首页> 外文会议>ASME nuclear forum >ANALYSIS OF THE THERMAL-HYDRAULIC AND MECHANICAL PERFORMANCE OF INTERMEDIATE HEAT EXCHANGERS USED IN SYSTEMS WITH VERY HIGH TEMPERATURE NUCLEAR REACTORS
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ANALYSIS OF THE THERMAL-HYDRAULIC AND MECHANICAL PERFORMANCE OF INTERMEDIATE HEAT EXCHANGERS USED IN SYSTEMS WITH VERY HIGH TEMPERATURE NUCLEAR REACTORS

机译:高温核反应堆系统中使用的中间换热器的热力学和水力性能分析

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Intermediate heat exchangers are one of the most critical devices in the safety of facilities with very high temperature nuclear reactors. In this application, the printed circuit heat exchanger (PCHE) design has been the one that has shown the greatest advantages in terms of heat transfer, compaction and structural strength. In this work, a thermal-hydraulic and mechanical model of the PCHE was developed using computational fluid dynamics (CFD) techniques and finite element methods, respectively. The CFD model was validated by comparison with experimental data and empirical correlations of Nusselt number and friction factor published by other authors. A methodology was proposed to evaluate the operation of the exchanger based on the analysis of capital and operating costs. As a relevant aspect of this methodology, the relationship between the maximum Von Misses stress in the structure and the time of operation was considered. In the structural calculations it was observed that increasing the temperature gradient between the channels caused by the increase of the mass flows of gases, causes the displacement of the solid region and the maximum stress increase. The Taguchi method was applied to identify the dimensions that have the greatest influence on the operation of the PCHE and to obtain an optimized design of the device.
机译:在具有非常高温的核反应堆的设施中,中间热交换器是安全性最关键的设备之一。在此应用中,印刷电路换热器(PCHE)设计是在传热,紧凑性和结构强度方面显示出最大优势的设计。在这项工作中,分别使用计算流体动力学(CFD)技术和有限元方法开发了PCHE的热工液压模型和力学模型。通过与其他作者发表的实验数据以及Nusselt数和摩擦系数的经验相关性进行比较,验证了CFD模型的有效性。提出了一种基于对资本和运营成本的分析来评估交换器的运行的方法。作为该方法的一个相关方面,考虑了结构中的最大Von Misses应力与操作时间之间的关系。在结构计算中,观察到由于气体质量流量的增加而引起的通道之间的温度梯度的增加会导致固体区域的位移和最大应力的增加。使用Taguchi方法确定对PCHE的操作影响最大的尺寸,并获得设备的优化设计。

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