首页> 外文会议>International topical meeting on nuclear reactor thermal hydraulics >THE EFFECT OF ELECTRIC POTENTIAL ON FIBROUS DEBRIS BYPASS THROUGH A CONTAINMENT SUMP STRAINER
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THE EFFECT OF ELECTRIC POTENTIAL ON FIBROUS DEBRIS BYPASS THROUGH A CONTAINMENT SUMP STRAINER

机译:电位通过容器加水滤池对纤维状碎屑的影响

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Fiberglass is an efficient thermal insulation material in Pressurized Water Reactors (PWRs). However, fibrous debris generated during a Loss-of-Coolant Accident (LOCA) from fiberglass insulation materials may cause a safety issue in the containment sump strainer. This safety issue addressed in the Generic Safety Issue (GSI) 191 by the U.S. Nuclear Regulatory Commission (U.S. NRC) can be categorized into upstream effects, which concern loss of Net Positive Suction Head (NPSH), and in-vessel effects which concern debris bypass through the strainer and transportation into the primary system. PWR power plants in the U.S. have increased the size of their sump strainers, in the attempt to decrease the head loss. However, the quantity of debris bypass through the strainer still remains an issue not fully resolved. It is known that filtration through a porous medium is affected by water chemistry, affecting the double-layer electric potential close to the surface of particles and filter media. In the present study, the effect of water chemistry (pH and ionic strength) and the effect of external electric potential (voltage applied to a strainer) were investigated. NUKON fiberglass was prepared using a high pressure (1800 psi) washer method. Two positive (+ 500 mV and +1000 mV) and two negative (-500 mV and -1000 mV) electric potentials were applied between the strainer and water in the tank. Total mass of debris penetrated through the strainer under different conditions was compared. It was found that debris bypass is influenced by water chemistry and that, an electric potential applied to the strainer may affect the mass of debris penetration.
机译:玻璃纤维是压水堆(PWR)中的一种有效的隔热材料。但是,在玻璃失冷事故(LOCA)期间从玻璃纤维绝缘材料中产生的纤维状碎屑可能会导致安全壳滤池中的安全问题。美国核监管委员会(US NRC)在《通用安全问题》(GSI)191中解决的此安全问题可分为上游影响,这涉及净正吸头(NPSH)的损失,以及涉及碎片的船内影响。绕过过滤器并输送到主系统中。美国的压水堆发电厂已经增加了其集水槽过滤器的尺寸,试图减少水头损失。但是,通过过滤器的杂物旁路数量仍然是一个尚未完全解决的问题。众所周知,通过多孔介质的过滤会受到水化学的影响,从而影响靠近颗粒和过滤介质表面的双层电势。在本研究中,研究了水化学的影响(pH和离子强度)和外部电势(施加到过滤器上的电压)的影响。 NUKON玻璃纤维是使用高压(1800 psi)清洗机方法制备的。在过滤器和水箱中的水之间施加两个正电势(+ 500 mV和+1000 mV)和两个负电势(-500 mV和-1000 mV)。比较了在不同条件下穿过过滤器的碎屑总质量。已发现杂物旁路受水化学影响,施加到过滤器上的电势可能会影响杂物渗透的质量。

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