首页> 外文会议>International conference on nuclear engineering >INVESTIGATION OF AIR INGRESS INTO A VACUUM VESSEL RELATED TO PARTICLE RE-SUSPENSION AND DISTRIBUTION FOR DUST ISSUES IN ITER
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INVESTIGATION OF AIR INGRESS INTO A VACUUM VESSEL RELATED TO PARTICLE RE-SUSPENSION AND DISTRIBUTION FOR DUST ISSUES IN ITER

机译:在空气中调查与颗粒悬浮和颗粒物散布有关的真空容器

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During normal operation of the ITER tokamak, few hundred kilograms of dust containing beryllium (Be) and tungsten (W) will be produced due to the erosion of the walls of the vacuum chamber by the plasma. During a loss of coolant accident (LOCA) or a loss of vacuum accident by air ingress (LOVA), hydrogen could be produced by dust oxidation with steam. Evaluation of the risk of dust and hydrogen explosion, that may lead to a loss of containment, requires studying the physical processes involved in the dust re-suspension and its distribution in the tokamak chamber. This experimental study is conducted by the Institut de Radioprotection et de Surete Nucleaire (IRSN) to simulate dust re-suspension phenomena induced by high velocity jet under low pressure conditions. Tests are conducted in a large scale facility (TOSQAN, 7 m~3) able to reproduce primary vacuum conditions (1 mbar). Optical diagnostics such as PIV technique (Particles Image Velocimetry) are implemented on the facility to provide time resolved measurements of the dust re-suspension in terms of phenomenology and velocity. We present in this paper the TOSQAN facility with its configuration for studying dust re-suspension under low pressure conditions and underway experiments showing the mechanism of dust re-suspension by sonic and supersonic flows.
机译:在ITER托卡马克的正常运行过程中,由于等离子体对真空室壁的腐蚀,将产生数百公斤的含铍(Be)和钨(W)的粉尘。在因冷却剂泄漏事故(LOCA)或因进风(LOVA)造成真空事故的损失期间,可能会因蒸汽中的粉尘氧化而产生氢气。要评估可能导致密闭性丧失的粉尘和氢气爆炸的风险,需要研究粉尘重新悬浮及其在托卡马克室内的分布所涉及的物理过程。这项实验研究是由防辐射和核能研究所(IRSN)进行的,以模拟在低压条件下高速射流引起的粉尘再悬浮现象。测试是在能够再现主要真空条件(1毫巴)的大型设备(TOSQAN,7 m〜3)中进行的。在设施上实施了诸如PIV技术(颗粒图像测速)之类的光学诊断,以提供从现象学和速度方面对粉尘再悬浮进行时间分辨的测量。我们在本文中介绍了TOSQAN设施,该设施的配置用于研究低压条件下的粉尘再悬浮,并正在进行实验,展示了通过声波和超音速流进行粉尘再悬浮的机理。

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