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Historic and modern approaches for discovery of abandoned wells for methane emissions mitigation in Oil Creek State Park, Pennsylvania

机译:宾夕法尼亚州石油溪流州立公园甲烷排放减排遗传井发现的历史和现代方法

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摘要

Background: Hundreds of oil wells were drilled along Oil Creek in Pennsylvania in the mid-1800s, birthing the modern oil industry. No longer in operation, many wells are now classified as abandoned, and, due to their age, their locations are either unknown or inaccurately recorded. These historic well sites present environmental, safety, and economic concerns in the form of possible methane leaks and physical hazards. Methods: Airborne magnetic and LiDAR surveys were conducted in the Pioneer Run watershed in Oil Creek State Park to find abandoned wells in a historically significant but physically challenging location. Wells were drilled in this area prior to modern geolocation and legal documentation. Although a large number of old wells were abandoned summarily without remediation of the site, much of the land area within Oil Creek State Park is now covered in trees and dense underbrush, which can obscure wellheads. The thick vegetation and steep terrain limited the possibility of ground-based surveys to easily find well sites for methane emissions studies. The data from remote sensing surveys were used to corroborate potential well locations from historic maps and photographs. Potential well sites were verified in a ground-based field survey and monitored for methane emissions. Results: Two historic photographs documenting oil activity in the late 1800s were georeferenced using a combination of magnetic and LiDAR data. LiDAR data, which were more useful in georeferencing and in field verification, identified 290 field locations in the Pioneer Run watershed, 86% of which were possible well sites. Sixty-two percent of the ground-verified wells remained unplugged and comprised the majority of leaking wells. The mean methane emissions factor for unplugged wells was 0.027 ± 0.099 kg/day, lower than other Appalachian Basin methane emissions estimates. Conclusions: LiDAR was used for the first time, in combination with an airborne magnetic survey, to reveal underground oil industry features and inform well identification and remediation efforts in difficult-to-navigate regions. In the oldest oil fields, where well casing has been removed or wood conductor casing was installed, historic photographs provide additional lines of evidence for oil wells where ground disturbances have concealed surface features. Identification of well sites is necessary for mitigation efforts, as unplugged wells emit methane, a potent greenhouse gas.
机译:背景:在1800年代中期,沿宾夕法尼亚州的石油溪流钻了数百种油井,分娩现代石油工业。不再在运营中,许多井现在被归类为废弃,而且由于他们的年龄,他们的位置是未知的或不准确的记录。这些历史悠久的井网站以可能的甲烷泄漏和物理危害的形式存在环境,安全和经济问题。方法:在石油溪流州公园的先锋流域进行空气磁性和激光雷达调查,在历史上显着但实际上具有挑战性的位置找到废弃的井。在现代地理位置和法律文件之前,在这方面钻井井。虽然没有对网站的修复总结了大量的旧井,但油条州公园内的大部分土地面积现在都被树木和茂密的挤压丛中覆盖,这可能会掩盖井口。厚厚的植被和陡峭的地形有限有可能的地面调查,以容易找到甲烷排放研究的良好网站。来自遥感调查的数据用于证实历史地图和照片的潜在井位置。在基于地面的田间调查中验证了潜在的井网站,并监测甲烷排放。结果:使用磁性和激光雷达数据的组合,在1800年代后期记录了18世纪后期的历史悠久的照片。 LIDAR数据在地理学和现场验证方面更有用,确定了Pioneer运行流域的290个现场位置,其中86%是可能的井网站。六十二百分之九个地面验证的井保持毫无堵,并包括大多数泄漏井。拔除孔的平均甲烷排放因子为0.027±0.099公斤/天,低于其他阿巴拉契亚盆地甲烷排放估计。结论:LIDAR首次使用,与空中磁性调查相结合,揭示地下石油行业特征,并在难以导航地区识别识别和修复努力。在最古老的油田中,在已经拆除了井外壳或安装了木材导体外壳,历史照片为油井提供了额外的索引,其中地干扰具有隐藏的表面特征。由于拔除井发出甲烷,有效的温室气体,衡量井网站的识别是必要的。

著录项

  • 来源
    《Journal of Environmental Management》 |2021年第15期|111856.1-111856.12|共12页
  • 作者单位

    Geologic and Environmental Systems Directorate National Energy Technology Laboratory Department of Energy 626 Cochran Mill Rd Pittsburgh PA 15236 USA Leidos Research Support Team National Energy Technology Laboratory Pittsburgh PA 15236 USA;

    Geologic and Environmental Systems Directorate National Energy Technology Laboratory Department of Energy 626 Cochran Mill Rd Pittsburgh PA 15236 USA Leidos Research Support Team National Energy Technology Laboratory Pittsburgh PA 15236 USA;

    Geologic and Environmental Systems Directorate National Energy Technology Laboratory Department of Energy 626 Cochran Mill Rd Pittsburgh PA 15236 USA Leidos Research Support Team National Energy Technology Laboratory Pittsburgh PA 15236 USA;

    Geologic and Environmental Systems Directorate National Energy Technology Laboratory Department of Energy 626 Cochran Mill Rd Pittsburgh PA 15236 USA Leidos Research Support Team National Energy Technology Laboratory Pittsburgh PA 15236 USA;

    Geologic and Environmental Systems Directorate National Energy Technology Laboratory Department of Energy 626 Cochran Mill Rd Pittsburgh PA 15236 USA;

    Geologic and Environmental Systems Directorate National Energy Technology Laboratory Department of Energy 626 Cochran Mill Rd Pittsburgh PA 15236 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    LiDAR; Magnetoraetry; Oil and natural gas; Abandoned wells; Historical photos; Greenhouse gases; Methane;

    机译:丽娜;磁铁;石油和天然气;被遗弃的井;历史照片;温室气体;甲烷;
  • 入库时间 2022-08-18 23:02:29

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