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ANALYTICAL SOLUTIONS THE TO THE UNSTEADY CLOSE-CONTACT MELTING ON A FLAT PLATE

机译:平板上非定常紧密接触熔化的解析解

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This work reports a set of approximate analytical solutions describing the transient process of gravity-induced close-contact melting between a rectangular parallelepiped solid and a flat plate on which either constant temperature or constant heat flux is imposed. not only relative motion of the solid block tangential to the heating plate, but also the solid-liquid density difference is incorporated in the model. Normalization of the model equations in reference to the steady state admits compactly expressed analytical solutions, which agree excellently with the available numerical data. Bases on the normalized liquid film thickness that is independent of the parameters, the transient time duration of close-contact melting is defined uniquely. The present solution is also capable of resolving distinctive behaviors of the solid de scending velocity at the early stage of melting. A geometric function characterizing the three-dimensional effect is introduced, and its properties are clarified. It is found in the case of constant area that as the cross-sectional shape deviates from square, heat transfer is at least enhanced at the expense of the increase in friction between two solids.
机译:这项工作报告了一组近似分析解决方案,描述了在平行六面体固体和施加有恒定温度或恒定热通量的平板之间,重力引起的紧密接触熔化的瞬态过程。该模型不仅包含切线与加热板相切的固体块的相对运动,而且还包含了固液密度差。参照稳态对模型方程进行归一化,可以得到紧凑表示的解析解,该解析解与可用的数值数据非常吻合。基于与参数无关的归一化液膜厚度,紧密接触熔化的瞬态持续时间是唯一定义的。本解决方案还能够解决在熔化早期固体下降速度的独特行为。介绍了表征三维效应的几何函数,并阐明了其性质。发现在恒定面积的情况下,当横截面形状偏离正方形时,至少以增加两个固体之间的摩擦为代价来增强传热。

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