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STABILITY ANALYSIS FOR REACTOR COOLANT PUMP WITH VERTICAL ROTOR SUPPORTED BY FLUID FILM BEARINGS

机译:用流体膜轴承支撑垂直转子的抗液体冷却剂泵稳定性分析

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A special dynamics model for a vertical rotor-bearing system with two fly wheels is developed, imitating a sort of reactor coolant pump (RCP) under design. The stability and the process of reaching that condition are of special interest since the rotor is supported vertically other than horizontally. And the classical Jeffcott rotor dynamics model is not quite appropriate because the real pump has its two fly wheels outside the region between the two journal bearings and it has a thrust bearing right under the lower fly wheel. A set of dynamics coefficients are introduced to the rotor dynamics model, taking account of the flow confinement in the reduced gap of the canned pump. The stability characteristic is clearly changed due to the additional dynamics coefficients. Numerical simulation shows that the critical speed of the RCP is lowered. The moment of the thrust bearing, which is ignored customarily in rotor dynamics analysis, also influences the dynamic behavior of the rotor system. The stability of the rotor is enhanced while the thrust bearing has its stiffness and damping values in certain ranges.
机译:开发了一种具有两个飞轮的垂直转子系统的特殊动力学模型,在设计下模仿了一种反应堆冷却剂泵(RCP)。达到该条件的稳定性和过程是特殊的兴趣,因为转子除水平垂直以外的方式支撑。并且经典的Jeffcott转子动力学模型不太合适,因为真实泵在两个轴颈轴承之间的区域外部有两个飞行轮,并且它在下翼轮下的推力轴承右侧。将一组动力学系数引入转子动力学模型,考虑到罐装泵的减小间隙中的流量限制。由于附加动态系数,稳定性特性显然变化。数值模拟表明RCP的临界速度降低。普通在转子动力学分析中忽略的推力轴承的时刻也影响转子系统的动态行为。在止推轴承在某些范围内具有其刚度和阻尼值的同时增强了转子的稳定性。

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