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首页> 外文期刊>Numerical Heat Transfer, Part B. Fundamentals: An International Journal of Computation and Methodology >Inverse estimation of the front surface temperature of a 3-D finite slab based on the back surface temperature measured at coarse grids
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Inverse estimation of the front surface temperature of a 3-D finite slab based on the back surface temperature measured at coarse grids

机译:基于在粗网格上测量的背面温度,对3-D有限平板的正面温度进行反估计

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摘要

The accuracy of the solution of the inverse heat conduction problem (IHCP) can be improved by using fine grids, but measured temperature data on fine grids are usually not available due to limits imposed by the size and spacing of the temperature sensors. A new method is proposed to recover the front surface temperature of a finite slab using fine grids based on the back surface temperature measured with coarse grids. Effects of heat conduction in the sensor substrate and contact thermal rsesistance are also taken into account. The proposed method is applied to solve a three-dimensional IHCP with stainless steel and aluminum target slabs. The results show that the front surface temperature can be recovered with satisfactory accuracy. Both the distortion of the temperature distribution and the discrepancy from the exact solutions are reduced by using the new method.
机译:通过使用细网格可以提高反热传导问题(IHCP)的求解精度,但是由于温度传感器的尺寸和间距的限制,通常无法获得细网格上的测量温度数据。提出了一种新的方法,该方法基于粗网格测得的背面温度,使用细网格恢复有限平板的表面温度。还考虑了传感器基板中的热传导和接触热阻的影响。该方法适用于用不锈钢和铝靶板求解三维IHCP。结果表明,可以以令人满意的精度恢复正面温度。通过使用新方法,可以减小温度分布的失真和与精确解的差异。

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