Research on characteristic of flow instability in a two-phase natural circulation loop with parallel once-through steam generators

Ang Li, Yuqing Chen, Yuxian Rao, Kehan Ouyang
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引用次数: 0

Abstract

When there are two sets of parallel once through-steam generators(OTSG) in the natural circulation loop, the thermal-hydraulic characteristics are complicated. Flow instability often occurs in such loops. In order to alleviate the harm caused by flow instability and enhance the natural circulation capacity, it is necessary to study the characteristics of flow instability in depth. In this paper, a thermal-hydraulic computational model is developed for a two-phase natural circulation loop with two parallel OTSGs based on the RELAP5 program. And the model is validated. The thermal-hydraulic parameters of the loop were calculated for different decay heat conditions. The flow instability of the loop is found to be characterized by a clear division into three zones in the decay heat interval. The concept of “load-flow ratio” is proposed to analyze the critical point of flow instability under different operating conditions. The reason for the flow instability zones of the loop is explained. The conclusions of the relevant research can provide a basis for an in-depth study of the characteristics of flow instability and the development of operational schemes to mitigate flow instability.
并联直通式蒸汽发生器两相自然循环回路流动不稳定特性研究
当自然循环回路中存在两套并联的一次透汽发生器时,热工特性比较复杂。在这种回路中经常发生流动不稳定。为了减轻流动不稳定带来的危害,增强自然循环能力,有必要深入研究流动不稳定的特征。本文基于RELAP5程序,建立了具有两个并联otsg的两相自然循环回路的热液计算模型。并对模型进行了验证。计算了不同衰减热条件下回路的热工参数。循环的流动不稳定性表现为在衰减热区间内明显分为三个区域。提出了“负荷流比”的概念,分析了不同工况下的流量失稳临界点。分析了回路流动不稳定区产生的原因。相关研究结论可为深入研究流动不稳定特征和制定缓解流动不稳定的操作方案提供基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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