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Experimental and analytical study of the effects of noncondensable gas in a passive condenser system.

机译:被动冷凝器系统中不可冷凝气体影响的实验和分析研究。

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摘要

Passive Containment Cooling System (PCCS) of the Simplified Boiling Water Reactor (SBWR) is a passive condenser system which is designed to remove energy from the reactor containment during a postulated reactor accident. The presence of noncondensable gas in the vapor can greatly reduce the performance of condensers. Hence a detailed knowledge of the heat removal performance of the PCCS in the presence of noncondensable gas is crucial for the safety and design optimization of the SBWR. The purpose of the present study is the experimental and theoretical investigation of the effects of noncondensable gas in a passive condenser system.; Condensation experiments were performed for a vertical tube submerged in water pool. The present experimental data provide a new database for complete condensation, cyclic venting and through flow modes of the passive condenser. Cyclic venting mode was simulated by a control volume analysis. Analysis results showed that venting period decreases with noncondensable gas fraction. It was found that inception of venting can occur before the condenser is fully filled with noncondensable gas.; A boundary layer model was developed for the prediction of the film condensation with noncondensable gas in a vertical tube. Full set of the governing equations for the liquid film and vapor-gas mixture regions were solved. A heat and mass analogy model was also developed with a specific purpose for use in the thermal hydraulic system analysis code. In the vapor-gas mixture region, general momentum, heat and mass transport relations derived by analytic method were used with the consideration of surface suction effect. The predictions from the models were compared with the experimental data and the agreement was satisfactory. A mechanistic condensation correlation was developed based on the experimental data and the analysis results. It contains all the heat transfer components in its functional relationships. New correlation can provide accurate estimation of local condensation heat transfer coefficient for wide range of operating parameters.; The assessment of wall condensation models in RELAP5 code was performed. Experimental conditions were simulated with RELAP5. Code simulation showed quite different results compared with data. Therefore, the condensation model in RELAP5 needs to be improved.
机译:简化沸水反应堆(SBWR)的被动安全壳冷却系统(PCCS)是一种被动冷凝器系统,旨在在假定的反应堆事故中从反应堆安全壳中去除能量。蒸气中存在不可冷凝气体会大大降低冷凝器的性能。因此,对于不凝性气体存在下PCCS的除热性能的详细了解对于SBWR的安全性和设计优化至关重要。本研究的目的是对被动冷凝器系统中不可凝气体的影响进行实验和理论研究。对浸没在水池中的垂直管进行冷凝实验。目前的实验数据为被动冷凝器的完全冷凝,循环排气和直通流动模式提供了一个新的数据库。通过控制量分析模拟循环排气模式。分析结果表明,排气时间随不可凝气体分数的增加而缩短。已经发现,在冷凝器完全充满不可冷凝气体之前,可以开始排气。建立了边界层模型,用于预测垂直管中不可凝气体的薄膜凝结。求解了液膜和汽-气混合区域的全套控制方程。还开发了热质量模型,其特定目的用于热液压系统分析代码。在汽-气混合区,考虑了表面吸力效应,采用解析法推导的总动量,热量和质量输运关系。将模型的预测结果与实验数据进行比较,一致性令人满意。基于实验数据和分析结果,建立了机械冷凝相关性。它包含其功能关系中的所有传热组件。新的相关性可以为广泛的运行参数提供准确的局部冷凝传热系数估算。进行了RELAP5代码中的墙面凝结模型评估。用RELAP5模拟了实验条件。与数据相比,代码模拟显示了截然不同的结果。因此,RELAP5中的冷凝模型需要改进。

著录项

  • 作者

    Oh, Seungmin.;

  • 作者单位

    Purdue University.;

  • 授予单位 Purdue University.;
  • 学科 Engineering Mechanical.; Engineering Nuclear.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 290 p.
  • 总页数 290
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;原子能技术;
  • 关键词

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