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RESULTS AND DISCUSSION ON SCALING ANALYSIS FOR THE NHR200-II INTEGRAL TEST FACILITY UNDER SINGLE PHASE NATURAL CIRCULATION

机译:单相自然循环下NHR200-II积分测试设施的缩放分析探讨

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摘要

The SMR has become great interest to researchers in recent years. The integrated nuclear heating reactor NHR200 was developed by Institute of Nuclear and New Energy Technology (INET) in Tsinghua University. On the basis of the NHR200, the NHR200-II is developed. The thermal-hydraulic parameters in the primary loop such as temperature and pressure are increased, which make it more suitable for industrial steam supply and sea water desalinization. Because the primary loop of NHR200-II operates with fully natural circulation, it is necessary to investigate the natural circulation characteristics by experiment under new thermal parameters. In order to determine the characteristics scale of the test facility, the scaling analysis is needed. The similarity groups, including Richardson number, etc. are determined from the dimensionless fluid and solid governing equations. The test facility uses the fluid with same property as the prototype to reduce the distortion. The axial length scale ratio of the test facility is set to be 1:1. The analysis results of the core surface average heat flux density ratio and the flow area ratio are 1:1 and 1:210 respectively. At the end of this paper, the results of the scaling analysis are present.
机译:近年来,SMR对研究人员来说变得非常感兴趣。集成的核热反应器NHR200由清华大学核电和新能源技术研究所开发。在NHR200的基础上,开发了NHR200-II。诸如温度和压力的主要环路中的热液压参数增加,这使得工业蒸汽供应和海水淡化更适合。因为NHR200-II的主要环路以完全自然的循环运行,所以有必要通过在新的热参数下进行实验来研究天然循环特性。为了确定测试设施的特性比例,需要进行缩放分析。包括Richardson号等的相似度基团由无量纲流体和固体控制方程决定。测试设施使用具有与原型相同属性的液体以降低失真。测试设施的轴向长度比例设定为1:1。核心表面平均热通量密度比和流量面积比的分析结果分别为1:1和1:210。在本文的末尾,存在缩放分析的结果。

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