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An implicit fixed-grid method for the finite-element analysis of heat transfer involving phase changes

机译:含相变传热有限元分析的隐式固定网格方法

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摘要

The finite-element method is widely used for thermal numerical simulation of heat treatment, casting, or welding processes. The modeling of phase changes requires the simulation of highly nonlinear problems due to latent heat effects. In this article, a finite-element procedure is developed for modeling latent heat effects using an implicit time discretization for transient heat conduction problems involving phase changes for which the enthalpy can be supposed to be a function of temperature only. It is also developed for stationary convection-diffusion problems. Examples are presented to show the efficiency of the method for isothermal and anisothermal transformations. Finally, the method is extended to take couplings with metallurgical transformation kinetics into account.
机译:有限元方法广泛用于热处理,铸造或焊接过程的热数值模拟。相变建模需要模拟由于潜热效应而引起的高度非线性问题。在本文中,开发了一种使用隐式时间离散化来建模潜热效应的有限元程序,该离散化用于涉及相变的瞬态热传导问题,其焓只能被认为是温度的函数。它也针对固定的对流扩散问题而开发。举例说明了等温和等温转化方法的效率。最后,该方法被扩展为考虑到具有冶金转化动力学的耦合。

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