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Synthesis and Design of Interplant Water Networks using Direct Recycling Techniques within Industrial Cities

机译:工业城市直接回收技术的综合与植物网络

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An optimization framework that considers direct recycling strategies for wastewater reuse amongst multiple processing facilities is utilized in this work. The approach considers industrial city arrangements, by capturing water source and sink locations, available service corridors for water transport, as well as any barriers that exist in between. Shortest source-to-sink routings were determined according to Dijkstra's Algorithm, which is a path search algorithm that produces a shortest path tree for determining the best route. This greatly facilitates finding optimum distances for the planning of cost-effective water piping layouts. Moreover, a systems water integration approach in the form of direct recycling was utilized to make decisions on optimal stream allocation for source-to-sink options within the plot. In order to illustrate the proposed methodology, a case study has been carried out that involves an industrial city layout consisting of five water sources, five water sinks, and a total of three plants. Efficient water allocation strategies that employ shortest source-to-sink routes were obtained, thus allowing cost-effective water network designs to be achieved. Moreover, pressure drops within the pipe segments of the water network were also accounted for.
机译:在这项工作中利用了一种优化框架,考虑用于污水污水再利用的污水再利用策略。该方法通过捕获水源和水槽位置,可用的水路运输服务走廊以及与之间存在的任何障碍来考虑工业城市安排。根据Dijkstra的算法确定最短的源到汇路由,这是一个路径搜索算法,它产生最短路径树,用于确定最佳路径。这极大地促进为规划成本效益的水管布局而找到最佳距离。此外,利用了直接回收形式的系统水集成方法,为图中的源点汇量选项进行了决策。为了说明所提出的方法,已经进行了案例研究,涉及由五个水源,五个水槽组成的工业城市布局,以及共有三种植物。获得了采用最短源区路线的有效水分配策略,从而允许实现具有成本效益的水网络设计。此外,还占了水网络的管段内的压降。

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