Numerical investigation on the effect of flexible vegetation in open-channel flow incorporating FSI

V.S. Alsina, Miji Cherian R
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引用次数: 0

Abstract

ABSTRACTThe understanding and studying of the vegetation effect on the natural water flows is an important objective in modern scientific research regarding river management and restoration, with high environmental impact. Vegetation in the open-channel flow significantly affects the velocity of flow. In the present study, influence of the flexible vegetation on the flow characteristics of open-channel flow was resolved numerically using computational fluid dynamics. For the numerical study of the open-channel flow with flexible vegetation, fluid–structure interaction (FSI) is used. The obtained results were then compared with the numerical results of rigid vegetation. The influence of different parameters such as depth of flow, flow velocity, slenderness ratio of vegetation and density of vegetation were studied. It was found that incorporation of FSI in the analysis is essential to accurately predict the flow characteristics. It was also found that the simulation using FSI is more critical in case of submerged vegetation in an open-channel flow for all flow velocities.KEYWORDS: Flexible vegetationcomputational fluid dynamicsfluid–structure interaction List of Abbreviations Abbreviations=DefinitionsCd=Drag coefficientCFD=Computational fluid dynamicsFSI=Fluid structure interactionLES=Large Eddy simulationsVOF=Volume of fluidDisclosure statementNo potential conflict of interest was reported by the author(s).
柔性植被对明渠水流影响的FSI数值研究
摘要了解和研究植被对自然水流的影响是现代河流治理与修复科学研究的重要目标,具有较高的环境影响。明渠水流中植被对水流速度有显著影响。本文采用计算流体力学的方法,对柔性植被对明渠流动特性的影响进行了数值求解。采用流固耦合(FSI)方法对具有柔性植被的明渠流动进行数值研究。将所得结果与刚性植被的数值结果进行了比较。研究了流深、流速、植被长细比、植被密度等不同参数的影响。研究发现,在分析中加入FSI对于准确预测流动特性至关重要。研究还发现,在所有流速下,在明渠流中淹没植被的情况下,FSI模拟更为关键。关键词:柔性植被计算流体动力学流固耦合缩略语列表缩略语=定义scd =阻力系数cfd =计算流体动力学sfsi =流固耦合les =大涡模拟svof =流体体积披露声明作者未报告潜在的利益冲突。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
ISH Journal of Hydraulic Engineering
ISH Journal of Hydraulic Engineering Engineering-Civil and Structural Engineering
CiteScore
4.30
自引率
0.00%
发文量
59
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