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Stay connected to the intelligence layer of energy operations. Explore our archive of newsletters for the latest in acoustic sensing, physical AI, and field-proven case studies. Get actionable insights and engineering commentary delivered straight to your inbox to help you drive performance and reduce operational costs.
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NEWSLETTER
Jul 2026
Perforation Efficiency is a Production Metric
We determined that acoustically derived perforation efficiency can serve as a scalable, operationally actionable completion diagnostic.
NEWLETTER
Jul 2026
The Casing Tradeoff: Upfront Cost vs. Frac Efficiency
Increasing vertical casing diameter from 5.5-inch to 6-inch significantly reduces pipe friction, improving overall frac efficiency and offsetting higher upfront costs.
NEWLETTER
Jun 2026
What’s Really Driving Your Frac Performance? Insights from a Multi-Bench Montney Study
A multi-bench Montney study reveals how targeted adjustments to perforation strategy, casing hardware, and flow velocity directly optimize cluster distribution and drive well economics.
NEWLETTER
Jun 2026
Taking Charge of a Controllable Variable: Is your perforating gun costing you?
The specific perforating charge selected has a direct, measurable impact on perforation efficiency and cluster uniformity, significantly affecting overall well economics.
NEWLETTER
May 2026
Real-Time Completion Logic from Same-Well Measurements
Seismos Acoustic Friction Analysis (SAFA) enables scalable closed-loop fracturing workflows by utilizing high-frequency surface pressure data to separate friction and provide real-time stage diagnostics.
NEWLETTER
May 2026
What’s Hiding in Your Treating Pressure? How SAFA Separates Pipe and Perf Friction
Direct separation of pipe and perforation friction using SAFA eliminates model-driven errors, revealing accurate, real-time stage behavior directly from treating pressure.
NEWLETTER
Apr 2026
How SAFA Replaces Erroneous EHD Assumptions to Unlock Superior Frac Stage Performance
Seismos Acoustic Friction Analysis (SAFA) utilizes surface pressure data to accurately calibrate the initial perforation flow area, correcting spec sheet errors to enhance stage diagnostics and overall well performance.
NEWLETTER
Apr 2026
Flow Velocity Is the Primary Control Parameter for Cluster Uniformity
Flow velocity serves as the primary control parameter for achieving cluster uniformity.
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