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首页> 外文期刊>SIAM journal on applied dynamical systems >A modified log-law of flow velocity distribution in partly obstructed open channels
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A modified log-law of flow velocity distribution in partly obstructed open channels

机译:部分阻碍开放通道的流速分布的修改后的逻辑规律

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Flow through rigid and emergent/submerged cylinder arrays are commonly found in several engineering application such as offshore structures, transmission lines, chimneys, array of silos and field array of trees. Various hydrodynamic phenomena may be occurring in the interaction between a flowing fluid and these structures. In this manuscript we focus on the study of flow structures in a channel partially obstructed by an array of equi-spaced, vertical, rigid, emergent, circular steel cylinders. Experimental results show that the presence of the cylinders array strongly affects the flow velocity distribution, forming a transversal sharp transition region at the interface between the obstructed and the unobstructed domains. At the interface, for the current and previous studies, it was observed that the flow distribution always resembles a boundary layer feature. This similarity in feature of the flow distribution as a boundary layer has led to adapting the universal law of the wall to describe the transversal profile of the mean flow velocity, considering, by analogy, the interface separating both domains as a virtual wall. The specific objectives addressed in this study is to propose and validate a new modified log-law predicting the representative transversal profile of the mean flow velocity at the interface between the obstructed and the unobstructed domains. The proposed analytical model is validated by a series of experiments carried out on a very large rectangular channel in the Department of Civil, Environmental, Building Engineering and Chemistry of the Technical University of Bari-Italy. The three-dimensional flow velocity components were measured using a 3D Acoustic Doppler Velocimeter ADV. As a result, it is observed that the measured and the predicted, applying the proposed modified log-law, mean flow velocity data have a perfect matching between them. Moreover, in the second part of the paper, detailed observations on the flow turbulence structure are analyzed and discussed.
机译:流过刚性和紧急/淹没的气缸阵列通常在若干工程应用中找到,例如海上结构,传输线,烟囱,筒仓阵列和树木阵列。可以在流动流体和这些结构之间的相互作用中发生各种流体动力学现象。在本手稿中,我们专注于由一系列平等,垂直,刚性,紧急,圆形钢圆柱体部分阻挡的通道中的流动结构的研究。实验结果表明,气缸阵列的存在强烈影响流速分布,在阻塞和无阻碍结构域之间的界面处形成横向尖锐过渡区域。在界面上,对于当前和以前的研究,观察到流量分布始终类似于边界层特征。作为边界层的流量分布特征的这种相似性导致墙壁的普遍规律来描述平均流速的横向轮廓,考虑到通过类比,将两个域作为虚拟墙分开的界面。本研究中解决的具体目标是提出并验证新的修改日志法,预测阻碍和无阻碍结构域之间的界面处的平均流速的代表性横向轮廓轮廓。所提出的分析模型由一系列关于民间,环境,建筑工程和贝里 - 意大利大学技术大学的大型矩形渠道进行的一系列实验。使用3D声学多普勒Velocimeter ADV测量三维流速分量。结果,观察到测量和预测,应用所提出的修改的数指,平均流速数据在它们之间具有完美的匹配。此外,在本文的第二部分中,分析并讨论了对流动湍流结构的详细观察。

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