通量分布。胶囊使我们能够导出固体运动的封闭形式的演化方程,该方程还决定了熔化速率。结果表明,熔化速度取决于胶囊的形状。椭圆形胶囊的熔化速率比圆形胶囊高。垂直伸长的胶囊比水平伸长的胶囊具有更好的熔化效果,即使它们具有相同的纵横比和垂直横截面积。完全熔化所需的时间可以通过正确选择胶囊的形状来实现,胶囊的形状由长宽比的值指定。这对于设计实际的潜热-热能存储系统尤为重要。

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