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Meshless inverse method to determine temperature and heat flux at boundaries for 2D steady-state heat conduction problems

机译:确定2D稳态导热问题边界处的温度和热通量的无网格逆方法

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摘要

Inverse determination of temperature and heat flux at an inaccessible surface of a solid has been widely employed in recent years. In this paper, a meshless inverse method, i.e. the method of fundamental solution (MFS), has been developed to determine the temperature field and hence the local boundary temperature and heat flux distributions for a 2D steady-state heat conduction problem based on temperature measurements at interior sample points in the wall of the boundary. A case study showed that MFS predicts the boundary temperature and heat flux with about the same accuracy as the Beck's function specified method but consumes significantly less computing time. Error analysis was carried out regarding uncertainty in location and accuracy of temperature measurement to demonstrate the reliability of the proposed method.
机译:近年来,在固体难以接近的表面进行温度和热通量的逆测定已被广泛采用。本文开发了一种无网格反演方法,即基本解法(MFS),用于确定温度场,从而确定基于温度测量的二维稳态导热问题的局部边界温度和热通量分布在边界壁的内部采样点处。案例研究表明,MFS可以以与贝克函数指定方法大致相同的精度预测边界温度和热通量,但计算时间却大大减少。针对位置的不确定性和温度测量的准确性进行了误差分析,以证明该方法的可靠性。

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