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An optimal design for axial-flow fan blade: theoretical and experimental studies

机译:轴流风机叶片的优化设计:理论和实验研究

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摘要

The technique of inverse design problem (IDP) for optimizing the three-dimensional shape of an axial-flow fan blade based on the desired airflow rate is presented in this work. The desired volume flow rate of air can be obtained from the airflow rate of the existing axial-flow fan by multiplying it with a constant which is greater than unity. The geometry of the redesigned fan blade is generated using numerous design variables, which enables the shape of the fan blade to be constructed completely; thus the technique of parameter estimation for the inverse design problem can be used in this study. Results show that with the redesigned optimal fan blade, the airflow rate of fan can be increased, thereby improving the performance of the axial-flow fan. Finally, to verify the validity of this work, the prototypes of the original and optimal axial-flow fan blades are fabricated and fan performance tests are conducted with these blades on the basis of the AMCA-210-99 standard. The algorithm used in the present study can be applied to the blade design problem in any propulsion and power systems.
机译:在这项工作中,提出了一种逆设计问题(IDP)技术,该技术可根据所需的气流速率来优化轴流风扇叶片的三维形状。通过将现有轴流风扇的风量乘以大于1的常数,可以从中获得所需的空气体积流率。重新设计的风扇叶片的几何形状是使用众多设计变量生成的,从而可以完全构造风扇叶片的形状。因此,可以将逆设计问题的参数估计技术用于本研究。结果表明,通过重新设计最佳风扇叶片,可以提高风扇的风量,从而改善轴流风扇的性能。最后,为了验证这项工作的有效性,制造了原始和最佳轴流风扇叶片的原型,并根据AMCA-210-99标准对这些叶片进行了风扇性能测试。本研究中使用的算法可以应用于任何推进和动力系统中的叶片设计问题。

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