首页> 外文期刊>International journal of river basin management: JRBM >Impacts of flushing time and intrusion length on electricity production from salinity gradient energy (SGE) in the estuaries
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Impacts of flushing time and intrusion length on electricity production from salinity gradient energy (SGE) in the estuaries

机译:冲刷时间和侵入长度对河口盐度梯度能发电的影响

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摘要

Salinity gradient energy (SGE) is the energy that can be obtained from the mixing entropy of two solutions with a different salt concentration. This energy could be used for electricity production by some methods (e.g. Reverse Electro-Dialysis (RED); Pressure Retarded Osmosis (PRO) horizontal ellipsis , etc.). Estuaries or Delta, as zones for mixing of fresh water from rivers and saltwater from the sea, has a large power potential of this renewable energy. The aim of this study is to investigate the effects of two parameters namely: Flushing Time (FT) and Intrusion Length (IL) on energy potential due to salinity gradient of the selected estuary, i.e. Sebou estuary (Morocco) (i.e. is used as an application site), the energy calculation is based on thermodynamic equations. The results showed that both parameters (FT and IL) have a significant influence on the salinity gradient energy (SGE). According to the calculation done at High Water Slack (HWS) condition, and the average river discharge in the Sebou estuary, the IL range from 11.5 to 53.9 km at HWS. In addition, the FT varies from 2.6 to 13.9 days for a river discharge ranges from 13 to 166 m(3)s(-1). The effects of these parameters were to reduce the amount of extractable energy from salinity gradient energy as can be seen in the estuary. For an interval of 13.9 days at HWS, salinity gradient energy decreases 14.3. May be these results can used as a starting point to determined an optimal intake points related to the design of a PRO or RED system in the estuary system.
机译:盐度梯度能量(SGE)是从两种具有不同盐浓度的溶液的混合熵中获得的能量。这种能量可以通过某些方法用于发电(例如逆向电渗析 (RED);压力延迟渗透(PRO)水平椭圆等)。河口或三角洲作为河流淡水和海洋咸水混合的区域,这种可再生能源具有巨大的电力潜力。本研究的目的是研究两个参数,即冲刷时间(FT)和侵入长度(IL)由于所选河口(即Sebou河口(摩洛哥)(即用作应用地点)的盐度梯度而对能量潜力的影响,能量计算基于热力学方程。结果表明,FT和IL参数均对盐度梯度能(SGE)有显著影响。根据在高水位松弛(HWS)条件下进行的计算,以及Sebou河口的平均河流流量,HWS的IL范围为11.5至53.9 km。此外,河流流量范围为 13 至 166 m(3)s(-1),FT 从 2.6 天到 13.9 天不等。这些参数的作用是减少从盐度梯度能量中提取的能量,如河口所示。在HWS的13.9天间隔内,盐度梯度能量下降了14.3%。这些结果可以作为确定与河口系统中PRO或RED系统设计相关的最佳进水点的起点。

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