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A FINITE-ELEMENT BASED FRAMEWORK FOR TRANSIENT ROTOR DYNAMIC SIMULATIONS

机译:基于有限元的瞬态转子动态模拟框架

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Transient simulations play a key role in the analysis and subsequent design of structural components with one or more rotating parts. A framework is proposed to this effect, centered around the finite-element solver OptiStruct, consisting of a time integration scheme built on the Newmark family with an appropriate adaptive time-step control. The process accounts for a computationally efficient handling of nonlinearities that might arise through bearings and casings. This solution is detailed starting from the governing equations for transient rotor dynamics to the nuances of the time inarching scheme, and this process is applied to a test case from which conclusions are drawn that might be of interest to practicing engineers. These conclusions include insights into enforced motion, operation at or near critical speeds, rotor damping and contact. This work is aimed at producing a user-friendly and robust tool and process for the practicing engineer to perform complex rotor dynamic analysis.
机译:瞬态模拟在具有一个或多个旋转部件的结构部件的分析和随后的设计中起着关键作用。框架提出了这种效果,以有限元求解器OptiStruct为中心,该效果是由在纽马克族上构建的时间集成方案,具有适当的自适应时间步骤控制。该过程考虑了通过轴承和外壳可能出现的非线性的计算上有效处理。该解决方案是从控制瞬态转子动力学的控制方程开始的,并且该过程应用于测试案例,从中绘制了练习工程师可能感兴趣的结论。这些结论包括对强制运动的见解,在临界速度,转子阻尼和接触处或接近临界速度。这项工作旨在为练习工程师进行用户友好和强大的工具和过程,以执行复杂的转子动态分析。

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