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February 23, 2026The Science of The Total Environment0 citationsOpen Access

Continuous measurements reveal wind and temperature affect orphan well methane emissions on the Kevin-Sunburst Dome, Montana

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NGNicholas J. GianoutsosKHKarl HaaseJBJustin E. Birdwell

Key Points

  • To investigate the influence of wind and temperature on methane emissions from leaking orphan wells in Montana.
  • Monitored emissions from 15 orphan wells continuously for up to 452 hours.
  • Assessed variability in emission rates during different wind and temperature conditions.
  • Measured emissions under both closed and unrestricted flow conditions.
  • Methane emission rates ranged from non-detectable to 2.7 kg/h, averaging 211 g/h for leaking wells.
  • Emission fluctuations were observed, with rates varying by an order of magnitude within hours.
  • Wind significantly affected emission rates, with some wells showing a fourfold increase during higher winds.

Abstract

Fifteen leaking orphan wells on the Kevin-Sunburst Dome in northern Montana had emission rates that were affected by surface winds and diurnal temperature swings based on continuous monitoring data. Some wells showed correlating spikes in emissions when temperatures changed or wind speed increased while others demonstrated independent flow behavior despite being drilled into the same reservoir and located only a few hundred meters apart. Time-weighted mean methane emission rates ranged from non-detectable levels up to 2.7 kg/h in their as-discovered conditions, with leaking wells averaging 211 g/h. Emissions were measured continuously for up to 452 h per well during monitoring, revealing that leak rates can fluctuate by an order of magnitude within hours. Fluctuations in emission rates often synchronized between wells with overlapping emission measurement intervals, suggesting weather conditions, such as temperature and wind, affect emission rates (up to a factor of 4) with the most relevant factor being the effect of wind on wells with open holes. Additionally, this study presents the first methane emissions measured from an orphan well in two distinct conditions: as initially discovered (closed leaking valve, 2.7 kg/h) and again under unrestricted flow conditions (open valve, 11.8 kg/h), illustrating the maximum unobstructed leak rate and quantifying the constraints restricted leaking wells can have on emissions compared to open holes. • Legacy orphan wells in northern Montana are leaking methane into the atmosphere. • Continuous measurements were collected to assess emission variability over time. • We find emissions fluctuate hourly, contradicting previous assumptions of constancy. • Weather conditions affect emissions with wind and temperature being most apparent. • Methane emission budgets could improve by including weather and emission variability.

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Cite This Study

Gianoutsos et al. (2026) studied this question.

synapsesocial.com/papers/699bee551c6c6bad5397fe7dhttps://doi.org/10.1016/j.scitotenv.2026.181577
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