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Development of graphical user interface tools for optimal fluid management in shale oil and gas operations.

机译:开发图形用户界面工具,以在页岩油气运营中进行最佳的流体管理。

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摘要

Oil and gas extraction is increasing in many parts of the country due to the use of hydraulic fracturing. Hydraulic fracturing is a technique to extract oil and gas from shale rock formations that is characterized by the input of large quantities of pressurized water into horizontal wells. The high pressure fluid generates cracks in the shale formation that release the gas, oil, and other constituents into the fluid. The fluid that returns to the surface is characterized as flowback or produced water. Flowback is defined as the water that returns to the surface prior to the initiation of oil or gas production and produced water refers to the post-production return water. There is widespread public and government agency interest in assessing the quantity and quality of water used in hydraulic fracturing to ensure environmental protection and public health.;Optimal water management in hydraulic fracturing has the potential to (1) reduce freshwater use, (2) increase produced water recycle, (3) reduce energy expenditures from water transport, and (4) enhance safety and environmental protection in the development of natural gas and other petroleum resources. Improved management of water can enhance safety and environmental protection by minimizing impacts such as road damage, truck traffic, noise, air pollution, water pollution and landscape disturbance. Interactive management tools allow operators to increase water reuse and minimize the environmental risks of hydraulic fracturing. This research entails developing graphical user tools to optimize water management in shale oil and gas operations. The tools that were developed include (1) a Water Production Modeling Tool, (2) a Water Use Calculator, and (3) a Water Quality Tool. The tools are MATLAB executable files that can run without a MATLAB license. The output of these tools will provide information for users to predict wastewater production, water demand needed for treatment, and analyze water quality components such as contaminant concentrations.
机译:由于使用水力压裂技术,该国许多地区的石油和天然气开采量正在增加。水力压裂是一种从页岩质中提取石油和天然气的技术,其特征在于向水平井中输入了大量的加压水。高压流体在页岩地层中产生裂缝,将气体,油和其他成分释放到流体中。返回地面的流体的特征是回流或采出水。返排定义为在开始生产石油或天然气之前返回地面的水,采出水是指生产后的回水。公共和政府机构对评估水力压裂用水的量和质量以确保环境保护和公众健康具有广泛的兴趣;水力压裂的最佳水管理有可能(1)减少淡水的使用,(2)增加采出水循环利用;(3)减少水运输的能源消耗;(4)加强天然气和其他石油资源开发的安全性和环境保护。通过减少对道路的损害,卡车交通,噪声,空气污染,水污染和景观干扰等影响,改善水管理可以提高安全性和环境保护。交互式管理工具使操作员能够增加水的回用率,并将水力压裂的环境风险降至最低。这项研究需要开发图形用户工具,以优化页岩油气运营中的水管理。开发的工具包括(1)水生产建模工具,(2)水使用计算器和(3)水质量工具。这些工具是可以在没有MATLAB许可证的情况下运行的MATLAB可执行文件。这些工具的输出将为用户提供信息,以预测废水的产生,处理所需的水需求以及分析水质成分,例如污染物浓度。

著录项

  • 作者

    Shoaei, Farnaz.;

  • 作者单位

    Colorado State University.;

  • 授予单位 Colorado State University.;
  • 学科 Civil engineering.;Environmental engineering.
  • 学位 M.S.
  • 年度 2015
  • 页码 97 p.
  • 总页数 97
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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