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Damping coefficient estimation of a squeeze-film damper operating in a dual shaft test rig

机译:双轴试验台上工作的挤压膜阻尼器的阻尼系数估算

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Squeeze film dampers (SFD) are used to reduce dynamical loads in rotating machinery or to improve their performances in numerous industrial applications. The present paper considers the response of a dual shaft system with a SFD mounted on one of its bearings. The study is concerned with the overall system's dynamics in presence of a sealed SFD bearing with a lateral feeding groove and more specifically with the characterization of such damper in operational conditions. The design characteristics of the SFD are based on the linear approximation and the optimization w.r.t. sensitivity of appropriate eigenmodes of a numerical model of the dual shaft test rig. In order to gain more insight into the SFD operation, the experimental kinematic and pressure measurements data are processed within a numerical model of the fluid film using the short bearing approximation of the Reynolds equation and taking into account the flow into the groove. The work holds for low Reynolds number and completely sealed SFD were vapour cavitation is completely absent.
机译:挤压膜阻尼器(SFD)用于减少旋转机械中的动态载荷或改善其在众多工业应用中的性能。本文考虑了在其中一个轴承上安装了SFD的双轴系统的响应。该研究涉及带有侧向进料槽的密封SFD轴承的存在下,整个系统的动力学特性,更具体地说,涉及这种阻尼器在运行条件下的特性。 SFD的设计特性基于线性逼近和优化w.r.t.双轴试验台数值模型的适当本征模式的灵敏度。为了更深入地了解SFD操作,使用Reynolds方程的短轴承近似并考虑了流入凹槽的流动,在流体膜的数值模型中处理了实验运动学和压力测量数据。该工作适用于低雷诺数和完全密封的SFD,而完全没有汽蚀现象。

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