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Investigation of the thermal-hydraulic non-equilibrium in a 7 × 7 rod bundle during reflood

机译:7×7棒束回采过程中热工水力不平衡的研究

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The current research aims at investigating the thermal-hydraulic non-equilibrium encountered in the dispersed flow film boiling (DFFB) regime under reflood conditions. A series of constant reflood tests have been performed at the 7 x 7 Rod Bundle Heat Transfer (RBHT) test facility and the experimental results have been analyzed in detail. The data not only is useful for the development of theoretical models for two-phase interfacial mass and heat transfer, void fraction, pressure drop, and rod bundle cooling prediction, but also can be used as a benchmark data base for evaluating the performance of various thermalhydraulic analysis codes. In this paper, a complete data reduction methodology is employed to reveal and interpret important two-phase flow phenomena during reflood transients. The results show that for the region far away from the quench front location, significant thermal non-equilibrium may exist during reflood and thus poor heat removal capability of the flow mixture is expected. On the other hand, for the region immediately downstream of the quench front, the two-phase flow is found to be close to the thermal equilibrium state, indicating that both the interfacial heat transfer and the heat transfer between the rod surface and fluid mixture are very efficient. In addition, based on the liquid droplet measurement and force balance calculations, it is found that the slip ratio between the two separate phases is a strong function of the droplet size and reflood time. With a larger droplet size and a shorter distance from the quench location, the slip ratio is larger. The liquid carryover fraction at the exit of the test section is also determined as a function of the reflood time. Results indicate that only a small portion of the injected coolant mass is stored within the bundle. A significant amount of liquid mass into the test section is either evaporated or entrained in the vapor flow and eventually left the bundle. (C) 2018 Elsevier Ltd. All rights reserved.
机译:当前的研究旨在调查在再驱条件下在分散流膜沸腾(DFFB)方案中遇到的热工非平衡问题。在7 x 7棒束传热(RBHT)测试设备上已进行了一系列恒定回油测试,并对实验结果进行了详细分析。该数据不仅可用于开发两相界面传质和传热,空隙率,压降和棒束冷却预测的理论模型,而且还可用作评估各种性能的基准数据库。热工水力分析代码。在本文中,采用了完整的数据约简方法来揭示和解释在回采瞬变过程中重要的两相流动现象。结果表明,对于远离急冷前沿位置的区域,在回油过程中可能会存在明显的热不平衡,因此预计流动混合物的散热能力会很差。另一方面,对于紧邻淬火前沿下游的区域,发现两相流接近热平衡状态,这表明界面传热以及杆表面和流体混合物之间的传热都是非常有效。另外,基于液滴测量和力平衡计算,发现两个分开的相之间的滑移率是液滴尺寸和回流时间的强函数。液滴尺寸较大且距淬火位置的距离较短时,滑移率较大。在测试段出口处的液体残留分数也根据回注时间来确定。结果表明,注入的冷却剂质量中只有一小部分存储在束中。进入测试部分的大量液体被蒸发或夹带在蒸汽流中,并最终离开管束。 (C)2018 Elsevier Ltd.保留所有权利。

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