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Nonlinear parameter estimation in laminar forced convection within a circular sector tube

机译:圆扇形管内层流强迫对流中的非线性参数估计

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In this article we examine an inverse heat convection problem of estimating unknown parameters of a parameterized variable boundary heat flux. The physical problem is a hydrodynamically developed, thermally developing, three-dimensional steady state laminar flow of a Newtonian fluid inside a circular sector duct, insulated in the flat walls and subject to unknown wall heat flux at the curved wall. Results are presented for polynomial and sinusoidal trial functions, and the unknown parameters as well as surface heat fluxes are determined. Depending on the nature of the flow, on the position of experimental points the inverse problem sometimes could not be solved. Therefore, an identification condition is defined to specify a condition under which the inverse problem can be solved. Once the parameters have been computed it is possible to obtain the statistical significance of the inverse problem solution. Therefore, approximate confidence bounds based on standard statistical linear procedure, for the estimated parameters, are analyzed and presented.
机译:在本文中,我们研究了估计参数化可变边界热通量的未知参数的逆热对流问题。物理问题是在圆扇形管道内的牛顿流体的流体动力学发展,热发展,三维稳态层流,该流体在平坦壁中绝缘并且在弯曲壁处受到未知壁热通量的影响。给出了多项式和正弦试验函数的结果,并确定了未知参数以及表面热通量。根据流动的性质,根据实验点的位置,有时无法解决反问题。因此,定义识别条件以指定可以解决反问题的条件。一旦计算出参数,就有可能获得反问题解的统计意义。因此,分析并提出了基于标准统计线性程序的估计置信范围。

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