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Transient heat conduction analysis in functionally graded materials by the meshless local boundary integral equation method

机译:用无网格局部边界积分方程法进行功能梯度材料的瞬态热传导分析

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摘要

Advanced computational method for transient heat conduction analysis in continuously nonhomogeneous functionally graded materials (FGM) is proposed. The method is based on the local boundary integral equations with moving least square approximation of the temperature and heat flux. The initial-boundary value problem is solved by the Laplace transform technique. Both Papoulis and Stehfest algorithms are applied for the numerical Laplace inversion to obtain the time-dependent solutions. Numerical results are presented for a finite strip and a hollow cylinder with an exponential spatial variation of material parameters.
机译:提出了连续非均质功能梯度材料(FGM)瞬态热传导分析的先进计算方法。该方法基于具有温度和热通量的移动最小二乘近似的局部边界积分方程。初始边界值问题通过拉普拉斯变换技术解决。 Papoulis算法和Stehfest算法都用于数值拉普拉斯反演,以获得与时间有关的解。给出了有限条带和空心圆柱体的数值结果,材料参数呈指数变化。

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