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Validation of a turbulence numerical 3D model for an open channel with strong tidal currents

机译:具有强潮流的开放通道湍流数值3D模型的验证

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Turbulence characteristics of tidal currents, essential to predict the performance of tidal stream energy converters, present a significant spatial and temporal variability. Spatial fluctuations can occur within an area of the order of m2, mainly due to the geomorphologic characteristics of the area. Temporally due to ebb-flood asymmetries and also the effect of meteorological agents such as wind and waves, especially at shallower depths. This paper introduces an FVCOM (Finite Volume Community Ocean Model) numerical model validated with current velocity and turbulent kinetic energy data from three measuring devices installed in the Tanoura and Naru Straits (Goto Islands), one of them covering different vertical layers of the water column, confirming its capacity to estimate turbulence conditions at various depths when these are mostly generated by tidal currents. Correlation coefficients obtained under these conditions at the three locations are higher than 0.84 and 0.8 for current velocity and turbulent kinetic energy, respectively. Results from the validated model show that at deeper layers, TKE is primarily determined by the bathymetry characteristics of the area, while for middle and shallower depths the coastline shape is more important. (C) 2020 Elsevier Ltd. All rights reserved.
机译:潮流的湍流特性,预测潮汐流能量转换器的性能必不可少,具有显着的空间和时间可变性。空间波动可能发生在M2的阶数内,主要是由于该区域的地貌特征。暂时由于EBB - 洪水不对称,并且气象代理如风和波浪的影响,尤其是在较浅的深处。本文介绍了在Tanoura和Naru Stastits(Goto Islands)中的三个测量装置的当前速度和湍流动能数据验证的FVCOM(有限卷社区海洋模型)数值模型,其中一家覆盖水柱不同的垂直层,当这些主要由潮流产生时,确认其在各种深度处估计湍流条件的能力。对于当前速度和湍流动能,在三个位置的这些条件下获得的相关系数分别高于0.84和0.8。验证模型的结果表明,在更深层面,TKE主要由该地区的沐浴特性决定,而对于中间和较浅的深度,海岸线形状更为重要。 (c)2020 elestvier有限公司保留所有权利。

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