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Nonlinear Analysis of Squeeze Film Damper with Entrained Air in Rotordynamic Systems

机译:转子动力系统中夹带空气的挤压膜阻尼器的非线性分析

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摘要

Squeeze film dampers are widely used in aircraft engines, land-based gas turbines, and other rotating machines to improve system damping. They often have entrained air within the oil film, which is usually not taken into account in rotordynamics analysis due to lack of good formulations of the effects involved. The effects on the damping force calculation can be significant. This work presents a new formulation of the nonlinear Reynolds equation pressure evaluation within the squeeze film damper, including the effects of entrained air, with resulting changes in effective lubricant density and viscosity. Viscosity and density expressions are developed as a function of the air/oil volume fraction. The density of the bubbly oil is a function of the air bubble diameter, which changes due to surface tension effects during lubricant motion in the bubbly oil film. The lubricant viscosity decreases due to the entrained volume of air but increases due to the surface tension effects taken from experimental tests. Pressure supply and bubbly oil film cavitation effects are included in the analysis and end seal effects are evaluated. The nonlinear time-transient forces in the squeeze film damper are evaluated as functions of (1) lubricant and air properties; (2) damper geometry including diameter, length, clearance; (3) end seal properties; and (4) shaft position and velocity. Example cases of pressure calculations and radial and tangential forces are shown. Example nonlinear transient motions are presented for a rigid, symmetrical rotor and for a nonsymmetrical rotor representing a gas turbine-type fan rotor.
机译:挤压膜阻尼器广泛用于飞机发动机,陆基燃气轮机和其他旋转机械中,以改善系统阻尼。它们经常夹带油膜中的空气,由于缺乏有关影响的良好表述,因此在转子动力学分析中通常不会考虑这些空气。对阻尼力计算的影响可能很大。这项工作提出了挤压膜阻尼器内非线性雷诺方程压力评估的新公式,包括夹带空气的影响,从而导致有效润滑剂密度和粘度的变化。粘度和密度表达式是根据空气/机油体积分数得出的。气泡油的密度是气泡直径的函数,气泡直径由于在气泡油膜中润滑剂运动期间的表面张力效应而改变。润滑剂的粘度由于夹带的空气量而降低,但由于实验测试中的表面张力效应而提高。分析中包括压力供应和起泡的油膜气蚀作用,并对末端密封作用进行了评估。挤压膜阻尼器中的非线性时间瞬变力根据以下特性进行评估:(1)润滑剂和空气特性; (2)风门的几何形状,包括直径,长度,间隙; (3)端部密封性能; (4)轴的位置和速度。显示了压力计算以及径向和切向力的示例情况。给出了刚性对称转子和代表燃气轮机型风扇转子的非对称转子的示例非线性瞬态运动。

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