首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >Optimization design for mechanical seals in reactor coolant pumps based on a fluid-solid strong-interaction model
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Optimization design for mechanical seals in reactor coolant pumps based on a fluid-solid strong-interaction model

机译:基于流固强相互作用模型的反应堆冷却剂泵机械密封优化设计

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摘要

The study on the mechanism and performance of the mechanical seals in reactor coolant pumps (RCPs) is very important for the safe operations of pressurized water reactor power plants. By exploring the operating mechanism of the first seal of the hydrostatic mechanical seal in RCPs, an analytical fluid-solid strong-interaction model of the seal is proposed in this article. The model holds that the mechanical deformations of the seal assembly are dominated by the deflections of the seal rings, and this idea is demonstrated by the numerical simulation result of a fluid-solid interaction (FSI) model. Using the analytical FSI model, the regularity that the leakage rate of the first seal varies with the differential pressure in a RCP is obtained, and compared with the operational data, which is used to verify the model. Based on the understanding of the reliability of the seal, a dimensionless parameter A that acts as an attribute to the reliability is proposed in this article. Using the analytical FSI model and A as the optimization algorithm and optimization object, respectively, the optimum designs about the seal faceplate configurations are performed. Also, the specific optimization conclusions are given simultaneously.
机译:对反应堆冷却剂泵(RCP)中的机械密封的机理和性能的研究对于压水堆反应堆电厂的安全运行非常重要。通过探索RCP中静液压机械密封的第一密封件的工作机理,提出了一种分析性的流体-固体强相互作用模型。该模型认为,密封组件的机械变形主要由密封环的挠度决定,而这种想法由流固耦合(FSI)模型的数值模拟结果证明。使用分析型FSI模型,获得RCP中第一密封件的泄漏率随压差变化的规律性,并将其与运行数据进行比较,以验证该模型。基于对密封件可靠性的理解,本文提出了一种无量纲参数A,作为可靠性的一个属性。分别使用解析FSI模型和A作为优化算法和优化对象,对密封面板配置进行了优化设计。同时,同时给出了具体的优化结论。

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