The platform for modern completions teams.

Fewer screen-outs, faster history matches, and a decision trail your finance team can defend — powered by a physics-first workbench that runs from the office to the frac truck.

500+

Physics libraries

3,000+

Drift-guard tests

100%

Browser-native

Pilot access · No credit card · We won't spam you

Customer briefing · 2026

Loading a 3D visualization of a hydraulic-fracture simulation.

01 · The shift

Frac software is stuck in the past.

The operating environment has moved to real-time, multi-pad, data-rich decisions. The tooling still behaves like disconnected desktop files.

Black-box models

Hard to audit what ran, what was approximated, and why the recommendation changed.

Desktop bottlenecks

Single-seat workflows, local files, manual handoffs, slow collaboration.

Stale calibration

DFITs, microseismic, DAS, and live pressure rarely feed the next design automatically.

AI without physics

LLMs can summarize reports, but they do not steer the stage or defend the math.

02 · One platform

One workbench for the completions stack.

Wellbore Genius unifies design, live operations, physics-grounded AI, history matching, economics, and assurance. Fewer handoffs. Faster decisions. A single source of truth from planning to post-job review.

Design

Engineer the well

Builder, DFIT, non-planar 3D solver, frac options, proppant schedules, scenario diff + blame, design copilot.

Operate

Run the job live

WITSML / WebSocket / REST / DAS / DTS streams, plan-vs-actual, ISIP, Nolte-Smith, DAS → pump closed loop, screen-out advisory.

Calibrate

Match the rock

Rolling history match, thermo-poroelastic tensor, trust gates, field validation, fleet-prior tightening.

Deliver

Defend the decision

PDF, CSV, RESQML EPC + validator, WITSML, MRV, audit log, cell-level blame, model provenance card.

03 · What asset teams get

A new operating system for completions performance.

01

Faster design cycles

Run sensitivities, compare scenarios, and branch designs in one workbench — with a physics-grounded AI copilot inside ⌘K.

02

Lower stage risk

See plan-vs-actual drift, net-pressure behavior, and screen-out signals while the job is still controllable.

03

Pad-to-pad learning

Every DFIT, live stage, microseismic event, and post-job result tightens the next design.

04

Defensible decisions

Versioned inputs, cell-level blame, RESQML-validated exports, traceable model provenance, and exportable audit trails.

04 · The workflow

From last pad data to next pad advantage.

01

Import

Surveys, LAS, DFIT, microseismic, telemetry.

02

Build

Stage design, fluid, proppant, constraints.

03

Simulate

Scenario compare, sensitivities, economics.

04

Pump

Live overlay, ISIP, DAS/DTS, advisory.

05

Learn

History match, trust gates, next design.

Every cycle improves the next one: design → operate → calibrate → optimize → assure.

05.5 · Latest advances

Recently shipped, hard to match.

The competitor-gap backlog we closed this cycle — now live in the workbench.

Non-planar 3D fracture solver

Out-of-plane tilt, T-junction reconvergence, and a Results scoreboard competitors still treat as 2-D approximations.

Learn more

FDI bidirectional loop

Parent depletion Δσ_h feeds back into child-frac growth every timestep, with SWPM residual → pump-rate advisory.

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Live+ diagnostics pack

Step-down inverter, entry-friction P10/P50/P90, DFIT pre-closure classifier, and a fluid-front animator on /live-pumping.

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Driller's Copilot + Voice-First

Voice-driven advisories at the frac van — hold, rate-cut, and advance-stage calls without a keyboard.

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Thermo-poroelastic stress tensor

Full Δσ_h/H/v plus off-diagonal shear, driven by time-varying thermal patches for depleted-parent frac hits.

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EDFM + MINC hybrid solver

Embedded DFN and multiple-interacting-continua transfer in a single linear-system solve — near-fracture physics without an explicit DFN blow-up.

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Cross-well pressure tomography

Theis line-source superposition + LM inversion turns offset gauge pressures into a live inter-well permeability map.

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Microseismic moment-tensor inversion

Aki-Richards moment tensors, Vavryčuk ISO/DC/CLVD decomposition, and Brune-radius discs feed straight into the DFN.

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Multi-well pad artificial lift

Gas-lift · ESP · rod · plunger screening with pad-level compressor allocation on a single greedy water-fill.

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Rate-and-state induced-seismicity

Dieterich-Ruina stability classifier + traffic-light chip paired with existing Mohr slip-tendency for injection planning.

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Regulatory pack v2

Subpart W CH₄, OGMP 2.0 L4/5, CO ECMC CIDER, NM_OCD TLP, and CA LCFS exports wired into the existing MRV ledger.

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RESQML EPC export + validator

Petrel-ready EPC bundles with deterministic XML, CRS pointers, and structural validation before any file leaves the browser.

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DAS → pump closed loop

Live advisory hold, rate-cut, and advance-stage calls from DAS cluster efficiency while the pumps are running.

Learn more

06 · How we compare

A physics-grounded, browser-native, auditable decision layer.

Capability
Legacy desktop
Cloud dashboard
Wellbore Genius
Non-planar 3D fracture solver
partial
Yes
Full thermo-poroelastic stress tensor
Yes
RESQML EPC export + validator
partial
Yes
Versioned scenario diff with cell-level blame
partial
Yes
Live DAS → pump closed loop
partial
Yes
Physics-grounded AI copilot
Yes
Solver model card + drift-guards
limited
Yes
Browser-native, zero install
yes
Yes
CO₂ + induced-seismicity assurance
add-on
Yes

Let's run a pilot

Bring one pad. We'll bring the physics.

We're working directly with a small group of unconventional operators. Tell us where you frack and we'll be in touch.