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Estimation of heat flux on the surface of an initially hot cylinder cooled by a laminar confined impinging jet

机译:估计由层状受限撞击射流冷却的初始热圆柱体表面上的热通量

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摘要

In this study, an inverse algorithm based on the conjugate gradient method and the discrepancy principle is applied to estimate the unknown space-and time-dependent heat flux at the surface of an initially hot cylinder cooled by a laminar confined slot impinging jet from the knowledge of temperature measurements taken on the cylinder's surface. It is assumed that no prior information is available on the functional form of the unknown heat flux; hence the procedure is classified as the function estimation in inverse calculation. The temperature data obtained from the direct problem are used to simulate the temperature measurements, and the effect of the errors in these measurements upon the precision of the estimated results is also considered. The results show that an excellent estimation on the space-and time-dependent heat flux can be obtained even the distributions of thermal properties inside the cylinder is unknown.
机译:在这项研究中,基于共轭梯度法和差异原理的逆算法被应用于估计由层状受限狭缝撞击射流冷却的初始热缸表面未知的时空相关的热通量。气瓶表面的温度测量值。假定没有关于未知热通量功能形式的先验信息。因此,该过程被归类为逆计算中的函数估计。从直接问题中获得的温度数据将用于模拟温度测量,并且还应考虑这些测量中的误差对估计结果的精度的影响。结果表明,即使不知道缸体内的热性能分布,也可以获得对时空依赖的热通量的极好的估计。

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