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Development of a Lumped Parameter Dynamic Degassing Model for Spray-Heating Degasser and Its Application in the Pressurizer of a Pressurized Water Reactor

机译:喷涂加热脱气器集总参数动态脱气模型及其在加压水反应器的加压器中的应用

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摘要

The pressurizer of a pressurized water reactor (PWR), as a spray-heating degasser, has been widely used to remove dissolved gas in the primary coolant of PWRs. In the real degassing process, the boundary conditions of the pressurizer may change, causing fluctuations in the degassing state and affecting the efficiency of degassing. However, open-published studies have focused mainly on the steady-state degassing characteristics of the pressurizer. This paper studies the dynamic characteristics of a spray-heating degasser as applied to the pressurizer of a PWR. First, a lumped parameter dynamic degassing model for the spray-heating degasser is proposed based on basic gas dissolution and transport theory. Second, this model is extended, and a dynamic degassing model for the pressurizer is obtained. Third, two sets of numerical hydrogen degassing tests are carried out using the pressurizer dynamic degassing model. These two sets of numerical tests take the Shippingport pressurizer as the research object and integrate the structure and operating parameters of the Shippingport pressurizer with the system parameters of a Bettis Atomic Power Laboratory hydrogen degassing test as the numerical test condition. The spray-heating degasser degassing model is universal and applicable to this pressurizer as well as other devices with similar structures. The first set of numerical tests carried out reveals the physical mechanism of degassing with the spray-heating degasser. The pressurizer degassing model can be used for transient degassing analysis, and it also provides a basis for the subsequent design of the control system of pressurizer degassing.
机译:加压水反应器(PWR)的加压器作为喷雾加热脱碱剂已被广泛用于在PWR的主要冷却剂中除去溶解气。在实际脱气过程中,加压器的边界条件可以改变,导致脱气状态的波动并影响脱气的效率。然而,开放式研究主要集中在加压器的稳态脱气特性上。本文研究了应用于PWR的加压器的喷雾加热脱气剂的动态特性。首先,基于基础气体溶解和运输理论,提出了一种用于喷涂加热脱气剂的集总参数动态脱气模型。其次,该模型延伸,获得了用于加压器的动态脱气模型。第三,使用加压器动态脱气模型进行两组数值氢脱气试验。这两套数值测试采用FirecthPort加压器作为研究对象,并通过Bettis原子电力实验室氢气脱气试验的系统参数作为数值测试条件的系统参数集成了Fiecksport Cloudurizer的结构和操作参数。喷雾加热脱气剂脱气模型是通用的,适用于该加压器以及具有相似结构的其他装置。进行的第一组进行的数值测试揭示了用喷雾加热脱气剂脱气的物理机制。加压器脱气模型可用于瞬时脱气分析,并提供了随后设计加压器脱气的控制系统的基础。

著录项

  • 来源
    《Nuclear Technology》 |2021年第2期|228-246|共19页
  • 作者单位

    Tsinghua University Department of Engineering Physics Beijing 100084 China;

    Tsinghua University Department of Engineering Physics Beijing 100084 China;

    Tsinghua University Department of Engineering Physics Beijing 100084 China;

    Tsinghua University Department of Engineering Physics Beijing 100084 China;

    Nuclear Power Institute of China Science and Technology on Reactor System Design Technology Laboratory Chengdu 610213 China;

    Nuclear Power Institute of China Science and Technology on Reactor System Design Technology Laboratory Chengdu 610213 China;

    Nuclear Power Institute of China Science and Technology on Reactor System Design Technology Laboratory Chengdu 610213 China;

    Nuclear Power Institute of China Science and Technology on Reactor System Design Technology Laboratory Chengdu 610213 China;

    Nuclear Power Institute of China Science and Technology on Reactor System Design Technology Laboratory Chengdu 610213 China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Pressurizer; spray-heating degasser; dissolved gas; dynamic degassing;

    机译:加压器;喷雾加热脱气剂;溶解气体;动态脱气;

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