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首页> 外文期刊>International Journal of Mechanical Sciences >Experimental and numerical investigations on effect of blade trimming on aerodynamic performance of squirrel cage fan
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Experimental and numerical investigations on effect of blade trimming on aerodynamic performance of squirrel cage fan

机译:刀片修剪对松鼠笼式风扇空气动力学性能的实验和数值研究

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摘要

The impeller of squirrel cage fan exerts great effects on the internal flow fields and fan aerodynamic performance. On the premise of maintained impeller-volute tongue distance and production cost reduction, this paper proposes a blade trimming method focusing on axial modification of blade inlet in an attempt to improve the impeller flow condition and further the aerodynamic performance of squirrel cage fan, which is divided into blade full trimming and part trimming. Aerodynamic performance tests and numerical simulations are performed to explore the effect of blade trimming on the fan aerodynamic performance and the related flow mechanisms. The results show that the blade trimming with proper trimming parameter enables the fan to achieve higher fan aerodynamic performance in terms of total pressure efficiency and static pressure rise, between which full trimming is preferable to part trimming. With the optimum full trimming of blade, the axial distributions of mass flow at the impeller inlet and outlet become more uniform. The dimension of inactive zone near the front span is decreased. On the blade pressure surface, the forces are reduced with obvious improvement of gradients near the front span and back span. A better match between impeller and volute tongue is achieved as the decreases of reversed flow coefficients at the impeller inlet and outlet and recirculated flow coefficient in the volute.
机译:松鼠笼式风扇的叶轮对内部流场和风扇空气动力学性能产生了很大的影响。在维持叶轮轴距离和生产成本上的前提下,本文提出了一种刀片修剪方法,重点介绍刀片入口的轴向改性,试图改善叶轮流量条件,进一步是松鼠笼式风扇的空气动力学性能。分为刀片全修剪和零件修剪。进行空气动力学性能测试和数值模拟,探讨刀片修剪对风扇空气动力学性能的影响和相关流动机制。结果表明,采用适当的修剪参数的刀片修剪使风扇能够在总压力效率和静压上升方面实现更高的风扇空气动力学性能,在此之间的全修剪是优选的部分修剪。随着叶片的最佳整理,叶轮入口和出口处的质量流量的轴向分布变得更加均匀。前跨度附近的非活动区域的尺寸减小。在叶片压力表面上,在前跨度和后跨附近的梯度的显而易见,力减小。叶轮和蜗舌之间的更好匹配作为叶轮入口和出口处的逆流系数的减小和蜗壳中的再循环流量系数的减小。

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