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首页> 外文期刊>Numerical Heat Transfer, Part A. Application: An International Journal of Computation and Methodology >A DUAL RECIPROCITY BOUNDARY ELEMENT APPROACH TO THREE-DIMENSIONAL TRANSIENT HEAT CONDUCTION AS APPLIED TO MATERIALS PROCESSING
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A DUAL RECIPROCITY BOUNDARY ELEMENT APPROACH TO THREE-DIMENSIONAL TRANSIENT HEAT CONDUCTION AS APPLIED TO MATERIALS PROCESSING

机译:用于材料加工的三维瞬态热传导的双对等边界元方法

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摘要

The dual reciprocity boundary element method (DRBEM) is implemented to solve three-dimensional transient heat conduction problems in the presence of arbitrary sources, typically as these problems arise in materials processing. The DRBEM has a major advantage over conventional BEM, since it avoids the computation of volume integrals. These integrals stern from transient, nonlinear, and/or source terms. Thus there is no need to discretize the inner domain, since only a number of internal points are needed for the computation. The validity of the method is assessed upon comparison with results from benchmark problems where analytical solutions exist. There is generally good agreement. Comparison against finite element results is also favorable. Calculations are carried out in order to assess the influence of the number and location of internal nodes. The influence of the ratio of the numbers of internal to boundary nodes is also examined. [References: 31]
机译:实施双向可逆边界元方法(DRBEM)来解决存在任意来源时的三维瞬态热传导问题,通常是在材料加工中出现这些问题。 DRBEM与常规BEM相比具有主要优势,因为它避免了体积积分的计算。这些积分是从瞬态,非线性和/或源项中得出的。因此,不需要离散内部域,因为仅需要多个内部点来进行计算。通过与存在分析解决方案的基准问题的结果进行比较,评估该方法的有效性。通常有很好的协议。与有限元结果进行比较也是有利的。为了评估内部节点的数量和位置的影响,进行了计算。还检查了内部节点数与边界节点数之比的影响。 [参考:31]

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