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A meshfree method with dynamic node reconfiguration for analysis of thermo-elastic problems with moving concentrated heat sources

机译:具有动态节点重构的无网格方法,用于分析移动集中热源的热弹性问题

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摘要

In this work, a novel approach for efficient analysis of transient thermo-elastic problems including a moving point heat source is presented. This approach is based on a meshfree method with dynamic reconfiguration of the nodal points. In order to accurately capture the large temperature gradients at the location of the concentrated heat source, a fine configuration of nodal points at this location is selected. In contrast, a coarser nodal arrangement is used in other parts of the problem domain. During the problem analysis, the fine nodal arrangement moves with the point heat source. Consequently, the meshfree methods are ideally suited to this approach. In the present work, the meshfree radial point interpolation method (RPIM) is adopted for the numerical analyses. Since the density of the nodal points varies in different parts of the domain, the background decomposition method (BDM) is used for efficient computation of the domain integrals. In the BDM, the density of the integration points conform to that of the nodal points and thus the computational effort is minimized. Some numerical examples are provided to assess the accuracy and usefulness of the proposed approach in computation of the temperature, displacement, and stress fields.
机译:在这项工作中,提出了一种有效分析瞬态热弹性问题(包括移动点热源)的新颖方法。该方法基于具有节点动态重配置的无网格方法。为了准确地捕获集中热源位置处的大温度梯度,选择了该位置处节点的精细配置。相反,在问题域的其他部分使用了较粗糙的节点排列。在问题分析过程中,精细的节点布置随点热源一起移动。因此,无网格方法非常适合此方法。在目前的工作中,采用无网格径向点插值方法(RPIM)进行数值分析。由于节点的密度在域的不同部分变化,因此背景分解方法(BDM)用于有效地计算域积分。在BDM中,积分点的密度与节点的密度一致,因此计算量最小。提供了一些数值示例,以评估该方法在温度,位移和应力场计算中的准确性和实用性。

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