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DESIGN AND INTERNAL FLOW ANALYSIS OF A DUCTED CONTRA-ROTATING AXIAL FLOW FAN

机译:管道旋转轴流式风扇的设计与内部流动分析

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This paper presents the design procedure of a ducted contra-rotating axial flow fan and investigates the flow behavior inside it using ANSYS CFX-15 flow solver. This study investigates parameters such as pressure ratio, inlet mass flow rate and efficiency in different operating points. This system consists of two rotors with an outer diameter of 434 mm and an inner diameter of 260 mm which rotate contrary to each other with independent nominal rotational speeds of 1300 rpm. Blades' maximum thickness and rotational speeds of each rotor will be altered as well as the axial distance between the two rotors to investigate their effect on the overall performance of the system. Designed to deliver a total pressure ratio of 1.005 and a mass flow rate of 1.8 kg/s at nominal rotational speeds, this system proves to be much more efficient compared to the conventional rotor-stator fans. NACA-65 airfoils are used in this analysis with the necessary adjustments at each section. Inverse design method is used for the first rotor and geometrical constraints are employed for the second one to have an axial inlet and outlet flow without using any inlet or outlet guide vanes. Using free vortex swirl distribution method, characteristic parameters and the necessary data for 3D generation of this model are obtained. The appropriate grid is generated using ATM method in ANSYS TurboGrid and the model is simulated in CFX-15 flow solver by employing k-ε turbulence model in the steady state condition. Both design algorithm and simulation analysis confirm the high anticipated efficiency for this system. The accuracy of the design algorithm will be explored and the most optimum operating points in different rotational speed ratios and axial distances will be identified. By altering the outlet static pressure of the system, the characteristic map is obtained.
机译:本文介绍了管道对比轴流式风扇的设计步骤,并使用ANSYS CFX-15流动求解器研究其内的流动性能。本研究研究了不同操作点中的压力比,入口质量流量和效率等参数。该系统由两个外径为434mm的转子和260mm的内径,其彼此旋转相反,具有1300rpm的独立标称转速。叶片的最大厚度和每个转子的旋转速度将被改变以及两个转子之间的轴向距离,以研究它们对系统整体性能的影响。设计为以标称转速为1.005的总压力比为1.005和大质量流量为1.8千克/秒,与传统的转子定子风扇相比,该系统证明是更有效的。在该分析中使用NaCA-65翼型,并在每个部分进行必要的调整。逆设计方法用于第一转子,并且在不使用任何入口或出口导叶片的情况下,使用用于第二旋转的几何约束以具有轴向入口和出口流动。使用免费Vortex旋流分配方法,获得特征参数和用于该模型的3D生成的必要数据。使用ATM方法在ANSYS TurboGrid中产生适当的网格,并且通过在稳态条件下采用K-ε湍流模型来模拟CFX-15流动求解器的模型。设计算法和仿真分析都确认了该系统的高预期效率。将探索设计算法的准确性,并识别不同转速比和轴向距离的最佳工作点。通过改变系统的出口静压,获得特征图。

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