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An experimental study on quenching of a radially stratified heated porous bed

机译:径向分层加热多孔床淬火的实验研究

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The quenching characteristics of a volumetrically-heated particulate bed composed of radially stratified sand layers were investigated experimentally in the POMECO facility. The sand bed simulates the corium particulate debris bed which is formed when the molten corium released from the vessel fragments in water and deposits on the cavity floor during a postulated severe accident in a light water reactor (LWR). The electrically-heated bed was quenched by water from a water column established over top of it, and later also with water coming from its bottom, which was circulating from the water overlayer through downcomers. A series of experiments were conducted to reveal the effects of the size of downcomers, and their locations in the bed, on the quenching characteristics of the radially stratified debris beds. The downcomers were found to significantly increase the bed quenching rate. To simulate the non-condensable gases generated during the MCCI, air and argon were injected from the bottom of the bed at different flow rates. The effects of gas flow rate and its properties on the quenching behaviour were observed. The results indicate that the non-condensable gas flows reduce the quenching rate significantly. The gas properties also affect the quenching characteristics.
机译:在POMECO设施中通过实验研究了由径向分层的砂层组成的体积加热颗粒床的淬火特性。沙床模拟了当在轻水反应堆(LWR)中假定的严重事故期间,从容器中释放出来的熔化的皮质在水中碎裂并沉积在型腔底板上时形成的皮质颗粒状碎片床。电加热床用位于其顶部的水柱的水淬火,然后再用其底部的水淬火,该水从水上层通过降液管循环。进行了一系列实验以揭示降液管的尺寸及其在床中的位置对径向分层碎屑床的淬火特性的影响。发现降液管显着增加了床淬灭速率。为了模拟MCCI期间产生的不可凝气体,从床底以不同流速注入空气和氩气。观察了气体流速及其性质对淬火行为的影响。结果表明,不可冷凝的气流显着降低了淬火速率。气体性质也会影响淬火特性。

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