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首页> 外文期刊>Annals of nuclear energy >An experimental study on the thermal-hydraulic phenomena in the Hybrid Safety Injection Tank using a separate effect test facility
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An experimental study on the thermal-hydraulic phenomena in the Hybrid Safety Injection Tank using a separate effect test facility

机译:使用单独的效果测试设备对混合动力安全注入罐中的热工现象进行实验研究

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摘要

This paper reports an experimental research for investigating thermal hydraulic phenomena of Hybrid Safety Injection Tank (Hybrid SIT) using a separate effect test facility in Korea Atomic Energy Research Institute (KAERI). The Hybrid SIT is a passive safety injection system that enables the safety injection water to be injected into the reactor pressure vessel throughout all operating pressures by connecting the top of the SIT and the pressurizer (PZR). The separate effect test (SET) facility of Hybrid SIT, which is designed based on the APR+ power plant, comprises a PZR, Hybrid SIT, pressure balancing line (PBL), injection line (IL), nitrogen gas line, and refueling water tank (RWT). Furthermore, the pressure loss range of the SET facility was analyzed and compared with that of the reference nuclear power plant. In this research, a condition for balancing the pressure between the Hybrid SIT and PZR is examined and the effects of different variables affecting the pressure balancing, which are flow rate, injection velocity of steam and initial water level, are also investigated. The condition for balancing the pressure between the Hybrid SIT and PZR was derived theoretically from a pressure network for the Hybrid SIT, pressurizer, and reactor pressure vessel. Additionally, a sensitivity analysis as a theoretical approach was conducted on the pressure variations in relation to the rate of steam condensation inside the Hybrid SIT. The results showed that pressure of the Hybrid SIT was predominantly determined by the rate of steam condensation. The results showed that if the rate of condensation increased or decreased by 10%, the Hybrid SIT pressure at the pressure balancing point decreased or increased roughly by 10%, respectively. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文报告了一项使用韩国原子能研究院(KAERI)单独的效应测试设施研究混合安全注射罐(Hybrid SIT)的热工现象的实验研究。 Hybrid SIT是一种被动式安全注入系统,通过连接SIT的顶部和增压器(PZR),可以在所有工作压力下将安全注入水注入到反应堆压力容器中。基于APR +电厂设计的Hybrid SIT单独效果测试(SET)设施,包括PZR,Hybrid SIT,压力平衡管线(PBL),注入管线(IL),氮气管线和加油水箱(RWT)。此外,分析了SET设施的压力损失范围,并将其与参考核电站的压力损失范围进行了比较。在这项研究中,研究了平衡SIT和PZR之间压力的条件,并研究了影响压力平衡的不同变量的影响,这些变量是流量,蒸汽注入速度和初始水位。理论上,从混合SIT,增压器和反应堆压力容器的压力网络中可以得出平衡混合SIT和PZR之间压力的条件。另外,对与Hybrid SIT内部蒸汽冷凝速率有关的压力变化进行了敏感性分析,作为一种理论方法。结果表明,Hybrid SIT的压力主要由蒸汽冷凝速率决定。结果表明,如果冷凝率增加或减少10%,则压力平衡点处的Hybrid SIT压力分别减少或大约增加10%。 (C)2016 Elsevier Ltd.保留所有权利。

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