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首页> 外文期刊>Experiments in Fluids: Experimental Methods and Their Applications to Fluid Flow >Design and qualification of an unsteady low-speed wind tunnel with an upstream louver system
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Design and qualification of an unsteady low-speed wind tunnel with an upstream louver system

机译:具有上游百叶窗系统不稳定低速风洞的设计与鉴定

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The design and qualification of a longitudinal gust generator in a low-speed, blow-down, open-return wind tunnel was conducted. Flow-impeding louvers were used to rapidly change the blockage ratio at the inlet, effectively reducing test section flow speeds up to 60% and 52% for the closed and open test section configurations of the wind tunnel, respectively. The wind tunnel responds more quickly for higher fan speeds, shorter tunnel lengths, and during louver closing motions (deceleration). A mathematical model developed to predict the wind tunnel's response shows these same trends and agrees with the experimental data to within 0.03 in amplitude ratio and 4.3. in phase lag, for all cases studied. Comparison of the closed to open test section configurations reveals that flow disturbances propagate nearly instantaneously, or in a globally unsteady manner, within the closed configuration, while they convect at speeds similar to that of the mean flow when testing in the open configuration.
机译:纵向阵风发生器的设计和鉴定在低速,污水,打开的风隧道中进行。流动阻碍的百叶窗用于快速改变入口处的堵塞比,有效地将测试截面流速减少到60%和52%的风隧道的闭合和打开试验部分配置。风洞更快地响应较高的风扇速度,较短的隧道长度,以及在百叶窗关闭运动(减速)期间。为预测风洞响应而开发的数学模型显示了与实验数据相同的趋势,并同意幅度比和4.3的0.03内。在阶段滞后,对于研究的所有案例。关闭到打开测试部分配置的比较显示,流动干扰几乎瞬间传播,或者在闭合配置内以全局不稳定的方式传播,而它们在打开配置中测试时的速度与平均流相似的速度。

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