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An analytical transfer function method to solve inverse heat conduction problems

机译:一种解析传递函数方法,用于求解反导热问题

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This work proposes a transfer function identification (or impulse response) method to solve inverse heat conduction problems. The technique is based on Green's function and the equivalence between thermal and dynamic systems. The inverse heat conduction problems, ID and 3D transient named X22 and X33Y33Z33, respectively, are selected to present the fundamentals of the method proposed. The ID-transient case is a classic heat conduction problem used to obtain thermophysical properties and the 3D-transient problem studied describes a machining process. From the temperature profile (hypothetical or experimental temperature far from the heat source) and knowing the transfer function it is possible to estimate the heat flux by different approaches: deconvolution, spectral densities estimation or inverse fast Fourier procedure. MATLAB codes were used. The work is concluded with the application of the technique in an experimental case of temperature estimation at the tool-work-piece interface during a machining process.
机译:这项工作提出了传递函数识别(或脉冲响应)方法来解决热传导逆问题。该技术基于格林函数以及热与动力系统之间的等效性。选择逆热传导问题,分别命名为X22和X33Y33Z33的ID和3D瞬态,以提出所提出方法的基础。 ID瞬态情况是用于获得热物理性质的经典导热问题,所研究的3D瞬态问题描述了加工过程。根据温度曲线(远离热源的假设或实验温度)并知道传递函数,可以通过不同的方法估算热通量:解卷积,谱密度估算或快速傅里叶逆过程。使用了MATLAB代码。这项技术的应用是在加工过程中在工具-工件界面进行温度估算的实验情况下完成的。

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