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首页> 外文期刊>International journal of computational fluid dynamics >A study on numerical methods for transient rotating flow induced by starting blades
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A study on numerical methods for transient rotating flow induced by starting blades

机译:起始叶片引起的瞬时旋转流动数值方法研究

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Based on the finite volume method, three methods for rotational region treatment were presented and validated by simulating two-dimensional accelerating rotational flows. Separate transient incompressible flows induced by cross-shaped blades during starting process were simulated using the dynamic mesh, sliding mesh and dynamic reference frame methods. The computing performance and stability of the three methods were evaluated by comparing numerical results, and the transient characteristics of the accelerating rotational flow were analysed numerically. Results showed that the starting process affected the flow structure and transient characteristics of the accelerating rotational flows. The sliding mesh method showed higher computational efficiency and accuracy compared with other methods, and could easily be extended to solve three-dimensional transient flows in hydraulic machineries under transient operations, such as start-up and shutdown.
机译:基于有限体积法,提出了三种旋转区域处理方法,并通过模拟二维加速旋转流进行了验证。使用动态网格,滑动网格和动态参考框架方法模拟了在启动过程中由十字形叶片引起的单独的瞬态不可压缩流。通过比较数值结果,评价了三种方法的计算性能和稳定性,并对加速旋转流的瞬态特性进行了数值分析。结果表明,启动过程影响了加速旋转流的流动结构和瞬态特性。与其他方法相比,滑动网格方法显示出更高的计算效率和精度,并且可以轻松扩展以解决液压机械在瞬态操作(例如启动和关闭)下的三维瞬态流动。

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