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ROTATING STALL INCEPTION FROM SPIKE AND ROTATING INSTABILITY IN A VARIABLE-PITCH AXIAL-FLOW FAN

机译:变螺距轴流风扇的尖峰旋转失速和旋转不稳定性

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End wall flow fields at the two stagger-angle settings for the rotor blades in the low-speed axial-flow fan are experimentally and numerically investigated to elucidate the mechanism of stall inception. Rotating instability is confirmed near the maximum pressure-rise point at both design and large stagger-angle settings. This instability is induced by the interaction between the incoming flow, tip leakage flow, and backflow from the trailing edge. The stall-inception pattern, however, differs at the two stagger-angle settings. The stall inception from a spike is observed at the design stagger-angle setting, and the stall inception without the spike and modal disturbance is observed at the large stagger-angle setting. The rotating instability seems to influence the formation of stall cell at the large stagger-angle setting. Tip-leakage vortex breakdown occurs at both design and large stagger angle settings. This breakdown induces the three-dimensional separation on the suction surface of the rotor blade at the tip. Three-dimensional separation at the design stagger-angle setting is stronger than that at the large stagger-angle setting. The strong separation grows into a three-dimensional separation vortex, which crosses the blade passage near the trailing edge. This separation vortex seems to be one of the conditions for spike initiation.
机译:实验和数值研究了低速轴流风机中转子叶片在两个交错角设置下的端壁流场,以阐明失速开始的机理。在设计和较大的交错角度设置下,都可以在最大压力上升点附近确认旋转不稳定性。输入流,尖端泄漏流和来自后缘的回流之间的相互作用会导致这种不稳定性。但是,失速开始模式在两种交错角度设置下有所不同。在设计交错角设置下会观察到来自尖峰的失速开始,而在较大交错角设置下会观察到没有尖峰和模态干扰的失速开始。旋转不稳定性似乎会影响大交错角设置下失速单元的形成。在设计和大交错角设置下都会发生尖端泄漏涡旋破坏。这种破坏在转子叶片的尖端的吸力表面上引起三维分离。设计交错角设置下的三维分离效果强于较大交错角设置下的三维分离效果。强分离长成一个三维分离涡,它在后缘附近穿过叶片通道。这种分离涡旋似乎是引发尖峰的条件之一。

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