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Experimental investigation of material chemical effects on emergency core cooling pump suction filter performance after loss of coolant accident

机译:失水事故后材料化学成分对应急堆芯冷却泵吸滤器性能影响的实验研究

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Integral tests of head loss through an emergency core cooling filter screen are conducted, simulating reactor building environmental conditions for 30 days after a loss of coolant accident. A test rig with five individual loops each of whose chamber is established to test chemical product formation and measure the head loss through a sample filter. The screen area at each chamber and the amounts of reactor building materials are scaled down according to specific plant condition. A series of tests have been performed to investigate the effects of calcium-silicate, reactor building spray, existence of calcium-silicate with tri-sodium phosphate (TSP), and composition of materials. The results showed that head loss across the chemical bed with even a small amount of calcium-silicate insulation instantaneously increased as soon as TSP was added to the test solution. Also, the head loss across the filter screen is strongly affected by spray duration and the head loss increase is rapid at the early stage, because of high dissolution and precipitation of aluminum and zinc. After passivation of aluminum and zinc by corrosion, the head loss increase is much slowed down and is mainly induced by materials such as calcium, silicon, and magnesium leached from NUKON™ and concrete. Furthermore, it is newly found that the spay buffer agent, tri-sodium phosphate, to form protective coating on the aluminum surface and reduce aluminum leaching is not effective for a large amount of aluminum and a long spray.
机译:进行了通过应急堆芯冷却滤网的水头损失的整体测试,模拟了冷却剂损失事故后30天的反应堆建筑环境条件。具有五个独立回路的测试设备,每个回路均建立了腔室,以测试化学产品的形成并通过样品过滤器测量压头损失。根据特定的工厂条件,按比例缩小每个室的筛孔面积和反应堆建筑材料的量。已经进行了一系列测试来研究硅酸钙,反应堆建筑喷雾,硅酸钙与磷酸三钠(TSP)的存在以及材料组成的影响。结果表明,一旦将TSP添加到测试溶液中,即使少量的硅酸钙绝缘层,整个化学床的水头损失立即增加。另外,由于铝和锌的高溶解度和沉淀,整个喷雾滤网的压头损失受喷雾持续时间的强烈影响,并且在早期阶段压头损失的增加很快。通过腐蚀使铝和锌钝化后,压头损失的增加大大减慢了,主要是由NUKON™和混凝土浸出的钙,硅和镁等材料引起的。此外,最近发现,对于大量的铝和长时间的喷雾来说,稀疏缓冲剂磷酸三钠在铝表面上形成保护涂层并减少铝的浸出是无效的。

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