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NUMERICAL SIMULATIONS ON TURBULENT HEAT TRANSFER CHARACTERISTICS OF SUPERCRITICAL PRESSURE FLUIDS

机译:超临界压力流体湍流传热特性的数值模拟

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As one of next generation nuclear reactors, development of a supercritical pressure water reactor (SCWR) has been performed. In order to design the SCWR, it is necessary to investigate thermal-hydraulic characteristics in the SCWR core precisely. As for those characteristics, many experimental studies have been conducted from the former in each country using circular tubes, annular channels, and the simulated fuel bundles. An objective of this study is to clarify the prediction accuracy of the turbulent heat transfer characteristics in the supercritical pressure fluids for the SCWR design. From the experimental results of the supercritical pressure fluids flowing upward in a vertical circular tube, it was confirmed that the turbulent heat transfer coefficient suddenly decreases under the high heat flux condition. Although many numerical studies have been done in order to confirm the deterioration of turbulent heat transfer in supercritical pressure fluids, it is important to choose a suitable turbulence model to obtain high prediction accuracy. Then, the present study was performed to investigate numerically the effect of turbulent models on the deteriorated turbulent heat transfer.
机译:作为下一代核反应堆之一,已经进行了超临界压力水反应器(SCWR)的发展。为了设计SCWR,需要精确地研究SCWR核心中的热液压特性。至于这些特征,使用圆形管,环形通道和模拟燃料束的每个国家的前者从前一项实验研究。本研究的目的是阐明SCWR设计的超临界压力流体中湍流传热特性的预测精度。从垂直圆管向上流动的超临界压力流体的实验结果证实,湍流传热系数在高热通量条件下突然下降。尽管已经完成了许多数值研究以确认超临界压力流体中湍流传热的恶化,但重要的是选择合适的湍流模型以获得高预测精度。然后,进行本研究以进行数值对湍流模型对劣化湍流传热的影响。

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