首页> 外文会议>Problems Involving Thermal-Hydraulics, Liquid Sloshing, and Extreme Loads on Structures >AN UNSTEADY ANALYSIS ON THERMAL STRATIFICATION IN THE SCS PIPING BRANCHED OFF THE RCS PIPING
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AN UNSTEADY ANALYSIS ON THERMAL STRATIFICATION IN THE SCS PIPING BRANCHED OFF THE RCS PIPING

机译:RCS管道分支的SCS管道的热分层的非稳态分析

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A numerical study is performed to estimate on an unsteady thermal stratification phenomenon in the Shutdown Cooling System(SCS) piping branched off the Reactor Coolant System(RCS) piping of Nuclear Power Plant. In the results, turbulent penetration reaches to the 1st isolation valve. At 500sec, the maximum temperature difference between top and bottom inner wall in piping is observed at the starting point of horizontal piping passing elbow. The temperature of coolant in the rear side of the 1st isolation valve disk is very slowly increased and the inflection point in temperature difference curve for time is observed at 2700sec. At the beginning of turbulent penetration from RCS piping, the fast inflow generates the higher temperature for the inner wall than the outer wall in the SCS piping. In the case the hot-leg injection piping and the drain piping are connected to the SCS piping, the effect of thermal stratification in the SCS piping is decreased due to an increase of heat loss compared with no connection case; The hot-leg injection piping affected by turbulent penetration from the SCS piping has a severe temperature difference that exceeds criterion temperature stated in reference. But the drain piping located in the rear compared with the hot-leg injection piping shows a tiny temperature difference. In a viewpoint of designer, for the purpose of decreasing the thermal stratification effect, it is necessary to increase the length of vertical piping in the SCS piping, and to move the position of the hot-leg injection piping backward.
机译:进行了数值研究,以估算核电站反应堆冷却剂系统(RCS)管道分支的关机冷却系统(SCS)管道中的非稳态热分层现象。结果,湍流渗透到达第一隔离阀。在500秒时,在水平管道通过弯头的起点处观察到管道顶部和底部内壁之间的最大温差。第一隔离阀盘后侧的冷却液温度非常缓慢地升高,并且在2700sec处观察到时间的温差曲线中的拐点。在从RCS管道进入湍流开始时,快速流入会为SCS管道的内壁产生比外壁更高的温度。与没有连接的情况相比,在将热腿注入管道和排放管道连接到SCS管道的情况下,由于热损失的增加,SCS管道中的热分层效应会降低;受SCS管道的湍流渗透影响的热支路喷射管道的温差严重,超过了参考标准温度。但是,与热腿注入管道相比,位于后方的排放管道显示出很小的温差。在设计者看来,为了减小热分层效果,有必要增加SCS管道中的垂直管道的长度,并且将热腿注入管道的位置向后移动。

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