首页> 外文会议>International Conference on Nuclear Engineering >EXPERIMENTAL STUDY ON THE SAFETY INJECTION PUMP (SIP) FAILURE ACCOMPANIED BY THE STEAM GENERATOR TUBE RUPTURE(SGTR)
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EXPERIMENTAL STUDY ON THE SAFETY INJECTION PUMP (SIP) FAILURE ACCOMPANIED BY THE STEAM GENERATOR TUBE RUPTURE(SGTR)

机译:蒸汽发生器管破裂(SGTR)伴随安全注射泵(SIP)失效的实验研究

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The integral effect test to simulate the safety injection pump (SIP) failure accompanied by a steam generator tube rupture (SGTR), named a SGTR-SIP-01 test, was performed to investigate the thermal hydraulic phenomena during a multiple failure accident. In this study, a thermal-hydraulic integral effect facility, ATLAS (Advanced Thermal-hydraulic test Loop for Accident Simulation) was utilized to simulate thermal hydraulic phenomenon which can be occurred in the nuclear power plant, as realistically as possible. In this SGTR-SIP-01 test, a rupture of five steam generator u-tubes on the steam generator hot-side was simulated. Due to the initiation of SGTR, a reactor was tripped by high steam generator level (HSGL) signal. During the transient simulation for SGTR-SIP-01 test, major thermal-hydraulic parameters such as the system pressures, the collapsed water levels, the flows in the primary loops, and the fluid temperatures, were measured and analyzed. Through this experimental result, insights about the accident management procedure can be provided in the case of the multiple failure accident, such as a SGTR accident with a total failure of SIPs. In addition to that, for improvement of the system code which are now on developing such SPACE or MARS-KS code, this test data can be utilized for validation and verification work.
机译:模拟由蒸汽发生器管破裂(SGTR)伴随的安全喷射泵(SIP)失效的整体效果试验进行了命名为SGTR-SIP-01测试,以研究多次故障事故期间的热液压现象。在本研究中,利用热液压整体效应设施,图案(用于事故模拟的先进的热液压试验回路)来模拟核电厂的热液压现象,尽可能实际地实现。在该SGTR-SIP-01测试中,模拟了蒸汽发生器热侧上的五个蒸汽发生器U形管的破裂。由于SGTR的开始,通过高蒸汽发生器电平(HSGL)信号跳闸反应器。在SGTR-SIP-01测试的瞬态仿真过程中,测量并分析了诸如系统压力,折叠水位,晶路中的流量的主要热液压参数以及初级环中的流量。通过这种实验结果,可以在多次故障事故的情况下提供关于事故管理程序的见解,例如啜饮总失败的SGTR事故。除此之外,为了改进现在正在开发此类空间或MARS-KS代码的系统代码,该测试数据可用于验证和验证工作。

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