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首页> 外文期刊>International Journal of Thermal Sciences >Inverse problem of estimating space and time dependent hot surface heat flux in transient transpiration cooling process
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Inverse problem of estimating space and time dependent hot surface heat flux in transient transpiration cooling process

机译:瞬态蒸发冷却过程中时空相关热表面热通量估计反问题

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In this work, an inverse problem of the transient transpiration cooling is investigated in detail. The hot surface heat flux, which is dependent on time and space, is estimated according to the temperatures measured by thermal sensors. The local thermal non-equilibrium (LTNE) model is used to describe the energy conservation of transpiration cooling process and the thermal dispersion of coolant fluid in considered. The conjugate gradient method (CGM) is applied to solve this inverse problem. The accuracy of the inverse solutions is examined by a certain heat flux with given measurement errors. The examination shows that the inverse method presented by this work can obtain satisfactory results. The effect of variable thermal properties on the inverse solutions cannot be neglected since the large temperature gradient close to the hot surface. The suitable measurement times and points should be chose by considering acceptable accuracy, computational time and memory. Meanwhile, it is found out that the location should be close to the hot surface for more accuracy.
机译:在这项工作中,详细研究了瞬时蒸腾冷却的反问题。取决于时间和空间的热表面热通量是根据热传感器测得的温度估算的。局部热非平衡(LTNE)模型用于描述蒸腾冷却过程的能量守恒和所考虑的冷却液的热扩散。共轭梯度法(CGM)用于解决该反问题。通过给定的测量误差通过一定的热通量来检查反解的准确性。检验表明,本文提出的反演方法可获得满意的结果。由于大的温度梯度靠近热表面,因此不能忽略可变热性质对逆解的影响。应通过考虑可接受的精度,计算时间和内存来选择合适的测量时间和点。同时,发现该位置应该靠近热表面以提高精度。

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