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DESIGN OF A HIGHLY LOADED TRANSONIC TWO-STAGE FAN USING SWEPT AND BOWED BLADING

机译:吹扫和弓形叶片设计高负荷跨音速两级风机

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This paper presents the design of a highly loaded transonic two-stage fan using several advanced three-dimensional blading techniques including forward sweep and "hub bending" in rotors and several bowed configurations in stators. The effects of these blading techniques on the performance of the highly loaded transonic two-stage fan were investigated on the basis of three-dimensional Navier-Stokes predictions. The results indicate that forward sweep has insignificant impact on the total pressure ratio and adiabatic efficiency of the fan. The throttling range of the fan is found to be improved by forward sweep because the shock in the forward swept rotor is expelled later upstream to the leading edge than that in the unswept one. Hub bending design technique increases the efficiency in the hub region of R1 due to the reduction of the low momentum zone in the hub region near the trailing edge. The stator vane design has a pronounced impact on the performance of the fan. The total pressure ratio, adiabatic efficiency, and stall margin of the schemes with the bowed vanes are increased significantly compared to the scheme with the straight vanes. The large corner stall in the straight S1 vane is reduced effectively by the bowed S1 vanes. Moreover, the strong corner stall in the straight S2 vane is fully eliminated by the bowed S2 vanes. Among the bowed vane schemes, the scheme with positive bowed (P. B.) hub and negative bowed (N. B.) tip vanes has the best efficiency and stall margin performances thanks to the superiority of the performance over the midspan regions of the bowed vanes.
机译:本文介绍了一种采用几种先进的三维叶片技术的高负荷跨音速两级风扇的设计,包括转子中的前掠和“轮毂弯曲”以及定子中的几种弓形结构。基于三维Navier-Stokes预测,研究了这些叶片技术对高负载跨音速两级风机性能的影响。结果表明,前掠对风机的总压比和绝热效率影响不大。发现通过向前扫掠可以改善风扇的节流范围,因为向前扫掠的转子中的冲击比未扫掠的转子在上游更晚地被排放到前缘。轮毂弯曲设计技术由于减小了后缘附近的轮毂区域中的低动量区域而提高了R1轮毂区域中的效率。定子叶片的设计对风扇的性能有明显的影响。与采用直叶片的方案相比,采用弓形叶片的方案的总压力比,绝热效率和失速裕度显着提高。弯曲的S1叶片可有效减少直S1叶片中的大转角失速。此外,弯曲的S2叶片完全消除了直S2叶片中的强转角失速。在弓形叶片方案中,具有正弓形(P. B.)轮毂和负弓形(N. B.)尖端叶片的方案具有最佳的效率和失速裕度性能,这是由于性能优于弓形叶片的中跨区域。

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