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Simultaneous inverse determination of temperature-dependent thermophysical properties in fluids using the network simulation method

机译:使用网络模拟方法同时逆确定流体中与温度相关的热物理性质

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摘要

A new and efficient numerical procedure is applied for the inverse simultaneous estimation of temperature-dependent thermal properties (thermal conductivity and volumetric heat capacity) of fully developed fluids flowing through a circular duct. The procedure makes use of both the Sequential Function Specification Method as the inverse protocol and the Network Simulation Method as the numerical technique. The temperature solution at discrete times at several points of the wall-fluid interface can be solved from the direct problem by adding a normal random error. A time-dependent heat flux boundary condition is applied to the inlet region. The proposed method provides estimations of the functions, k(T) and C(T), regardless the waveform of those functions even without prior information on the kind of dependence concerned. The solutions take the form of piece-wise functions with a number of stretches that may be specified. A common iterative least-squares approach is used to minimize the classical functional. Various approaches to solving this problem are discussed.
机译:一种新的,高效的数值程序被应用于逆同步估计流经圆形管道的完全发展的流体的温度相关热特性(导热系数和体积热容)。该过程同时使用了顺序函数指定方法作为逆协议,并使用了网络仿真方法作为数值技术。通过添加一个正常的随机误差,可以从直接问题解决壁-流体界面几个点处离散时间的温度解。随时间变化的热通量边界条件应用于入口区域。所提出的方法提供了函数k(T)和C(T)的估计,而与那些函数的波形无关,即使没有有关相关性种类的先验信息。这些解决方案采用分段函数的形式,具有可以指定的许多扩展。常用的迭代最小二乘法用于最小化经典函数。讨论了解决该问题的各种方法。

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