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An iterative regularization method in simultaneously estimating the inlet temperature and heat-transfer rate in a forced-convection pipe

机译:同时估算强制对流管道入口温度和传热速率的迭代正则化方法

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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 inlet temperature and heat-transfer rate on the external wall of a pipe system using temperature measurements at two different locations. It is assumed that no prior information is available on the functional form of the unknown inlet temperature and heat-transfer rate; 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. The accuracy of the inverse analysis is examined by using simulated exact and inexact temperature measurements. Results show that an excellent estimation on the space- and time-dependent inlet temperature and heat-transfer rate can be obtained for the test case considered in this study.
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用于估计在两个不同温度下管道系统外壁上未知的时空相关入口温度和传热速率。位置。假定没有关于未知入口温度和传热速率的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用于模拟温度测量。通过使用模拟的精确和不精确的温度测量来检查逆分析的准确性。结果表明,对于本研究中考虑的测试用例,可以获得与时空相关的入口温度和传热速率的出色估计。

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