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Thermo-Elasto-Hydro-Dynamic Modeling of Hydrostatic Seals in Reactor Coolant Pumps

机译:反应堆冷却剂泵静液压密封的热弹-水动力模型

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摘要

EDF, the French energy company, has experienced some failures of mechanical seals in reactor coolant pumps in operation in recent years. So, a thermo-elasto-hydro-dynamic model of the first seal has been developed. The present model is a steady two-dimensional approach to characterize the seal behavior in normal operating conditions. The coupling between structure thermo-elastic deformations and the fluid flow is taken into account through influence coefficient matrices. Numerical results are successfully compared to operational results of the leak-flow rate. The effects of heat transfers, of mechanical deformation, and of thermo-mechanical deformation are compared. The influence of pressure drop and the injection temperature is described. The influence of the coning angle of the faceplates is underlined. The elastomeric secondary O-rings are also proven to be influential. The internal friction (between each element of the seal) and the external friction (between the seal ring and the surrounding stationary element) are introduced in the model in order to reproduce the hysteretic behavior of the seal. The development of this model leads to a better knowledge of the behavior of a critical component.
机译:法国能源公司EDF近年来在运行的反应堆冷却剂泵中遇到了机械密封的一些故障。因此,已经开发出第一密封件的热-弹性-流体动力学模型。本模型是一种稳定的二维方法,用于表征正常工作条件下的密封性能。通过影响系数矩阵考虑了结构热弹性变形与流体流动之间的耦合。将数值结果成功地与泄漏流量的运行结果进行了比较。比较了传热,机械变形和热机械变形的影响。描述了压降和注入温度的影响。强调了面板锥角的影响。弹性二级O形圈也被证明具有影响力。在模型中引入了内部摩擦(在密封件的每个元件之间)和外部摩擦(在密封环和周围的固定元件之间),以重现密封件的滞后行为。该模型的发展导致人们对关键组件的行为有了更好的了解。

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