
The Intelligence Layer for Geothermal Stimulation
SAFA transforms surface acoustic response into insight on injection distribution, perforation efficiency, and near-wellbore connectivity. Understand how fluid enters the formation, how evenly it is distributed, and whether those entry points connect to transmissive fracture pathways, without placing measurement hardware downhole.

~$1M
added NPV per well from measured Uniformity Index improvement
$150K+
saved per well catching plug leaks intra-stage
Productive geothermal stages require both fluid entry and connected flow paths.
Core Geothermal Insights
See how each stage is actually taking and distributing fluid.

Perforation Efficiency
Quantifies the percentage of entry points actively accepting fluid at the time of measurement.

Flow Distribution and Uniformity
Shows where stimulation fluid is entering the formation, identifies underutilized portions of the lateral, and quantifies how evenly fluid is distributed using the Uniformity Index.

Connectivity
Evaluates whether accepting entry points are connected to transmissive near-wellbore fracture pathways.

Pipe Friction
Quantifies pressure loss through the wellbore, separating casing-related friction from pressure associated with fluid entry and stimulation response.
Capture
Surface-mounted sensors record high-frequency acoustic response during stimulation without exposing measurement hardware to harsh downhole conditions.
Resolve
Physics-based analysis separates wellbore and entry-point response to quantify friction, active fluid entry, and injection distribution.
Evaluate
Entry performance and connectivity are evaluated together to compare stages, assess stimulation effectiveness, and identify design-dependent differences.
High-Confidence Measurement vs. Assumed Variables.
Turn stage response into geothermal-specific design learning.
Compare cluster design, rate per cluster, and stimulation strategy against measured entry performance, distribution uniformity, and connectivity. The resulting dataset helps identify which designs create more effective reservoir access and establishes benchmarks for future stages and wells.
Built on 100,000+ Stages of Real-World Data.
Seismos owns the industry's only continuously growing repository of in-well acoustic measurement at 1,000 Hz.
Get Started Today
Schedule a technical demo to see how surface acoustic evaluations are built for geothermal conditions.
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