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液压阀口典型激振流动及其可视化实验方法 被引量:3
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作者 陆亮 何承鹏 《液压与气动》 北大核心 2018年第4期1-7,共7页
液压阀口通常伴随剧烈的介质流动,诱发空化相变、流体自激、结构振动等复杂气液固耦合激振问题。通过流动可视化实验,获得流动现象的直观捕捉,有助于深入理解现象的物理本质,揭示问题的内在机制,获得合理的建模依据,进而提出解决问题的... 液压阀口通常伴随剧烈的介质流动,诱发空化相变、流体自激、结构振动等复杂气液固耦合激振问题。通过流动可视化实验,获得流动现象的直观捕捉,有助于深入理解现象的物理本质,揭示问题的内在机制,获得合理的建模依据,进而提出解决问题的有效办法。在分析液压阀口流动可视化实验研究进展基础上,综合实验内容要素,阐述了"看"、"听"、"演"的可视化实验研究方法与技术手段。 展开更多
关键词 液压阀口 流动激振 流动可视化 实验方法与手段
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Effects of horizontal splitter plates on the vortex-induced vibration and aerostatic characteristics of twin separated parallel decks for a rail-cum-road bridge
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作者 HE Xu-hui YANG Jia-feng +2 位作者 LIU Lu-lu ZOU Yun-feng HE Jing 《Journal of Central South University》 2025年第3期1024-1043,共20页
Installing the splitter plates is a passive aerodynamic solution for eliminating vortex-induced vibration (VIV). However, the influences of splitter plates on the VIV and aerostatic performances are more complicated d... Installing the splitter plates is a passive aerodynamic solution for eliminating vortex-induced vibration (VIV). However, the influences of splitter plates on the VIV and aerostatic performances are more complicated due to aerodynamic interference between highway and railway decks. To study the effects of splitter plates, wind tunnel experiments for measuring VIV and aerostatic forces of twin decks under two opposite flow directions were conducted, while the surrounding flow and wind pressure of static twin decks with and without splitter plates are numerically simulated. The results showed that the incoming flow direction affects the VIV response and aerostatic coefficients. The highway deck has poor vertical and torsional VIV, and the VIV region and amplitude are different under different directions. While the railway deck only has vertical VIV when located upstream. The splitter plates can impede the process of vortex generation, shedding and impinging at the gap between twin deck, and significantly reducing the surface fluctuating pressure coefficient, thus effectively suppressing the VIV of twin decks. While, the splitter plates hurt the upstream deck regarding static wind stability and have little effect on the downstream deck. The splitter plates of appropriate width are recommended to improve VIV performances in twin parallel bridges. 展开更多
关键词 splitter plates vortex-induced vibration(VIV) aerostatic characteristic wind tunnel test twin parallel decks the rail-cum-road bridges computational fluid dynamics
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