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首页> 外文期刊>AIChE Journal >Optimal Design and Operations of Supply Chain Networks for Water Management in Shale Gas Production: MILFP Model and Algorithms for the Water-Energy Nexus
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Optimal Design and Operations of Supply Chain Networks for Water Management in Shale Gas Production: MILFP Model and Algorithms for the Water-Energy Nexus

机译:页岩气生产用水管理的供应链网络的优化设计和运行:水能联动的MILFP模型和算法

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摘要

The optimal design and operations of water supply chain networks for shale gas production is addressed. A mixed-integer linear fractional programming (MILFP) model is developed with the objective to maximize profit per unit freshwater consumption, such that both economic performance and water-use efficiency are optimized. The model simultaneously accounts for the design and operational decisions for freshwater source selection, multiple transportation modes, and water management options. Water management options include disposal, commercial centralized wastewater treatment, and onsite treatment (filtration, lime softening, thermal distillation). To globally optimize the resulting MILFP problem efficiently, three tailored solution algorithms are presented: a parametric approach, a reformulation-linearization method, and a novel Branch-and-Bound and Charnes-Cooper transformation method. The proposed models and algorithms are illustrated through two case studies based on Marcellus shale play, in which onsite treatment shows its superiority in improving freshwater conservancy, maintaining a stable water flow, and reducing transportation burden. (C) 2014 American Institute of Chemical Engineers
机译:提出了页岩气生产用水供应链网络的优化设计和运行。开发混合整数线性分数规划(MILFP)模型的目的是最大化单位淡水消耗的利润,从而优化经济性能和用水效率。该模型同时考虑了淡水源选择,多种运输方式和水管理方案的设计和运营决策。水管理选项包括处置,商业集中废水处理和现场处理(过滤,石灰软化,热蒸馏)。为了有效地全局优化由此产生的MILFP问题,提出了三种量身定制的求解算法:参数方法,重构线性化方法以及新颖的Branch-Bound-Bound和Charnes-Cooper变换方法。通过两个基于Marcellus页岩游动的案例研究说明了所提出的模型和算法,其中现场处理显示出其在改善淡水保护,保持稳定的水流和减轻运输负担方面的优势。 (C)2014美国化学工程师学会

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