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First experimental results of particle re-suspension in a low pressure wind tunnel applied to the issue of dust in fusion reactors

机译:低压风洞中颗粒重悬的首次实验结果应用于聚变反应堆中的粉尘问题

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During the normal operating condition of the future ITER tokamak, a massive production of dust in the toroidal vacuum vessel is expected. This dust, originating from the erosion of tungsten and beryllium internal walls of the torus by the plasma, would be mobilized to some extent during a loss of vacuum accident (LOVA). For safety reasons, it is essential to quantify the re-suspended dust fraction during such an event. Here, we provide preliminary experimental data of dust re-suspension obtained in the wind tunnel of the European Space Agency (ESA) at low pressures (300, 130 and 10 mbar). The experimentations were performed with multilayer deposits. We used two powders with a median diameter at 15.5 mu m and 21.8 mu m. A negative influence of the low pressure in the re-suspension mechanism is observed. For example, given a re-suspension fraction of 10%, increasing friction shear velocities are derived for decreasing absolute pressures: 300 mbar/0.66 m s(-1); 130 mbar/1.08 m s(-1); and 10 mbar/1.84 m s(-1). In addition, we highlight the friction reduction for Kundsen numbers greater than 0.1 by an analysis of the airflow forces. (C) 2015 Elsevier B.V. All rights reserved.
机译:在未来ITER托卡马克的正常运行条件下,预计环形真空容器中会大量产生粉尘。这种尘埃是由于等离子体腐蚀了圆环的钨和铍内壁而产生的,在失去真空事故(LOVA)期间,这种尘埃会在某种程度上被迁移。出于安全原因,在这种情况下量化重新悬浮的粉尘含量至关重要。在这里,我们提供了在低压(300、130和10 mbar)下在欧洲航天局(ESA)的风洞中获得的粉尘再悬浮的初步实验数据。用多层沉积物进行实验。我们使用了两种粉末,中值直径分别为15.5微米和21.8微米。观察到低压在再悬浮机构中的负面影响。例如,假设重悬分数为10%,则可以通过增加摩擦剪切速度来降低绝对压力:300 mbar / 0.66 m s(-1); 130 mbar / 1.08 m s(-1);和10 mbar / 1.84 m s(-1)。此外,通过分析气流力,我们强调了Kundsen数大于0.1时的摩擦减小。 (C)2015 Elsevier B.V.保留所有权利。

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