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首页> 外文期刊>Journal of instrumentation: an IOP and SISSA journal >STARDUST-U experiments on fluid-dynamic conditions affecting dust mobilization during LOVAs
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STARDUST-U experiments on fluid-dynamic conditions affecting dust mobilization during LOVAs

机译:在LOVAs中影响粉尘流动的流体动力学条件的STARDUST-U实验

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Since 2006 the Quantum Electronics and Plasma Physics (QEP)Research Group together with ENEA FusTech of Frascati have been working on dust re-suspension inside tokamaks and its potential capability to jeopardize the integrity of future fusion nuclear plants (i.e. ITER or DEMO) and to be a risk for the health of the operators. Actually, this team is working with the improved version of the “STARDUST” facility, i.e. “STARDUST-Upgrade”. STARDUST-U facility has four new air inlet ports that allow the experimental replication of Loss of Vacuum Accidents (LOVAs). The experimental campaign to detect the different pressurization rates, local air velocity, temperature, have been carried out from all the ports in different accident conditions and the principal results will be analyzed and compared with the numerical simulations obtained through a CFD (Computational Fluid Dynamic) code. This preliminary thermo fluid-dynamic analysis of the accident is crucial for numerical model development and validation, and for the incoming experimental campaign of dust resuspension inside STARDUST-U due to well-defined accidents presented in this paper.
机译:自2006年以来,量子电子和等离子体物理(QEP)研究小组与Frascati的ENEA FusTech一直致力于托卡马克内部的粉尘再悬浮及其潜在危害未来聚变核电站(如ITER或DEMO)完整性的能力,并致力于对操作员的健康构成风险。实际上,该团队正在使用“ STARDUST”功能的改进版本,即“ STARDUST-Upgrade”。 STARDUST-U设施具有四个新的进气口,可以通过实验复制真空事故(LOVA)。在不同事故情况下,从所有端口进行了检测不同增压率,局部风速,温度的实验活动,将对主要结果进行分析,并将其与通过CFD(计算流体力学)获得的数值模拟进行比较。码。事故的初步热流体动力学分析对于数值模型的开发和验证,以及由于本文提出的明确事故而导致的STARDUST-U内部粉尘悬浮的新实验活动至关重要。

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