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A singular, curated repository of high-frequency acoustic data, field-proven methodology, and engineering deep dives. Access the full spectrum of our subsurface diagnostics and platform milestones below.
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CASE STUDY
Jun 2026

Closed-Loop Fracturing: First Field Deployment Results
First field deployment of a closed-loop fracturing workflow where live subsurface feedback guided real-time response during stimulation. Stages with CLF intervention showed 12% perforation efficiency degradation vs. 18% without — a 33% relative improvement.
CASE STUDY
Apr 2026

Multi-Well Pad Optimization: Uniformity Index Improvement
Across a 20-well Permian program, SAFA-guided completions improved average Uniformity Index from 0.42 to 0.74 — a 76% relative improvement in cluster flow distribution. Wells with UI above 0.7 showed 2.5% higher 12-month cumulative production per 0.1 UI increment.
PRESS RELEASE
Aug 2025

ProFrac Holding Corp. and Seismos to Introduce Supervised and Unsupervised Closed-Loop Fracturing Across All U.S. Basins
ProFrac (NASDAQ: ACDC) and Seismos announced a strategic partnership for CLF, now available across all major U.S. basins. First large-scale deployment of an operator-validated, real-time QC system enabling fully automated closed-loop fracturing.
PRESS RELEASE
Oct 2024
TECHNICAL PAPER
Jan 2026

SAFA: Consistent Execution Beats Perfect Design
Every shale operator has strong completion designs. Yet even the best designs produce inconsistent results. Stage-to-stage and well-to-well variability remain an unavoidable reality. Seismos measures subsurface performance in real time and applies clear, operator-approved logic to guide execution decisions during the job.
TECHNICAL PAPER
Jan 2026

Machina: A Unified Design-to-Execution Well Optimization Suite with Real-Time Closed-Loop Fracturing
Hydraulic fracturing optimization has historically been segmented across disconnected workflows including pre-stage design, field execution, post-stage diagnostics, and historical analysis. Machina is an integrated well optimization suite that unifies treatment design, earth model enablement, real-time subsurface measurement, intra-stage intervention, frac hit detection and mitigation, live pad-level operational tracking, historical performance analytics, supply chain and cost optimization, and real-time water quality analysis.
TECHNICAL PAPER
Feb 2026

Employing Live Subsurface Measurements to Support Supervised and Autonomous Intelligent Decision-Making While Fracturing
Historically, real-time changes during fracturing treatments have primarily been limited to avoiding or controlling screenouts using only the guidance of surface treating pressure. This paper introduces a workflow that utilizes live surface-based measurements of perforation friction, perforation efficiency, and Uniformity Index to support intelligent decision-making based on subsurface data during a fracture stage.
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