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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Approximate analytical solution of a two-dimensional heat conduction problem with phase-change on a sinusoidal mold
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Approximate analytical solution of a two-dimensional heat conduction problem with phase-change on a sinusoidal mold

机译:正弦模具上具有相变的二维热传导问题的近似解析解

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摘要

A two-dimensional heat conduction problem in which a liquid becomes solidified by heat transfer to a sinusoidal mold of finite thickness is solved by using a linear perturbation method. The liquid perfectly wets the sinusoidal mold surface prior to the beginning of solidification. This leads to a corresponding undulation of the solidified shell thickness. Both surfaces of the mold follow a sinusoidal lay for which the ratio of the amplitude to the wavelength, or aspect ratio, is much less than one. This makes the aspect ratio a convenient perturbation parameter for the problem since it is indicative of the spatial variation in the surfaces. Temperature at the outer surface of the mold is assumed to be constant. Results are obtained for the solid/melt moving interface as a function of time and for the temperature distributions in the shell and mold. The inverse problem, in which the solid/melt boundary is prescribed and the mold outer surface temperature determined, is also briefly discussed. The present work can form the thermal part of a subsequent investigation of related thermoelastic stress problems.
机译:通过使用线性扰动方法解决了二维导热问题,其中液体通过热传递到有限厚度的正弦模具而凝固。在开始凝固之前,液体会完全润湿正弦模具表面。这导致凝固的壳厚度相应地起伏。模具的两个表面都遵循正弦曲线,其振幅与波长之比或纵横比远小于1。这使纵横比成为该问题的便捷扰动参数,因为它指示了表面中的空间变化。模具外表面的温度假定为恒定。获得了固/熔体运动界面随时间变化以及壳和模具中温度分布的结果。还简要讨论了反问题,其中规定了固/熔体边界并确定了模具的外表面温度。本工作可以构成有关热弹性应力问题后续研究的热力部分。

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