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首页> 外文期刊>Progress in Nuclear Energy >A two-dimensional inverse heat conduction problem for simultaneous estimation of heat convection coefficient, fluid temperature and wall temperature on the inner wall of a pipeline
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A two-dimensional inverse heat conduction problem for simultaneous estimation of heat convection coefficient, fluid temperature and wall temperature on the inner wall of a pipeline

机译:同时估计管道内壁热对流系数,流体温度和壁温的二维逆导热问题

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The thermal stress caused by thermal stratification in the pipelines of nuclear plants can easily induce thermal fatigue. Predicting the temperature fluctuations at the inner wall in the pipeline without destroying the integral structure of the pipeline is one way of preventing accidents and ensuring safe operation in nuclear plants. In this work, the conjugate gradient method (CGM) is applied to solve the two-dimensional inverse heat conduction problem (IHCP) with multi-variables, in order to estimate the unknown temperature fluctuations at the inner wall of a cross profile, the temperature fluctuations of the fluid near the inner wall, and the heat convection coefficient between fluid and the inner wall of the cross profile in the pressurizer surge line, based on experimental outer wall temperature measurements. The accuracy of the inverse algorithm is then examined by comparing the estimated outer wall temperatures with the experimental temperatures. The numerical results show that the inner wall temperature of the cross profile can be accurately estimated by using the inverse algorithm for the test case considered. (C) 2015 Elsevier Ltd. All rights reserved.
机译:核电站管道中的热分层引起的热应力很容易引起热疲劳。在不破坏管道整体结构的情况下预测管道内壁的温度波动是防止事故并确保核电厂安全运行的一种方法。在这项工作中,共轭梯度法(CGM)被用于解决带有多变量的二维逆热传导问题(IHCP),以便估计交叉轮廓内壁的未知温度波动,即温度基于实验性外壁温度测量,内壁附近流体的波动以及流体与增压器喘振线中的横截面内壁之间的热对流系数。然后通过将估计的外壁温度与实验温度进行比较来检查逆算法的准确性。数值结果表明,对于所考虑的测试案例,可以通过使用逆算法来准确估算出交叉轮廓的内壁温度。 (C)2015 Elsevier Ltd.保留所有权利。

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