How wind direction and building spacing influences airflow patterns and sediment transport patterns around a row of beach buildings: A numerical study

IF 3.1 3区 地球科学 Q2 GEOGRAPHY, PHYSICAL
Paran Pourteimouri, Geert H.P. Campmans, Kathelijne M. Wijnberg, Suzanne J.M.H. Hulscher
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引用次数: 3

Abstract

Buildings at the beach change the near-bed airflow patterns in the surrounding area. This induces alterations in wind-induced bed shear stress and wind-induced sediment transport which, in turn, affect the bed topography in the vicinity of buildings. Three-dimensional computational fluid dynamics simulations using OpenFOAM have been performed to understand how and to what extent the buildings at the beach influence the sediment transport from the beach to the dunes. Herein, we explicitly account for the positioning of the buildings with respect to each other and the dominant wind direction. Also discussed are the airflow mechanisms that are responsible for sediment transport, and how they alter due to systematic changes in the gap spacing between buildings and the wind incidence angle. Simulations were performed, in which we model flow and initial sediment transport around a repeating row of ten parallel full-scale beach buildings when the gap spacings and wind incidence angles were systematically varied. The horizontal near-bed streamline patterns showed that there is a critical gap spacing, below which the neighboring buildings significantly affect each other. Furthermore, the airflow in the near-wake region behind the row of buildings is quite complex. The shape and the extent to which the sand drifts develop behind the gaps between buildings are largely influenced by the wind direction, relative to the buildings. We also computed the average sediment transport flux along different lines downstream of the buildings. Our findings showed that, depending on the buildings’ positioning at the beach, they could have negative effects on dune growth by obstructing the sediment particles from moving downstream, or they could have positive effects on dune growth by steering the airflow and supplying more sediment downstream.

风向和建筑间距如何影响一排海滩建筑周围的气流模式和沉积物输运模式:数值研究
海滩上的建筑改变了周围地区的近床气流模式。这引起了风致河床剪切应力和风致沉积物输运的变化,进而影响了建筑物附近的河床地形。使用OpenFOAM进行了三维计算流体动力学模拟,以了解海滩上的建筑物如何以及在多大程度上影响沉积物从海滩到沙丘的运输。在这里,我们明确地考虑了建筑物相对于彼此和主导风向的定位。还讨论了负责沉积物运输的气流机制,以及它们如何由于建筑物之间的间隙间距和风入射角的系统变化而改变。在进行模拟时,我们模拟了在间隙和入射角系统变化的情况下,围绕10个平行的全尺寸海滩建筑物的重复排的水流和初始泥沙输运。水平近层流线形态表现为存在一个临界间隙间距,在此间隙以下相邻建筑之间相互影响显著。此外,排楼后近尾流区域的气流也相当复杂。沙尘在建筑物间隙后形成的形状和程度很大程度上受到相对于建筑物的风向的影响。我们还计算了沿建筑物下游不同线路的平均输沙通量。我们的研究结果表明,根据建筑物在海滩上的位置,它们可能会通过阻碍沉积物颗粒向下游移动而对沙丘生长产生负面影响,也可能通过引导气流并向下游提供更多沉积物而对沙丘生长产生积极影响。
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来源期刊
Aeolian Research
Aeolian Research GEOGRAPHY, PHYSICAL-
CiteScore
7.10
自引率
6.10%
发文量
43
审稿时长
>12 weeks
期刊介绍: The scope of Aeolian Research includes the following topics: • Fundamental Aeolian processes, including sand and dust entrainment, transport and deposition of sediment • Modeling and field studies of Aeolian processes • Instrumentation/measurement in the field and lab • Practical applications including environmental impacts and erosion control • Aeolian landforms, geomorphology and paleoenvironments • Dust-atmosphere/cloud interactions.
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