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Thermo-Elasto-Hydrostatic Effect Analysis of the Double Tapered Hydrostatic Mechanical Seals for Reactor Coolant Pumps under the Influence of Flow Regime

机译:流动状态影响反应堆冷却剂泵双锥形静压机械密封的热弹性 - 静水压效应分析

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Abstract- Thermo-elastic deformation of a hydrostatic mechanical seal for reactor main coolant pumps plays an important role on seal performance due to the operation at high-pressure, high-speed and wide temperature range. A thermo-elasto-hydrostatic multi-phsics coupling model is established for a double tapered face seal with convergence gap by considering the variation of dynamic viscosity with fluid pressure and temperature, heat transfer between lubrication film and seal rings and the deformation of end face. FDM and FEM are used to solve the control equations. The effects of thermo-elastic deformation and the misalignment angle of seal rings on seal performance and the comparative analysis of flow regime under the different misalignment angles of the seal rings are studied. It is found that the double tapered hydrostatic mechanical seal has larger turbulence region and transition region than the single tapered hydrostatic mechanical seal. The misalignment of the seal ring can change the flow regime. The face temperature will be decreased because of the enhanced effect of heat convection under the turbulence regime; Seal medium pressure has great influence on the seal performance and the speed of the rotor change the film stiffness apparently.
机译:液压机械密封的抽象热变形对于电抗器主冷却液泵在密封性能下起作用重要作用,这是由于高压,高速和宽温度范围的操作。通过考虑具有流体压力和温度的动态粘度的变化,润滑膜和密封环之间的热传递以及端面的变形来建立具有会聚差距的双锥形面密封的热弹性 - 静脉耦合模型。 FDM和FEM用于解决控制方程。研究了热弹性变形的影响和密封环对密封环不同未对准角度的密封性能和流动状态的比较分析。发现双锥形静压机械密封件具有比单个锥形静压机械密封更大的湍流区域和过渡区域。密封环的未对准可以改变流动状态。由于湍流状态下的热对流的效果增强,面积温度将减少;密封介质压力对密封性能产生很大影响,并且显然转子的速度变化了膜刚度。

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