Computational和离子选择处理容器过滤器水动力操作条件的实验研究

O. L. Tashlykov, Ilya A. Bessonov, Artem D. Lezov, S. V. Chalpanov, Maxim S. Smykov, G. I. Skvortsov, V. A. Klimova
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引用次数: 0

摘要

放射性废物(RW)的形成是核电站运行所特有的。液态放射性废物(LRW)在反应堆工厂运行过程中,以及在设备、房间和工作服的净化过程中形成。在还原渣中发现的放射性核素主要是离子形式的134,137cs和螯合剂形式的60Co和54Mn同位素,包括用于设备净化的物质。在众所周知的调理技术中,选择性吸附提供了最大限度地减少LRW量。通过将处理过的介质同时提供给几个吸附层,可以提高滤料用量的使用效率。本文提出了三种改进的容器过滤器设计方案的计算机模拟结果,这些方案用于离子选择性处理,不同的方法既用于分离处理水流,又用于将这些水流输送到吸收层。利用SolidWorks Flow simulation中的计算机仿真估计了所提出设计中吸收过程的效率提高。采用NPP Eksorb的三种吸附剂进行研究。为了确定所研究样品的水力阻力,对通过吸附层的流动进行了一系列实验研究。获得的实验数据被添加到Solidworks Flow Simulation工程数据库中,用于对前面提出的设计进行仿真。通过仿真得到了容器过滤器内部流动的代表性参数。
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Computational and experimental studies into the hydrodynamic operation conditions of container filters for ion-selective treatment
Formation of radioactive waste (RW) is specific to the NPP operation. Liquid radioactive waste (LRW) forms in the process of the reactor plant operation, and in decontamination of equipment, rooms and overalls. The radionuclides found mostly in vat residues are 134, 137 Cs in the form of ions and 60Co and 54Mn isotopes in the form of chelates including substances used for equipment decontamination. Among the well-known conditioning techniques, selective sorption provides for the greatest reduction of LRW amounts. The efficiency of using the amount of the filter material can be increased by supplying the treated medium simultaneously to several sorbent layers. The paper presents computer simulation results for three proposed options of improved container filter designs for ion-selective treatment differing in the ways used both to separate the treated water flows and to deliver these to the sorbent layers. The improved efficiency of the sorption processes in the proposed designs was estimated using computer simulation in SolidWorks Flow Simulation. Three sorbent grades from NPP Eksorb were used for the study. A series of experimental studies of the flow through the sorbent layer was undertaken to determine the hydraulic resistance of the studied samples. The obtained experimental data was added to the Solidworks Flow Simulation engineering database for simulation of the earlier presented designs. Representative parameters of the flow inside of container filters were obtained as a result of the simulation.
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