首页> 外文会议>American Society of Mechanical Engineers(ASME) Turbo Expo vol.5 pt.A; 20040614-17; Vienna(AT) >SUPPRESSION OF UNSTABLE FLOW AT SMALL FLOW RATES IN A CENTRIFUGAL BLOWER BY CONTROLLING TIP LEAKAGE FLOW AND REVERSE FLOW
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SUPPRESSION OF UNSTABLE FLOW AT SMALL FLOW RATES IN A CENTRIFUGAL BLOWER BY CONTROLLING TIP LEAKAGE FLOW AND REVERSE FLOW

机译:通过控制尖端泄漏流量和反向流量来抑制离心风机中小流量的不稳定流量

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摘要

The effects of the inlet recirculation arrangement on inducer stall and the diffuser width on diffuser stall in a high specific speed type centrifugal impeller with inducer were analyzed by a numerical simulation and also verified experimentally. It is found that the incipient unstable flow occurs due to a rolling-up vortex flow resulting from an interaction between the tip leakage flow and the reverse flow accumulated at the pressure side immediately downstream of the inducer tip throat in which a strong streamwise component of vorticity is included. By forming the inlet recirculation flow, the tip leakage vortex is effectively sucked into the suction ring groove, and the flow incidence is decreased simultaneously. The unstable flow range of the test blower was reduced significantly by about 45% without deteriorating the impeller characteristics by implementing optimally both the ring groove arrangement and the narrowed diffuser width.
机译:通过数值模拟分析了进口循环方式对高比转速带叶轮离心叶轮的叶轮失速和叶轮宽度对叶轮失速的影响,并进行了实验验证。发现初始不稳定流是由于尖端泄漏流与紧靠诱导器尖端喉管下游的压力侧累积的逆流之间的相互作用而产生的涡旋向上滚动而产生的,该涡旋流是涡流的强流分量已经包括了。通过形成入口再循环流,尖端泄漏涡流被有效地吸入到吸入环槽中,并且流动入射率同时降低。通过同时实现最佳的环形槽布置和变窄的扩压器宽度,试验鼓风机的不稳定流量范围可显着减小约45%,而不会降低叶轮特性。

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