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首页> 外文期刊>International Journal of Turbo and Jet Engines >Investigations on the Aerodynamic Characteristics and Blade Excitations of the Radial Turbine with Pulsating Inlet Flow
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Investigations on the Aerodynamic Characteristics and Blade Excitations of the Radial Turbine with Pulsating Inlet Flow

机译:脉动进气流对径向涡轮气动特性和叶片激励的影响

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摘要

The aerodynamic performance, detailed unsteady flow and time-based excitations acting on blade surfaces of a radial flow turbine have been investigated with pulsation flow condition. The results show that the turbine instantaneous performance under pulsation flow condition deviates from the quasi-steady value significantly and forms obvious hysteretic loops around the quasi-steady conditions. The detailed analysis of unsteady flow shows that the characteristic of pulsation flow field in radial turbine is highly influenced by the pulsation inlet condition. The blade torque, power and loading fluctuate with the inlet pulsation wave in a pulse period. For the blade excitations, the maximum and the minimum blade excitations conform to the wave crest and wave trough of the inlet pulsation, respectively, in time-based scale. And toward blade chord direction, the maximum loading distributes along the blade leading edge until 20% chord position and decreases from the leading to trailing edge.
机译:利用脉动流条件研究了气动性能,详细的非定常流动以及作用在径向流涡轮叶片表面上的基于时间的激励。结果表明,在脉动工况下,汽轮机的瞬时性能明显偏离准稳态值,并在准稳态条件下形成明显的磁滞回线。对非定常流动的详细分析表明,径向涡轮的脉动流场特性受脉动入口条件的影响很大。叶片扭矩,功率和负载在一个脉冲周期内随入口脉动波而波动。对于叶片激励,最大和最小叶片激励分别基于时间标度对应于入口脉动的波峰和波谷。朝向叶片弦方向,最大载荷沿叶片前缘分布,直到弦位置达到20%,并从前缘到后缘减小。

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