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Application of the Laplace transform dual reciprocity boundary element method in the modelling of laser heat treatments

机译:拉普拉斯变换对易边界元法在激光热处理建模中的应用

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The Laplace Transform Dual Reciprocity Boundary Element Method (LTDRM or LT-DRBEM) provides with an alternative numerical technique to finite difference (FDM) or finite element methods (FEM) for solving transient diffusion problems. With this method, solutions are calculated directly at any specific time thus avoiding the use of time-stepping schemes. Besides, domain integrals are removed from the problem formulation.In this work we study the applicability of the LT-DRBEM method for laser heat treatment modelling purposes. A simple model was developed based on a two dimensional transient heat conduction equation, in which the laser beam is included as a heat flux boundary condition of gaussian shape. Results corresponding to a stationary and a moving beam are presented and discussed. Non-linear formulations of the problem as those given by temperature dependent material properties are also considered. Good accuracy results were obtained for the stationary beam approach, whereas severe limitations were found for the moving beam case. (c) 2005 Elsevier Ltd. All rights reserved.
机译:拉普拉斯变换对偶互易边界元方法(LTDRM或LT-DRBEM)提供了一种有限数值(FDM)或有限元方法(FEM)替代的数值技术来解决瞬态扩散问题。使用这种方法,可以在任何特定时间直接计算解,从而避免使用时间步长方案。此外,从问题公式中删除了区域积分。在这项工作中,我们研究了LT-DRBEM方法在激光热处理建模中的适用性。基于二维瞬态热传导方程,开发了一个简单的模型,其中包括激光束作为高斯形状的热通量边界条件。提出并讨论了对应于固定光束和移动光束的结果。还考虑了该问题的非线性公式,如取决于温度的材料特性所给出的公式。固定梁方法获得了良好的精度结果,而移动梁情况则受到了严重的限制。 (c)2005 Elsevier Ltd.保留所有权利。

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