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On the averaging in strongly damped systems: the general approach and its application to asymptotic analysis of the Sommerfeld effect

机译:在强阻尼系统中的平均值:综合方法及其在索姆菲尔德效应的渐近分析中的应用

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Passage through resonance of an unbalanced rotor mounted on a strongly damped oscillating system that is excited by an asynchronous motor of limited power is investigated using an averaging procedure for a partially strongly damped system. The approach is closely related to a singular perturbation technique. It is demonstrated that the system's dynamics can be reduced on the slow manifold to a single first-order differential equation predicting both the stationary and transient solutions of the original system. Furthermore, the technique provides insight into the system's dynamics, enabling an outline of two simple methods to avoid capture into resonance. The first method is based on an active compensation of the small averaged vibrational torque, and the second method is a passive mechanical device reducing vibration amplitudes. The approximate results obtained were compared with the direct numerical simulations of the full system and demonstrate very good accuracy everywhere except in the vicinity of the bifurcation point. In this vicinity, the asymptotically long time interval is not sufficient for predicting capture into resonance.
机译:通过将安装在由有限电力的异步电动机激发的强湿的振荡系统上的不平衡转子的通道进行了使用的平均步骤,用于部分强直阻尼系统。该方法与奇异扰动技术密切相关。据证明,系统的动态可以在慢歧管上降低到单个一阶微分方程,预测原始系统的静止和瞬态解决方案。此外,该技术提供了对系统动态的洞察力,从而实现了两种简单方法的轮廓,以避免捕获到共振。第一方法基于小平均振动扭矩的主动补偿,第二种方法是减少振动振动的无源机械装置。将获得的近似结果与完整系统的直接数值模拟进行比较,并且除了分叉点附近,除了远处的极好精度。在该附近,渐近长的时间间隔不足以预测捕获成共振。

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