Expert Industry Insights

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Qube’s Data Driven Approach to Optimizing Sensor Placement

Strategic sensor placement is critical for reliable, real-time methane detection. Detection depends not just on technology, but on understanding wind behavior, emission sources, and site constraints. 

Qube’s deployment methodology uses historical wind data, source mapping, and MILP-based optimization to design sensor arrays that maximize detection coverage and minimize false negatives. 

The Qube deployment tool turns this methodology into a practical workflow—helping operators visualize trade-offs, configure sensor layouts, and balance detection accuracy with budget. 

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How Qube’s Automated Alarms Caught a Cow at the Wellsite

A Colorado operator using Qube’s continuous methane monitoring system received an automated alert about an unexpected emissions spike at a wellhead. Upon investigation, the field team discovered the source: a cow had rubbed against the equipment and opened a manual ball valve, unintentionally releasing gas. The team quickly shut the valve, restored normal readings, and installed fencing to prevent similar incidents. Thanks to Qube’s real-time alerts, the issue was resolved within an hour—without downtime or emissions escalation.

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QB Energy and Qube Technologies Resolve Thief Hatch Leak Leading to 97% Emissions Reduction

“Another Win for Continuous Monitoring”

-Air Compliance Manager-QB Energy

Missed by AVO, caught by continuous monitoring. When Qube Technologies flagged elevated methane at a QB Energy tank site, field teams were able to locate and fix a leaking thief hatch—achieving a 97% emissions drop in hours. This case study shows how real-time continuous monitoring data and a fast response can keep operations running smooth.

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