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Numerical solution of three-dimensional backward heat conduction problems by the time evolution method of fundamental solutions

机译:利用基本解的时间演化方法对三维逆向导热问题进行数值解

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摘要

The time evolution method of fundamental solutions (MFS) is proposed to solve three-dimensional backward heat conduction problems (BHCPs). The time evolution MFS is obtained through the linear superposition of diffusion fundamental solutions. Through a correct treatment of temporal evolution, the MFS can be implemented to solve strongly ill-posed problems. The numerical results demonstrate the accuracy and stability of the MFS for three-dimensional BHCPs with high levels of noise. This represents the first implementation of MFS to solve three-dimensional BHCPs, and demonstrates that time evolution MFS is a stable and powerful numerical scheme which has the potential to significantly improve the solution of three-dimensional backward heat conduction problems.
机译:提出了基本解(MFS)的时间演化方法,以解决三维向后导热问题(BHCP)。通过扩散基本解的线性叠加获得时间演化MFS。通过正确处理时间演变,可以实施MFS来解决严重不适的问题。数值结果证明了具有高噪声水平的三维BHCP的MFS的准确性和稳定性。这代表了MFS解决三维BHCP的第一个实现,并证明了时间演化MFS是一种稳定而强大的数值方案,具有显着改善三维反向导热问题的潜力。

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