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首页> 外文期刊>International Journal of Rotating Machinery >Numerical Simulation of Surge in Axial Compressor
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Numerical Simulation of Surge in Axial Compressor

机译:轴流压气机喘振的数值模拟

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摘要

The object of this paper is to provide a reliable tool to simulate the stationary and transient operation performances in multistage axial compression systems, especially poststall behavior. An adapted version of the 1D Euler equations with additional source terms is solved by a time marching and control volume method. The equations are discretized at midspan both inside the blade rows and the nonbladed regions, along the real flow path geometry. The source terms express the blade-flow interactions and are estimated by calculating the velocity triangles for each blade row. Loss coefficient and deviation models are supplied by empirical correlations and are compared to experimental data in all flow regions. Transient simulations are carried and compared to the experimental results for several values of parameterB. The flow mechanism inside the compressor during a surge cycle is also shown.
机译:本文的目的是提供一种可靠的工具来模拟多级轴向压缩系统中的平稳和瞬态运行性能,尤其是失速行为。一维Euler方程的修改版以及其他源项通过时间行进和控制量方法求解。沿实际流路几何形状,方程式在叶片行内部和非叶片区域的中跨处离散。源项表示叶片流相互作用,并通过计算每个叶片行的速度三角形来估算。损耗系数和偏差模型由经验相关性提供,并与所有流动区域的实验数据进行比较。进行了瞬态仿真,并将其与参数B的多个值的实验结果进行比较。还显示了喘振周期中压缩机内部的流动机制。

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