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首页> 外文期刊>Chemical Engineering Research & Design: Transactions of the Institution of Chemical Engineers >Optimal design of shale gas supply chain network considering MPC-based pumping schedule of hydraulic fracturing in unconventional reservoirs
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Optimal design of shale gas supply chain network considering MPC-based pumping schedule of hydraulic fracturing in unconventional reservoirs

机译:考虑基于MPC的液压压裂泵送时间表的页岩气供应链网络最优设计

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摘要

Several approaches have been developed to design shale gas supply chain network (SGSCN) in an economically viable manner, but the connection between hydraulic fracture geometry, shale gas production, and wastewater recovery has not received much attention. Specifically, the final fracture geometry in unconventional reservoirs significantly affects shale gas production rate and it indirectly determines the amount of recovered wastewater. To take into account the relations among hydraulic fracturing jobs, wastewater generation and management, and shale gas production and management, we focus on the development of a novel framework that integrates a model predictive control (MPC)-based pumping schedule of hydraulic fracturing and a SGSCN model. Based on this developed framework, the optimal SGSCN configuration, which maximizes the overall profit, is determined by solving a mixed integer linear programming problem. The proposed SGSCN design framework is compared to the case when the same SGSCN model is integrated with a suboptimal pumping schedule like Nolte's pumping schedule. The overall profit of the former is 4.49% higher than that of the latter. Published by Elsevier B.V. on behalf of Institution of Chemical Engineers.
机译:已经开发了几种方法以经济上可行的方式设计页岩气供应链网络(SGSCN),但液压断裂几何形状,页岩气产量和废水回收之间的连接并未受到很多关注。具体地,非传统水库中的最终断裂几何形状显着影响页岩气产量,间接地确定回收的废水的量。考虑到液压压裂岗位工作,废水生成和管理以及页岩气系生产和管理的关系,我们专注于开发一种新颖的框架,该框架集成了模型预测控制(MPC)的液压压裂泵送时间表和A. SGSCN模型。基于该开发的框架,通过求解混合整数线性规划问题来确定最大化整体利润的最佳SGSCN配置。将所提出的SGSCN设计框架进行比较与相同的SGSCN模型与诸如Nolte的泵送计划这样的次优泵送时间表集成的情况进行了比较。前者的整体利润比后者的整体利润高4.49%。 elsevier b.v出版。代表化学工程师机构。

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