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Unbalanced sediment transport by tidal power generation in Lake Sihwa

机译:Sihwa湖的潮汐发电不平衡沉积物运输

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An in-situ observational study was conducted to understand the sediment transport processes disturbed by the flood generation type of Sihwa tidal power plant (TPP). A surface mooring was deployed in Lake Sihwa (inside of TPP) to collect time-series data of the current velocity and suspended sediment concentration (SSC). A TPP with a capacity of 254 MW has four sequential phases (power generation estandbyedrainestandby) of operation. The SSC during power generation was one order of magnitude higher than that during drain, which led to heavily unbalanced sediment fluxes. The total residual sediment flux was always negative (into the lake), which was attributed to the mean advection processes associated with the discharge. Over 18 day mooring period, 78.28 tons m(-1) of sediment was delivered to the lake. The source of delivered sediment might be attributed to more local resuspension than the sediment inflow through the gates of TPP. Since the maximum sediment influx during power generation occurred within the water head difference of 4-6 m, the reduction in discharge rate can be a possible measure for solving the sediment accumulation within Lake Sihwa. (c) 2021 Elsevier Ltd. All rights reserved.
机译:进行了原位观察研究,以了解由Sihwa潮汐发电厂(TPP)的洪水生成类型受到干扰的沉积物运输过程。表面系泊部署在Sihwa湖(TPP内部)中部署,以收集当前速度和悬浮沉积物浓度(SSC)的时间序列数据。容量为254兆瓦的TPP有四个连续阶段(发电Estandbyedrainestandby)。在发电期间的SSC比漏极期间的一个量级高一阶数,这导致了严重不平衡的沉积物通量。总残留的沉积物通量总是负(进入湖泊),其归因于与出院相关的平均平均过程。超过18天的系泊时期,78.28吨M(-1)沉积物被送到湖中。交付沉积物的来源可能归因于通过TPP的栅极的沉积物流入的更加局部重悬。由于发电期间的最大沉积物流入在4-6米的水头差内发生,因此放电率的降低可以是解决Sihwa湖内沉积物积累的可能措施。 (c)2021 elestvier有限公司保留所有权利。

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