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Hydrodynamics of a hyper-tidal estuary influenced by the world's second largest tidal power station (Rance estuary, France)

机译:受世界第二大潮汐发电站(法国RACE AETURATY)的超潮气河口的流体动力学

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摘要

The Rance estuary is a relatively small low-discharge steep-sided ria, located along the Brittany coast in northern France, with a maximum spring tidal range of 13.5 m. Taking advantage of this hyper-tidal regime, the first and currently the second largest operational tidal power station in the world was built at the estuary's mouth and has been in operation since the 1960s. Despite the well-known effect of damping of estuarine water levels, little attention has been given to quantifying the influence of the plant on the propagation and asymmetry of the tidal wave inside the estuary. In this study, hydrodynamics and tidal wave patterns were analyzed in this anthropogenically influenced estuarine system. A two-dimensional depth-averaged numerical model of the Rance estuary was developed. Two scenarios without the tidal power plant involving the dam's pre- and post-construction bathymetry (1957 and 2018 respectively) and present-day conditions scenarios were designed, to highlight the impact of bed evolution and the tidal power station on hydrodynamics and tidal asymmetry. Numerical results showed that, without the structure, bathymetric evolution did not substantially influence estuarine hydrodynamics. Nevertheless, on the estuary-side of the dam, the presence of the tidal power plant induced (i) a decrease in both tidal range and tidal prism, (ii) an increase of low water levels, and (iii) a decrease in both flood and ebb currents. Contrastingly, the region close to the structure reacted differently to plant operating modes, with an increase in flood currents (ebb currents) upstream of the sluice gates (downstream of the turbines). For both the natural condition and the artificially-induced hydrodynamic forcing due to the presence of the plant, numerical results showed that the Rance estuary mainly exhibits flood-dominant behavior, with a longer duration of falling than rising water and stronger peak flood currents than ebb currents. Spanning a period of approximately 60 years, this study presents a quantitative analysis of the influence of the tidal power station on the hydrodynamics in the Rance estuary, and its possible consequences for sediment dynamics. This approach is novel for this particular enclosed water body, characterized by the presence of a dam at its mouth and a lock at its uppermost limit.
机译:RANCE ETRATY是一个相对较小的低排放陡峭的RIA,位于法国北部的布列塔尼海岸,最大弹簧潮汐范围为13.5米。利用这种超级潮汐制度,世界上第一个和目前第二大运营潮汐电站在河口的嘴里建造,自20世纪60年代以来一直在运行。尽管脱卤水水平的抑制效果,但已经注意到了量化植物对河口内潮汐繁殖和不对称的影响。在该研究中,在该受试者影响的偏毒素系统中分析了流体动力学和潮汐波模式。开发了RACE口的二维深度平均数值模型。两种情景,没有潮汐发电厂,涉及大坝的施工和后施工浴室(分别为1957和2018)和当今条件方案,以突出床进化和潮汐发电站对流体动力学和潮汐不对称的影响。数值结果表明,没有结构,碱基进化并未基本上影响偏卤素流体动力学。尽管如此,在大坝的河口方面,潮汐发电厂的存在诱导(i)潮汐范围和潮汐棱镜的减少,(ii)增加低水平,(iii)两者的降低洪水和退潮电流。比较地,靠近该结构的区域不同地反应到植物操作模式,随着闸门栅极(涡轮机下游)上游的洪水电流(EBB电流)增加。对于由于植物的存在而产生的自然条件和人工诱导的流体动力学迫使,数值结果表明,RACE ZENTENT主要表现出洪水显性行为,较长的持续时间比上升的水和更强的洪水电流低于EBB电流。该研究涵盖了大约60年的时间,对潮汐发电站对RANCE口中流体动力学的影响以及对沉积物动力学的可能后果的定量分析。这种方法对于该特定封闭的水体是新颖的,其特征在于,在其嘴处存在坝和锁定的最上限。

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