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首页> 外文期刊>International Journal of Rotating Machinery >Darmstadt Rotor No.2, II: Design of Leaning Rotor Blades
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Darmstadt Rotor No.2, II: Design of Leaning Rotor Blades

机译:达姆施塔特二号转子,II:倾斜式转子叶片的设计

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摘要

For Darmstadt University of Technology's axial single-stage transonic compressor rig, a new three-dimensional aft-swept rotor was designed and manufactured at MTU Aero Engines in Munich, Germany. The application of carbon fiber-reinforced plastic made it possible to overcome structural constraints and therefore to further increase the amount of lean and sweep of the blade. The aim of the design was to improve the mechanical stability at operation that is close to stall. To avoid the hazard of rubbing at the blade tip, which is found especially at off-design operating conditions close to the stability limit of the compression system, aft-sweep was introduced together with excessive backward lean. This article reports an investigation of the impact of various amounts of lean on the aerodynamic behavior of the compressor stage on the basis of steady-state Navier-Stokes simulations. The results indicate that high backward lean promotes an undesirable redistribution of mass flow and gives rise to a basic change in the shock pattern, whereas a forward-leaning geometry results in the development of a highly back-swept shock front. However, the disadvantage is a decrease in shock strength and efficiency.
机译:对于达姆施塔特工业大学的轴向单级跨音速压缩机装置,在德国慕尼黑的MTU航空发动机公司设计并制造了一种新型的三维后掠转子。碳纤维增强塑料的应用使得可以克服结构上的限制,从而进一步增加了叶片的倾斜和后掠量。设计的目的是提高接近失速状态下的机械稳定性。为了避免在叶片末端产生摩擦的危险(尤其是在接近压缩系统稳定性极限的非设计运行条件下发现),引入了后掠和过大的向后倾斜。本文报告了基于稳态Navier-Stokes模拟的各种稀油对压缩机级空气动力学行为的影响的研究。结果表明,高的后倾倾斜会引起不希望的质量流重新分布,并引起激波形式的基本变化,而前倾的几何形状会导致后掠激波前冲的发展。但是,缺点是冲击强度和效率降低。

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