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Sequential solution of the sideways heat equation by windowing of the data

机译:通过数据窗口化对侧热方程的顺序求解

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摘要

The sideways heat equation is a one-dimensional model of a problem, where one wants to determine the temperature on the surface of a body using interior measurements. More precisely, we consider a heat conduction problem, where temperature and heat-flux data are available along the line x= 1 and the solution is sought in the interval 0≤x <1. The problem is ill-posed in the sense that the solution does not depend continuously on the data. Stability can be restored by replacing the time derivative in the heat equation with a bounded spectral approximation. The cut off level in the spectral approximation acts as a regularization parameter, that controls the degree of smoothness in the solution. In certain applications one wants to solve the sideways heat equation in real time, i.e. to constantly update the solution as new measurements are recorded. For this case sequential solution methods are required.
机译:侧面热量方程是一个问题的一维模型,其中的一个问题是要使用内部测量来确定物体表面的温度。更准确地说,我们考虑一个热传导问题,其中沿线x = 1可获得温度和热通量数据,并且在0≤x<1的区间内寻求解决方案。从解决方案不连续依赖于数据的意义上讲,问题是不适当的。可以通过用有界谱近似替换热方程中的时间导数来恢复稳定性。频谱近似中的截止水平用作正则化参数,该参数控制溶液中的平滑度。在某些应用中,人们想实时求解侧向热方程,即在记录新的测量值时不断地更新解。对于这种情况,需要顺序求解方法。

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