Mathematical Modeling the Dynamics of the Bottom Sediments Granulometric Composition in the Balaklava Bay Affected by the Wind Waves

IF 0.7 Q4 OCEANOGRAPHY Physical Oceanography Pub Date : 2021-02-01 DOI:10.22449/0233-7584-2021-1-85-97
K. Gurov, V. Fomin
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引用次数: 2

Abstract

Purpose. Based on the mathematical modeling methods, influence of the wind waves on redistribution of the sand fractions in the semi-closed estuary-type water area is estimated using the Balaklava Bay as an example. Methods and Results. A two-dimensional version of the XBeach model with a constant grid spacing 10 m was used. The characteristics of wind waves were preset using the JONSWAP spectrum. The calculations were carried out for a storm event lasting about 12 hours once a year. The in-situ data on the particle size distribution in the bottom sediments resulted from the monitoring observations in the Balaklava Bay region was used in the numerical experiments. Conclusions. The results of modeling showed that the basic determining factors regulating the sediments movement were the depth and the bottom slope. It is noted that changing of the bottom inclination angle between the isobaths 6–7 and 7–8 m leads to deposition of the large and medium fractions, and in the area between the isobaths 9–10 and 10–12 m – to accumulation of fine sand. It was revealed that in the Balaklava Bay water area, the main redistribution of sand material caused by the storm waves took place within the southern basin, as well as at the bay exit in the coastal zone of the Megalo-Yalo Gulf. This is primarily determined by the features of the Balaklava Bay coast orography, namely, the knee-shaped narrowness separating the northern and southern basins. Nevertheless, in the isolated northern part of the Balaklava Bay being affected by the storm waves, insignificant dynamics of sand material was observed. The fractions of bottom sediments are redistributed from the western coast to the central part of the basin and to the eastern coast of the bay.
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海风影响下巴拉克拉瓦湾底部沉积物颗粒组成动态的数学模拟
意图基于数学建模方法,以巴拉克拉瓦湾为例,估计了半封闭河口型水域风浪对沙组分再分配的影响。方法和结果。使用具有恒定网格间距10m的XBeach模型的二维版本。利用JONSWAP谱预设了风浪的特征。这些计算是针对每年一次持续约12小时的风暴事件进行的。数值实验中使用了巴拉克拉瓦湾地区监测观测得到的海底沉积物颗粒尺寸分布的现场数据。结论。模拟结果表明,控制沉积物运动的基本决定因素是深度和底坡。值得注意的是,6–7和7–8 m等深线之间底部倾角的变化会导致大颗粒和中等颗粒的沉积,在9–10和10–12 m等深槽之间的区域会导致细砂的堆积。据透露,在巴拉克拉瓦湾水域,风暴波造成的沙物质的主要再分配发生在南部盆地内,以及梅加洛亚罗湾沿海地区的海湾出口。这主要是由巴拉克拉瓦湾海岸地形的特征决定的,即分隔北部和南部盆地的膝盖状狭窄。然而,在受到风暴波影响的巴拉克拉瓦湾孤立的北部,观察到沙物质的动力学不明显。底部沉积物的部分从西海岸重新分布到盆地的中部和海湾的东海岸。
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来源期刊
Physical Oceanography
Physical Oceanography OCEANOGRAPHY-
CiteScore
1.80
自引率
25.00%
发文量
8
审稿时长
24 weeks
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