Geothermal Exploration before drilling

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VEXRAD · Geothermal Exploration

Geothermal Exploration Before Drilling

Before a multi-million-pound geothermal well is drilled, developers need the strongest possible model of lithology, reservoir depth, structure and thermal context. VEXRAD ADR adds depth-referenced subsurface intelligence acquired from the surface.

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SHORT ANSWER

Yes — geothermal targets can be investigated extensively before drilling, but the well remains the decisive test.

Modern geothermal exploration combines geology and multiple geophysical methods. ADR contributes a Virtual Borehole: a depth-referenced interpretation designed to help characterise and rank a target before committing to the physical well.

THE PRE-DRILL PROBLEM

A geothermal well concentrates geological, technical and capital risk in one decision.

Where is the target formation?

Depth and thickness of reservoir units and key formation boundaries.

What changes with depth?

Lithology, structures and thermal/reservoir indicators that can alter the drilling hypothesis.

Where should the next well go?

Integrate ADR with seismic, MT, gravity, geology and existing wells to rank the next investigation.

WORKFLOW

SCREEN → CHARACTERISE → ADR SCAN → VIRTUAL BOREHOLE → RANK → DRILL

ADR is not positioned as a substitute for the geothermal exploration stack. It is an additional surface-acquired, depth-referenced measurement that can be integrated with established geoscience before drilling.

WHAT ADR MAY CONTRIBUTE

Depth-referenced geothermal intelligence

DecisionPotential ADR contributionBoundary
Formation tops and lithologyDepth-referenced lithology classification and formation-boundary interpretation.Performance depends on geology and calibration.
Reservoir intervalCandidate reservoir sands/units and structural changes.Does not guarantee permeability or flow.
Thermal contextTemperature-related proxy behaviour where calibrated and validated.Not a substitute for downhole temperature measurement.
VALIDATION

Deep geothermal examples tested against wells

Denmark

VEXRAD reports a ~4 km Virtual Borehole workflow over deep wells, with blind cross-validation of lithology classification against drill-log-derived geology. The published VEXRAD case study reports a sand-prediction correlation of r = 0.89 while also reporting false alarms and resolution limits.

Read the Denmark case →

United Downs, Cornwall

An ADR Virtual Borehole acquired in 2014 identified three candidate permeable zones before the deep well was drilled. VEXRAD later compared those pre-drill predictions with public well information under its evidence framework.

Read the United Downs case →

Perth Basin

ADR Virtual Boreholes were tied to existing well and seismic control to investigate reservoir sandstones and temperature context in a hot-sedimentary-aquifer setting.

Read the Perth Basin case →

What ADR does not establish: guaranteed permeability, fracture connectivity, flow rate, deliverability, sustainable heat extraction or drilling success. Those require wells and reservoir testing. ADR’s role is to improve the geological decision before that capital is committed.
FREQUENTLY ASKED QUESTIONS

Questions technical teams ask

How do you explore for geothermal resources before drilling?

Geothermal exploration typically integrates geological mapping, geochemistry, temperature information and geophysical methods such as seismic, gravity, magnetics, electrical/EM and magnetotellurics. ADR can add a selected-location depth-referenced Virtual Borehole to that evidence stack.

Can geophysics predict a geothermal reservoir?

Geophysics can identify structures, physical-property contrasts and candidate reservoir units, but commercial reservoir performance ultimately depends on drilling and testing permeability, temperature, pressure and flow.

What can an ADR Virtual Borehole show for geothermal exploration?

Depending on geology and calibration, it may support interpretation of lithology, formation boundaries, reservoir candidate intervals, structures and temperature-related proxy behaviour with depth.

Can ADR replace magnetotellurics or seismic?

No. The methods measure different physical responses and operate differently. VEXRAD positions ADR as a complementary depth-referenced evidence layer rather than a universal replacement.

Can ADR tell whether a geothermal well will flow?

No. ADR does not guarantee permeability, fracture connectivity or commercial flow. These require drilling and reservoir testing.

YOUR PROJECT

Turn the search question into a testable geological question.

VEXRAD’s no-cost Project Fit Check reviews the target, depth, geology and evidence already available before recommending whether ADR is technically relevant.

Start a Project Fit Check →See the evidence →

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