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Optimal water resources management and system benefit for the Marcellus shale-gas reservoir in Pennsylvania and West Virginia

机译:宾夕法尼亚州和西弗吉尼亚州的马塞勒斯页岩气藏的最佳水资源管理和系统效益

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A major concern associated with current shale-gas extraction is high consumption of water resources. However, decision-making problems regarding water consumption and shale-gas extraction have not yet been solved through systematic approaches. This study develops a new bilevel optimization problem based on goals at two different levels: minimization of water demands at the lower level and maximization of system benefit at the upper level. The model is used to solve a real-world case across Pennsylvania and West Virginia. Results show that surface water would be the largest contributor to gas production (with over 80.00% from 2015 to 2030) and groundwater occupies for the least proportion (with less than 2.00% from 2015 to 2030) in both districts over the planning span. Comparative analysis between the proposed model and conventional single-level models indicates that the bilevel model could provide coordinated schemes to comprehensively attain the goals from both water resources authorities and energy sectors. Sensitivity analysis shows that the change of water use of per unit gas production (WU) has significant effects upon system benefit, gas production and pollutants (i.e., barium, chloride and bromide) discharge, but not significantly changes water demands. (C) 2016 Elsevier B.V. All rights reserved.
机译:当前页岩气开采的主要关注是水资源的高消耗。但是,关于耗水量和页岩气提取的决策问题尚未通过系统的方法解决。这项研究基于两个不同级别的目标提出了一个新的双层优化问题:较低级别的用水需求最小化和较高级别的系统效益最大化。该模型用于解决宾夕法尼亚州和西弗吉尼亚州的实际案例。结果表明,在规划跨度中,地表水将是天然气生产的最大贡献者(2015年至2030年超过80.00%),而地下水所占比例最小(2015年至2030年不到2.00%)。提议的模型与常规的单级模型之间的比较分析表明,双级模型可以提供协调的方案,以全面实现水资源主管部门和能源部门的目标。敏感性分析表明,单位产气量(WU)用水量的变化对系统效益,产气量和污染物(即钡,氯化物和溴化物)的排放有重大影响,但对用水量的影响不显着。 (C)2016 Elsevier B.V.保留所有权利。

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