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Numerical Simulation and Experiment Research on Aerodynamic Characteristics of a Multi-Blade Centrifugal Fan

机译:多刀片离心风机的空气动力学特性的数值模拟与实验研究

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The full flow field model of a widely used multi-blade centrifugal fan was built, and unstructured grids were used to discrete the computational domain. The moving reference frame is adopted to transfer data between the interfaces of the rotating field and the stationary field. Pressure boundary conditions are specified to the inlet and the outlet. The SIMPLE algorithm in conjunction with the RNG k-s turbulent model was used to solve the three-dimensional Navicr-Stokes equations. The steady and unsteady numerical simulations of the inner flow in the fan at different working conditions were presented using the CFD method. The numerical simulation results were validated by contrasting to the experiment results. The results displayed the characteristics of the velocity field, pressure field, pressure fluctuation at two monitoring points in the centrifugal fan. The results can provide basis for optimizing the fan design and the internal flow, and have important value of engineering applications in the increase of the overall performance in operation.
机译:构建了广泛使用的多刀片离心风扇的全流场模型,并使用非结构化网格离散计算域。采用移动参考帧来传输旋转场的接口和静止场之间的数据。压力边界条件指定给入口和出口。使用与RNG K-S湍流模型结合的简单算法来解决三维Navicr-Stokes方程。使用CFD方法提出了在不同工作条件下风扇内流动的稳定和不稳定的数值模拟。通过与实验结果对比进行验证数值模拟结果。结果显示了离心式风扇中的两个监测点的速度场,压力场,压力波动的特性。结果可以为优化风扇设计和内部流量提供依据,并在运行过程中的整体性能方面具有重要价值。

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