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GIS-based geospatial infrastructure of water resource assessment for supporting oil shale development in Piceance Basin of Northwestern Colorado

机译:基于GIS的水资源评估地理空间基础设施,支持西北科罗拉多皮森斯盆地的油页岩开发

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摘要

Oil shale deposits of the Green River Formation (GRF) in Northwestern Colorado, Southwestern Wyoming, and Northeastern Utah may become one of the first oil shale deposits to be developed in the U.S. because of their richness, accessibility, and extensive prior characterization. Oil shale is an organic-rich fine-grained sedimentary rock that contains significant amounts of kerogen from which liquid hydrocarbons can be produced. Water is needed to retort or extract oil shale at an approximate rate of three volumes of water for every volume of oil produced. Concerns have been raised over the demand and availability of water to produce oil shale, particularly in semiarid regions where water consumption must be limited and optimized to meet demands from other sectors. The economic benefit of oil shale development in this region may have tradeoffs within the local and regional environment. Due to these potential environmental impacts of oil shale development, water usage issues need to be further studied. A basin-wide baseline for oil shale and water resource data is the foundation of the study. This paper focuses on the design and construction of a centralized geospatial infrastructure for managing a large amount of oil shale and water resource related baseline data, and for setting up the frameworks for analytical and numerical models including but not limited to three-dimensional (3D) geologic, energy resource development systems, and surface water models. Such a centralized geospatial infrastructure made it possible to directly generate model inputs from the same database and to indirectly couple the different models through inputs/outputs. Thus ensures consistency of analyses conducted by researchers from different institutions, and help decision makers to balance water budget based on the spatial distribution of the oil shale and water resources, and the spatial variations of geologic, topographic, and hydrogeological characterization of the basin. This endeavor encountered many technical challenging and has not been done in the past for any oil shale basin. The database built during this study remains valuable for any other future studies involving oil shale and water resource management in the Piceance Basin. The methodology applied in the development of the CIS based geospatial infrastructure can be readily adapted for other professionals to develop database structure for other similar basins.
机译:科罗拉多州西北部,怀俄明州西南部和犹他州东北部的绿河组(GRF)的油页岩矿床可能因其丰富,可及性和广泛的先验特征而成为美国最早开发的油页岩矿床之一。油页岩是富含有机物的细颗粒沉积岩,其中含有大量的干酪根,可以从中生产液态烃。对于每生产一体积的石油,大约需要三体积的水来蒸馏或提取油页岩。人们对生产油页岩的水的需求和可用性提出了关切,特别是在半干旱地区,必须限制和优化用水以满足其他部门的需求。该地区油页岩开发的经济利益可能会在当地和区域环境中进行权衡。由于油页岩开发的这些潜在环境影响,需进一步研究用水问题。该研究的基础是油页岩和水资源数据的全流域基线。本文着重于设计和构建集中化的地理空间基础架构,以管理大量与油页岩和水资源相关的基准数据,并建立分析和数值模型的框架,包括但不限于三维(3D)地质,能源开发系统和地表水模型。这样的集中式地理空间基础架构使得可以直接从同一数据库生成模型输入,并可以通过输入/输出间接耦合不同的模型。因此,可以确保来自不同机构的研究人员进行的分析具有一致性,并帮助决策者根据油页岩和水资源的空间分布以及盆地的地质,地形和水文地质特征的空间变化来平衡水资源预算。这项工作遇到了许多技术挑战,过去任何油页岩盆地都没有做到。在这项研究期间建立的数据库对于在Piceance盆地进行的任何其他有关油页岩和水资源管理的未来研究仍然有价值。在基于CIS的地理空间基础设施开发中采用的方法可以很容易地适合其他专业人员开发其他类似盆地的数据库结构。

著录项

  • 来源
    《Computers & geosciences》 |2015年第4期|44-53|共10页
  • 作者单位

    Department of Geology and Geological Engineering, Colorado School of Mines, 1516 Illinois Street, Golden, CO 80401, USA;

    Department of Geology and Geological Engineering, Colorado School of Mines, 1516 Illinois Street, Golden, CO 80401, USA;

    Energy Recovery and Sustainability Department, Idaho National Laboratory, P.O. Box 1625, Idaho Falls, ID 83415, USA;

    Department of Civil and Environmental Engineering, Colorado School of Mines, 1500 Illinois Street, Golden, CO 80401, USA;

    Oklahoma Geological Survey, University of Oklahoma, 100 E. Boyd, Norman, OK 73019, USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Green River Formation; 3D Geologic Model; Retort; Arc Hydro;

    机译:绿河形成;3D地质模型;反驳;电弧水力发电;
  • 入库时间 2022-08-17 13:31:26

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