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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Dual Time Stepping Algorithms With the High Order Harmonic Balance Method for Contact Interfaces With Fretting-Wear
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Dual Time Stepping Algorithms With the High Order Harmonic Balance Method for Contact Interfaces With Fretting-Wear

机译:带有微动磨损的接触界面的高次谐波平衡双时间步长算法

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摘要

Contact interfaces with dry friction are frequently used in turbomachinery. Dry friction damping produced by the sliding surfaces of these interfaces reduces the amplitude of bladed-disk vibration. The relative displacements at these interfaces lead to fretting-wear which reduces the average life expectancy of the structure. Frequency response functions are calculated numerically by using the multi-harmonic balance method (mHBM). The dynamic Lagrangian frequency-time method is used to calculate contact forces in the frequency domain. A new strategy for solving nonlinear systems based on dual time stepping is applied. This method is faster than using Newton solvers. It was used successfully for solving Nonlinear CFD equations in the frequency domain. This new approach allows identifying the steady state of worn systems by integrating wear rate equations a on dual time scale. The dual time equations are integrated by an implicit scheme. Of the different orders tested, the first order scheme provided the best results.
机译:具有干摩擦的接触界面常用于涡轮机械。这些界面的滑动表面产生的干摩擦阻尼减小了叶片盘振动的幅度。这些界面处的相对位移会导致微动磨损,从而降低结构的平均预期寿命。频率响应函数是使用多重谐波平衡法(mHBM)进行数值计算的。动态拉格朗日频率时间方法用于计算频域中的接触力。提出了一种基于双时间步长求解非线性系统的新策略。此方法比使用牛顿求解器更快。它已成功用于频域中的非线性CFD方程求解。这种新方法允许通过在双时标上积分磨损率方程a来识别磨损系统的稳态。对偶时间方程通过隐式方案进行积分。在测试的不同订单中,一阶方案提供了最佳结果。

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