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Brine discharge from desalination plants:a modeling approach to an optimized outfall design

机译:海水淡化厂的盐水排放:优化排污口设计的建模方法

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Desalination was for long considered a technology too expensive to adopt in most arid countries except those with large reserves of fossil fuels and affluent economies.Recent advances in desalination technology have abolished this old paradigm and have increased its market share in many arid and semi-arid countries.Nevertheless,the introduction of a desalination plant will inevitably be associated with several potential adverse environmental impacts particularly on the marine ecosystem as a result of effluent(brine)discharge.This paper focuses on simulating the dispersion of the brine plume in the marine environment by considering the heated effluent from a desalination-power plant in the Gulf region.Various scenarios were defined and simulated using the CORMIX model to compare the mixing behavior and efficiency of surface,submerged single-port as well as submerged multi-port outfalls taking temperature variations as an indicator.The simulations capitalized on the inadequacy of widely used surface channel discharges in achieving the required dilution rates capable of minimizing potential environmental impacts on the Gulf.A sensitivity analysis was conducted to identify most influencing input parameters on simulation results as well as evaluate management options to minimize adverse impacts of desalination-related marine discharge.
机译:长期以来,海水淡化一直被认为是一种技术,在拥有大量化石燃料和富裕经济体的大多数干旱国家中,其采用成本太高。海水淡化技术的最新进展废除了这种旧模式,并增加了其在许多干旱和半干旱地区的市场份额但是,引入海水淡化厂不可避免地会带来若干潜在的不利环境影响,特别是由于废水(盐水)排放而对海洋生态系统造成的影响。本文着重模拟盐水羽流在海洋环境中的扩散。通过考虑海湾地区海水淡化发电厂的加热废水。使用CORMIX模型定义并模拟了各种情景,以比较表面温度,淹没单端口以及淹没多端口排污口的混合行为和效率。变化作为指标。模拟利用了广泛的不足使用表面通道排放物以达到所需的稀释率,以最大程度地减少对海湾的潜在环境影响。进行了敏感性分析,以识别模拟结果中影响最大的输入参数,并评估管理方案以最大程度降低与海水淡化相关的海洋排放物的不利影响。

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