Successful Integration of UAV Aeromagnetic Mapping with Terrestrial Methane Emissions Surveys in Orphaned Well Remediation

Author:

de Smet Timothy S.1,Nikulin Alex2,Balrup Nicholas3,Graber Nathan4

Affiliation:

1. Aletair LLC, Binghamton, NY 13701, USA

2. Department of Environmental Sciences, Binghamton University, Binghamton, NY 13902, USA

3. Atlas Technical Consultants, Austin, TX 78738, USA

4. New York State Department of Environmental Conservation, Albany, NY 12233, USA

Abstract

Orphaned oil and gas wells represent an important environmental and economic development concern in areas where historical energy exploration and production activity pre-dated regulations on well abandonment documentation practices. From an economic development perspective, these wells pose a subsurface risk to infrastructure development, while the environmental impact of orphaned wells is largely associated with uncontrolled emissions of both fluids and gasses, most notably atmospheric methane. Often neglected in regulatory oversight, methane emissions from orphaned wells contribute to global greenhouse gas concentrations and without proper mitigation, these emissions contribute to and further exacerbate global climate change processes. An inherent challenge of remediation efforts targeting orphaned wells is the consistent observation that only a fraction of located and identified wells produce the majority of methane emissions, yet no methodology exists to effectively separate out heavy emitters without visiting and assessing each and every well. We demonstrate that emitting wells have certain defined characteristics largely pertaining to the presence and integrity of metal casing to the surface, which can be distinguished as an organized high intensity magnetic anomaly in low-altitude UAV-based aeromagnetic surveys. In this paper, we present a database of identified and ground-truthed wellsites correlated to their magnetic signatures and provide a roadmap to initial prioritization of wellsites for subsequent remediation activities that can be implemented in complex environments where other survey options are not feasible. In a regulatory environment where resources dedicated to wellsite remediation are limited, we propose implementing this methodology as a key element of a targeted approach to wellsite prioritization for subsequent remediation activity.

Funder

State University of New York Technology Accelerator Fund

National Science Foundation I-Corps program

Economic Development Administration

New York State Electric and Gas Ignition Economic Development Innovation and Entrepreneurship Program

State University of New York at Binghamton

Harpur College Faculty Research Grant

de Smet

Publisher

MDPI AG

Subject

General Earth and Planetary Sciences

Reference25 articles.

1. Historical Analysis of Oil and Gas well plugging in New York: Is the Regulatory System Working?;Bishop;New Solut.,2013

2. Sapunov, V.A., Narkhov, E.D., Fedorov, A.L., Sergeev, A., and Denisov, A.Y. (2015, January 16–25). Ground overhauser DNP geophysical devices. Proceedings of the International Multidisciplinary Scientific GeoConference: SGEM, Albena, Bulgaria.

3. Methods and challenges to locating legacy wells in western Pennsylvania: Case study at Hillman State Park;Sams;Environ. Geosci.,2017

4. Geophysical helicopter-based magnetic methods for locating wells;Kaminski;Geophysics,2018

5. Versteeg, R., McKay, M., Anderson, M., Johnson, R., Selfridge, B., and Bennett, J. (2007). Feasibility Study for an Autonomous UAV—Magnetometer System.

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