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Numerical analysis of aerodynamic damping for a centrifugal impeller

机译:离心叶轮气动阻尼的数值分析

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In order to realize the numerical analysis of aerodynamic damping for the centrifugal impellers, a numerical code integrating the flow-structure data transfer, grid deformation and flow simulation under the moving grid system is first developed. To decrease the huge consumptions of CPU time and memory space, the compactly supported radial basis function is adopted to carry out the data transfer and grid deformation, and the alternating digital tree technique is utilized to calculate the wall distances. By the test cases of an oscillating cascade and a centrifugal impeller, the correctness of the code for the flow simulations with moving boundaries and the flow fields in centrifugal impellers is validated. Then taking a centrifugal impeller as the research object, the calculations of aerodynamic damping characteristics were carried out. The results show that, the modal aerodynamic damping ratio has no relationship with the vibrating amplitude under small vibrations. For the disk-dominant vibration ...
机译:为了实现对离心式叶轮气动阻尼的数值分析,首先开发了一种在移动网格系统下将流结构数据传递,网格变形和流场仿真相结合的数字代码。为了减少大量的CPU时间和内存空间消耗,采用了紧凑支持的径向基函数来进行数据传输和网格变形,并使用交替数字树技术来计算墙距。通过摆动叶栅和离心叶轮的测试案例,验证了带有运动边界和离心叶轮流场的流动模拟代码的正确性。然后以离心叶轮为研究对象,进行了气动阻尼特性的计算。结果表明,模态空气动力阻尼比与小振动条件下的振幅无关。对于磁盘主导的振动...

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