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Estimation of Rotordynamic Seal Coefficients Using Active Magnetic Bearing Excitation and Force Measurement

机译:使用主动磁轴承激励和力测量估计旋转动力密封系数

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In high-speed rotational machinery such as pumps or compressors, contactless seals are commonly used to separate different fluids or gases and pressure levels. However, the presence of a leakage flow through the seal gap exerts forces on a rotor. These can culminate in stiffening, restoring, and damping effects as well as in unstable, self-excited vibrational behavior. The JEFFCOTT rotor model and rotordy-namic seal coefficients are put under investigation to prevent instability in the rotating machinery and to determine the rotor-seal systems dynamic behavior. This paper focuses on an experimental methodology, examined on a flexible rotor-seal test rig using an active magnetic bearing for excitation. Coefficient identification problems due to unknown random force (noise) in the experiment are shown and a solution is described in detail and validated on the test rig. The presented methodology leads to a calculation of rotordynamic seal coefficients during safe operating conditions. They are ultimately used to describe the system's behavior and to predict the onset speed of instability.
机译:在泵或压缩机等高速旋转机械中,常用的密封件通常用于分离不同的流体或气体和压力水平。然而,穿过密封间隙的泄漏流的存在在转子上施加力。这些可以终止于加强,恢复和阻尼效果以及不稳定的自我激发振动行为。在调查下,将JEFFCOTT转子模型和旋转环密封系数进行了调查,以防止旋转机械中的不稳定性,并确定转子密封系统动态行为。本文侧重于使用主动磁轴承在柔性转子 - 密封试验台上检查实验方法,用于激励。示出了实验中未知随机力(噪声)的系数识别问题,并详细描述并在试验台上进行了验证的解决方案。所呈现的方法导致在安全操作条件下的旋转动力密封系数的计算。它们最终用于描述系统的行为,并预测不稳定的起始速度。

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