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A CONCEPTUAL MULTISCALE ENTROPY PRODUCTION APPROACH FOR ASSESSING THERMAL HYDRAULICS CHARACTERISTICS IN NUCLEAR REACTOR SYSTEMS

机译:核反应堆系统中热力学特性评估的概念多尺度熵产生方法

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Thermal Hydraulics (T-H) process exerts important effect on nuclear reactor systems. Due to their complexity, it is necessary to propose an appropriate approach for modeling and investigating the processes, such as multiscale modeling technique. The current work attempts to provide a scheme of conceptual multiscale entropy production approach in view of descriptions of thermal hydraulic characteristics in nuclear reactor system at local, component and system scales. Based on some fundamental principles, the optimal thermal hydraulics design (OTHD) procedure in implementing the approach is established. Moreover, two instances are considered to show the applicability of the current approach, with respect to local and system scale. In addition, the approach proposed would contribute to make deeper understanding of the thermal hydraulic processes.
机译:热工(T-H)工艺对核反应堆系统产生重要影响。由于它们的复杂性,有必要提出一种适当的方法来对过程进行建模和研究,例如多尺度建模技术。鉴于描述核反应堆系统中局部,组件和系统规模的热工水力特性,当前的工作试图提供一种概念上的多尺度熵产生方案。基于一些基本原则,建立了实施该方法的最佳热工水力设计(OTHD)程序。此外,考虑了两个实例来说明当前方法在本地和系统规模方面的适用性。此外,提出的方法将有助于加深对热液压过程的理解。

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