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Numerical and experimental investigations for insulation particle transport phenomena in water flow

机译:水流中绝缘颗粒传输现象的数值和实验研究

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The investigation of insulation debris generation, transport and sedimentation becomes more important with regard to reactor safety research for pressurized and boiling water reactors, when considering the long-term behaviour of emergency core coolant systems during all types of loss of coolant accidents (LOCA). The insulation debris released near the break during a LOCA incident consists of a mixture of a disparate particle population that varies with size, shape, consistency and other properties. Some fractions of the released insulation debris can be transported into the reactor sump, where it may perturb or impinge on the emergency core cooling systems. Open questions of generic interest are for example the particle load on strainers and corresponding pressure-drop, the sedimentation of the insulation debris in a water pool, its possible re-suspension and transport in the sump water flow. A joint research project on such questions is being performed in cooperation with the University of Applied Science Zittau/Gorlitz and the Forschungszentrum Dresden-Rossendorf. The project deals with the experimental investigation and the development of computational fluid dynamic (CFD) models for the description of particle transport phenomena in coolant flow. While the experiments are performed at the University Zittau/Gorlitz, the theoretical work is concentrated at Forschungszentrum Dresden-Rossendorf.In the present paper, the basic concepts for computational fluid dynamic (CFD) modelling are described and experimental results are presented. Further experiments are designed and feasibility studies were performed.
机译:考虑到应急堆芯冷却剂系统在各种类型的冷却剂损失事故(LOCA)期间的长期行为,对于压水和沸水反应堆的反应堆安全性研究,绝缘碎屑的产生,运输和沉积的研究变得更加重要。在LOCA事故期间,在断裂附近释放的绝缘碎片由不同颗粒的混合物组成,这些颗粒随尺寸,形状,稠度和其他属性而变化。释放出的绝热碎片的某些部分可以运输到反应堆贮槽中,在其中可能会扰动或撞击应急堆芯冷却系统。普遍关注的未解决问题包括,例如,过滤器上的颗粒负载和相应的压降,水池中绝热碎屑的沉积,其可能的重悬和在集水池水流中的运输。正在与应用科技大学齐陶/格里茨大学和德累斯顿-罗森多夫研究中心合作开展有关此类问题的联合研究项目。该项目涉及实验研究和计算流体动力学(CFD)模型的开发,用于描述冷却剂流中的颗粒传输现象。当实验在Zittau / Gorlitz大学进行时,理论工作集中在Forschungszentrum Dresden-Rossendorf。在本文中,描述了计算流体动力学(CFD)建模的基本概念并给出了实验结果。设计了进一步的实验并进行了可行性研究。

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