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基于图像处理的山区河道表面流场测算研究 被引量:2
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作者 李蔚 廖谦 +1 位作者 唐鸿磊 冉启华 《人民长江》 北大核心 2014年第15期89-92,104,共5页
山洪爆发的表面流场数据对研究洪水和泥石流的发生机理具有重要意义。采用基于图像处理的方法对都江堰龙溪河表面流场进行了测算,结果与旋桨式流速仪直接测量的数据基本一致,证明这种方法应用于山区河道的流速测量是可行的,且具有设备... 山洪爆发的表面流场数据对研究洪水和泥石流的发生机理具有重要意义。采用基于图像处理的方法对都江堰龙溪河表面流场进行了测算,结果与旋桨式流速仪直接测量的数据基本一致,证明这种方法应用于山区河道的流速测量是可行的,且具有设备便携、非接触等优势。同时,对浑浊水体的测算结果也证明了这一方法在洪水期应用的可行性,并可使用流速-面积法估算流量。 展开更多
关键词 图像处理 流场测算 洪水 龙溪河
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Prediction of Hydrodynamic Noise of Open Cavity Flow 被引量:4
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作者 耿冬寒 王玉 《Transactions of Tianjin University》 EI CAS 2009年第5期336-342,共7页
In this paper,the hydrodynamically generated noise by the flow over an open cavity is studied.First,aeroacoustic theories and computational aeroacoustic(CAA) methodologies are reviewed in light of hydrodynamic acousti... In this paper,the hydrodynamically generated noise by the flow over an open cavity is studied.First,aeroacoustic theories and computational aeroacoustic(CAA) methodologies are reviewed in light of hydrodynamic acoustics,based on which,a hybrid method is presented.In the coupling procedure,the unsteady cavity flow field is computed using large-eddy simulation(LES) ,while the radiated sound is calculated by the Ffowcs Williams-Hawkings(FW-H) acoustic analogy with acoustic source terms extracted from the time-dependent solutions of the unsteady flow.The hybrid LES-FW-H acoustic analogy method is tested with an open cavity flow at Mach number of 0.006 and Reynolds number of 105 .Following the reflection theorem of Powell,the contributions from different source terms are quantified,and the terms involving wall-pressure fluctuations are found to account for most of the radiated intensity.The radiation field is investigated in the frequency domain.For the longitudinal direction,the sound propagates with a dominant radiation downstream the cavity in the near-field and a flatter directivity in the far-field,while for the spanwise direction,the acoustic waves have a similar propagation along+z and-z directions,with no visible directivity. 展开更多
关键词 hydrodynamic acoustic open cavity large-eddy simulation acoustic analogy
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