Wellbore Genius
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Well risk over time

One well's injection plan, re-run at 20 elapsed times with the same containment model the site and scenario risk screens use. Nothing is interpolated and nothing is repaired — an invalid plan is refused with its reasons.

Well and plan
Using the starting well specs — enter your own on the well specs page to drive this with real rock.
Well library
End-of-life risk
Over limit

100 / 100

Weakest link: Caprock capillary margin left

CO₂ stored

19.72 Mt

Pore fill 185.9 % of limit 70 %

Pressure and ground motion

24,214,865 psi

+24,211,365 psi · bound Mw 5.71

Curves over the injection life
Active well · 20 evaluated times

Cumulative CO₂ mass (Mt)

Reservoir pressure (psi) against the fracture limit

Geomechanics: upper-bound magnitude (Mw) and fault slip margin (psi)

When each limit is first reached
Earliest evaluated time at which the metric sits close to or past its limit. With 20 steps the timing resolves to about 1.00 yr.
MetricPillarFirst reachedValueLimitBand
Caprock capillary margin leftPressure1.0 yr-2,280,720.28 % of Pc entry20.00 % of Pc entry
Over limit
Fault slip margin leftGeomechanics1.0 yr-833.33 % of shear strength20.00 % of shear strength
Over limit
Fracture-pressure window usedPressure1.0 yr1,207,491.25 % of window90.00 % of window
Over limit
Largest magnitude the volume allowsGeomechanics1.0 yr4.84 Mw3.00 Mw
Over limit
Pore volume filledInjected mass7.0 yr65.08 % of storable70.00 % of storable
Close to limit
Plume radius vs area of reviewInjected mass11.0 yr4,611.95 ft5,280.00 ft
Close to limit
This well's scenario run
Production case published from AI Studio for the same well, so the containment screen and the economics read off one well.

No well-level scenario run stored yet. Train a model in AI Studio and run it through the well chain to link one here.

What this assumes
  • Timeline evaluates 20 time slices between 0 and 20 yr of injection at a constant 2,700 t/day.
  • Each point is a full run of the containment risk model at that elapsed time, using the same site description, thresholds and equations as the reservoir risk screen.
  • Rate, rock and seal properties are held constant over time; a rate schedule or pressure-dependent injectivity is not modelled.
  • Constant injection rate for the whole duration — no ramp-up, no shut-ins.
  • Single-compartment, radially symmetric plume (Nordbotten-Celia geometry).
  • Δp is the Theis log-time approximation at the wellbore, not a simulated field.
  • The magnitude row is the McGarr volumetric ceiling, not a seismicity forecast.
  • Net pay 55 m used for buoyancy head across the plume.