Power Rising and Descending Transient for the OTSG of a Small PWR

B. Jiang, Zhiwei Zhou, Z. Xia, Qian Sun
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Abstract

As key heat transfer system in small and medium size pressurized water reactors, once-through steam generators are important parts of energy exchange between primary and secondary circuits, and are very important for the design and operation of reactors. However, two-phase flow and heat transfer in once-through steam generators are very complicated. When a reactor experience power rising and descending transient, the heat removal of once-through steam generator, the flow rate, the inlet fluid temperature and outlet steam temperature will all change accordingly. Especially when a reactor is running at a low power, the flow rate of the secondary side of OTSG is extremely small and the single-phase region of the secondary side of OTSGs is also too small. The two-phase flow instability may occur, which has a serious impact on reactor operation and safety. So, a reasonable power-up and power-down transient scheme is required to ensure operational stability when starting up and shutting down a reactor. RELAP5/MOD4.0 is a commercial software developed by Innovative System Software, LCC for transient analysis of light water reactors (LWR). After years of development and improvement, RELAP5 has been a basic tool for analysis and calculation of various simulators of nuclear power plants. Scholars all over the world have carried out a large number of analysis of two-phase flow stability using RELAP5, and the results are reliable. This paper takes once through steam generators with given structural parameters as the research object, and uses RELAP5 as the calculation tool. The influencing factors of flow instability are discussed in this paper, and the operating parameters of the fluid on the primary and secondary sides are designed to satisfy the flow stability under different powers. And a set of power-up and power-down schemes for stable operation is proposed.
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小型压水堆OTSG功率升降暂态分析
蒸汽发生器作为中小型压水堆的关键传热系统,是一次回路和二次回路之间能量交换的重要部件,对反应堆的设计和运行具有十分重要的意义。然而,直通式蒸汽发生器的两相流动和传热是非常复杂的。当反应堆经历功率升降瞬态时,一次性蒸汽发生器的排热量、流量、进口流体温度和出口蒸汽温度都会发生相应的变化。特别是在反应器低功率运行时,OTSG二次侧流量极小,OTSG二次侧单相区也过小。可能出现两相流不稳定,严重影响反应堆的运行和安全。因此,为了保证反应堆在启动和关闭时的运行稳定性,需要合理的启动和关闭瞬态方案。RELAP5/MOD4.0是由Innovative System software, LCC开发的用于轻水反应堆(LWR)瞬态分析的商业软件。RELAP5经过多年的发展和完善,已经成为核电站各种模拟器分析计算的基础工具。国内外学者利用RELAP5进行了大量的两相流稳定性分析,结果是可靠的。本文以给定结构参数的一次过蒸汽发生器为研究对象,使用RELAP5作为计算工具。讨论了影响流动不稳定性的因素,设计了满足不同功率下流动稳定性的主、次侧流体运行参数。并提出了一套稳定运行的上电和下电方案。
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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