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Heat Conduction Simulation of 2D Moving Heat Source Problems Using a Moving Mesh Method

机译:使用移动网格法的2D移动热源问题的热传导模拟

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This paper focuses on efficiently numerical investigation of two-dimensional heat conduction problems of material subjected to multiple moving Gaussian point heat sources. All heat sources are imposed on the inside of material and assumed to move along some specified straight lines or curves with time-dependent velocities. A simple but efficient moving mesh method, which continuously adjusts the two-dimensional mesh dimension by dimension upon the one-dimensional moving mesh partial differential equation with an appropriate monitor function of the temperature field, has been developed. The physical model problem is then solved on this adaptive moving mesh. Numerical experiments are presented to exhibit the capability of the proposed moving mesh algorithm to efficiently and accurately simulate the moving heat source problems. The transient heat conduction phenomena due to various parameters of the moving heat sources, including the number of heat sources and the types of motion, are well simulated and investigated.
机译:本文侧重于有效地对多重移动高斯点热源进行材料的二维导热问题的有效研究。所有热源施加在材料的内部,并假设沿一些指定的直线或具有时间依赖性速度的曲线移动。已经开发出一种简单但有效的移动网格方法,其连续地将二维网格尺寸与温度场的适当监测功能的一维移动网格偏微分方程调整。然后在这种自适应移动网格上解决了物理模型问题。提出了数值实验以表现出所提出的移动网格算法的能力,以有效准确地模拟移动热源问题。由于移动热源的各种参数而导致的瞬态导热现象,包括热源的数量和运动类型,井进行井模拟和研究。

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