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Operational behavior of a passive auto-catalytic recombiner under low pressure conditions

机译:被动自动催化重组器在低压条件下的操作行为

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In the case of a severe accident inside a water-cooled fusion facility, like ITER, there exist several scenarios in which hydrogen may be produced and released into the suppression tank. Assuming the accidental ingress of air, the formation of flammable gas mixtures may lead to explosions and severe component failure. One option to mitigate such hypothetical scenarios is the installation of passive auto-catalytic recombiners (PARs), which are presently used as safety devices inside the containments of nuclear fission reactors. PARS convert hydrogen into water vapor by means of passive mechanisms and support the prevention of large accumulations of combustible gases. Experimental investigations of PAR operation have been performed with a scaled-down model of a conventional PAR inside the REKO-4 facility (JCILICH), a pressure vessel with a volume of 5.3 m(3). A first low-pressure test series has been performed with absolute pressures between 0.2 and 1 bar (a), and hydrogen concentrations of up to 6 vol.%.
机译:在像ITER这样的水冷聚变设施内部发生严重事故的情况下,存在几种可能会产生氢气并释放到抑制罐中的情况。假设空气意外进入,则可燃气体混合物的形成可能导致爆炸和严重的组件故障。减轻这种假想情况的一种选择是安装被动式自动催化重组器(PAR),目前它们被用作核裂变反应堆内部的安全装置。 PARS通过被动机制将氢转化为水蒸气,并有助于防止可燃气体大量积聚。使用REKO-4设施(JCILICH)中的传统PAR的缩小模型进行了PAR操作的实验研究,该设施是容积为5.3 m(3)的压力容器。已经在0.2至1 bar(a)的绝对压力和高达6 vol。%的氢气浓度下进行了第一轮低压测试。

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