FREE · PRIVATE · BROWSER-BASED

GEOLOGY TOOLS

Practical utilities built for wellsite geologists, geosteering teams and drilling professionals. Your files stay in your browser and are not uploaded to our servers.

01 / FEATURED TOOL

Online Well Log Digitizer

Load an image, define the plot limits, then click along a curve. The traced points are converted to calibrated depth and curve values in real time.

CALIBRATION MODE Scroll to zoom · drag to pan
02 / FEATURED TOOL

2D Horizontal Structure Digitizer

Convert an office-supplied planned-wellbore versus structure image into usable XY geometry. The planned wellbore and each formation horizon are traced and managed independently.

CALIBRATION MODE X — · Y —
03 / DATA

LAS Quick Viewer

Open a LAS 2.0 file locally, review the well information and plot any numeric curve.

Source depth units

Drag to pan; wheel zooms around the cursor. Double-click or Home resets. Focus the plot for +/− zoom and arrow-key pan. Escape cancels a drag. Use buttons on touch screens.

Load a LAS file to view and navigate its curves.
Load a LAS file to start. Move over the plot to inspect a recorded sample.
04 / TRAJECTORY

Directional Survey Workbench

Calculate a complete directional survey using minimum curvature. Paste or import MD, inclination and azimuth stations, then inspect TVD, displacement, vertical section and dogleg severity in synchronized section and plan views.

Vertical section · mVS vs mTVD
Plan view · mE vs mN
Station mMD Inc ° Azm ° mTVD mN mE mVS DLS °/30m
No calculated stations.
05 / CIRCULATION

Lag & Annular Velocity Calculator

Build the complete bit-to-surface annulus from multiple hole, casing, drill-pipe and BHA sections. Calculate section capacities, annular velocities, lag volume, bottoms-up time, pump strokes and a field-ready sample arrival schedule.

Circulation

Choose units in the dropdown on the right of every numeric entry, including section geometry and sample scheduling. Switching units converts the existing value; metric, US and Imperial inputs can be mixed. US and Imperial gallons are separate; bbl means 42 US gallons. Results and CSV headings retain their stated units.

Annular sections

Sections are measured from surface toward the bit.

Section Path From MD To MD Hole / ID String OD Washout (diameter)

Sample catch schedule

Arrival times are estimates. “Volume to sample depth” uses the entered fixed-depth geometry; review BHA lengths and changing flow before field use.

Section results

Effective diameter includes the entered diameter washout.

Section Length m Eff. ID mm Capacity L/m Volume L Velocity m/min Travel min Strokes

Sample arrival schedule

Cut time includes estimated drilling and connection time.

Sample mMD Cut time Lag volume L Lag min Lag strokes Expected at surface

Planning estimate only. Confirm actual hole condition, string dimensions, pump output, flowline/gas-trap volume and operational delays against current rig data. Cuttings and gas may trail calculated fluid lag because of slip, beds, eccentricity, inclination and washout.

06 / DATUM

TVD / Subsea Converter

Use positive elevations above mean sea level. Subsea elevation is negative below mean sea level. TVD must use KB as its reference; MD is not interchangeable with TVD.

07 / STRUCTURE

Formation Dip Calculator

Use 90° for a flat formation: 91° = +1° from horizontal, and 89° = −1°. Apparent formation angle uses the same baseline (π/2 rad or 100 gon = flat). Dip azimuth defines the positive-down reference direction; both azimuths use the same north reference. Positive vertical bed change is downward over the horizontal interval.

08 / DRILLING

Hydrostatic Pressure

Calculate static pressure for a uniform-density fluid column using TVD. Excludes surface pressure and circulating friction; this is not ECD or a well-control instruction.

09 / REFERENCE

Oilfield Unit Converter

Convert commonly used drilling and geological measurements.

10 / MUD-GAS EVALUATION

Mud-Gas Ratio Helper

Import or enter lag-corrected C1–C5 chromatograph data, calculate transparent gas ratios and flag changes worth correlating with lithology, GR, ROP and drilling events.

1 · Qualify the gasConfirm component basis, lag, background, detector range and event type.
2 · Compare ratiosReview wetness, balance, character and Pixler trends—not one isolated value.
3 · Correlate the showCheck cuttings, total gas, GR, ROP, mud system and repeatable offset behavior.

DATA CONTEXT

Well and chromatograph setup

Ready
Background subtraction

Enter a representative circulating background on the same component basis. Net values are floored at zero and both raw and corrected values are retained in export.

ADD READING

Depth and components

Paste or import chromatograph data

CSV/TXT headers may include MD, C1, C2, C3, C4, C5, iC4, nC4, iC5, nC5, total gas and event. All components must use the same basis.

VALID READINGS0No data
PEAK NET C1–C5
W/B CROSSOVERS0Screening flags only
DATA QUALITYAdd readings

RATIO TREND

Wetness and balance vs depth

No readings
C1–C5
Add or import data
WetnessBalanceW/B crossover

READING INVENTORY

Calculated gas ratios

DepthNet gasWhBhChScreenQC
Add or import chromatograph readings to begin.

Interpretation aid—not a fluid test or reserves estimate. Ratios are qualitative screens and are strongly affected by extraction efficiency, mud system, ROP, flow, bit size, lag, recycling, detector calibration/saturation and component quantification limits. Western Canadian tight reservoirs may under-release heavy components, so traditional Haworth and Pixler relationships can misclassify fluids. Correlate trends with cuttings, total gas, GR, resistivity, pressure and test data. Files remain in this browser.

11 / OFFSET CORRELATION

Offset Formation-Top Correlator

Bring nearby offset picks onto one subsea reference, screen the spatial support and create a traceable top prognosis for a proposed well.

1 · StandardizeUse one projected coordinate system, formation name and vertical datum convention.
2 · QualifyCheck pick confidence, distance, faults, datum elevation and TVD—not MD.
3 · PrognoseReview the distance-weighted mSS estimate and structural spread before adopting it.

TARGET WELL

Location and calculation controls

Ready

ADD OFFSET

Well and formation top

Paste or import offset tops

Use easting and northing in metres. Supply top_mss directly or both top_tvd and datum_elev. Formation may be omitted to use the target formation.

PREDICTED TOPmSS
TARGET-WELL TOPEnter target datum
OFFSETS USED0No data
STRUCTURAL SPREADweighted RMS about estimate

PLAN VIEW

Offset support and residuals

No offsets
OFFSET TOPS
Add or import wells
Shallower than estimateDeeperOutside radius / excluded

OFFSET INVENTORY

Standardized formation tops

UseOffset wellDistanceTop TVDDatum elev.Top mSSResidualConfidence
Add or import offset tops to begin.

Screening prognosis—not an approved formation forecast or structural model. Use one verified projected coordinate reference system and the same vertical datum convention. Top mSS is calculated as datum elevation minus top TVD; MD is not accepted. Distance weighting does not model faults, dip domains, erosional truncation, thickness change, velocity error or inconsistent stratigraphic nomenclature. Separate fault blocks where appropriate and confirm against controlled offset logs, seismic interpretation, the approved prognosis and qualified geological judgment. Files remain in this browser.

12 / RESERVOIR PRESSURE

Pressure Gradient & Fluid Contact Helper

Import or enter formation-pressure stations, fit separate gas, oil and water trends, and screen their intersections with the evidence and uncertainty kept visible.

1 · Qualify stationsUse pressure points with defensible seal, buildup and depth.
2 · Fit trendsKeep fluids, compartments and pressure regimes separate.
3 · Review contactsTreat intersections as screening estimates, especially outside measured depth.

WELL CONTEXT

Pressure and depth basis

Ready

ADD STATION

Qualified pressure point

Paste or import pressure stations

Header row required. Use depth_m or explicitly tvd_m / mss_m, plus pressure_kpa, pressure_mpa or pressure_psi. Optional: station, group/fluid, include and note.

INCLUDED STATIONS0No data
VALID TRENDS0minimum two depths each
BEST TREND R²No fitted trend
CONTACT SCREENS0Need two trends

PRESSURE–DEPTH PLOT

Qualified stations and fitted trends

No stations
PRESSURE GRADIENTS
Add or import stations
GasOilWaterOther

STATION INVENTORY

Pressure points and residuals

UseStationmTVDPressureTrendResidualEvidence / note
Add or import pressure stations to begin.

Screening interpretation—not a pressure survey, proven fluid contact or reserves estimate. Ordinary least-squares trends assume the included pressures represent the same connected compartment, fluid column and reference conditions. Supercharge, poor seal, short buildup, depletion, capillary transition, phase or PVT changes, gauge/depth error, faults and separate pressure regimes can create misleading slopes or intersections. Never combine MD with TVD, gauge with absolute pressure, or unrelated pools. Confirm with qualified reservoir/geological review and the original pressure-test evidence. Files remain in this browser.

13 / DRILLING PERFORMANCE

Drilling Break & Corrected d-Exponent Helper

Import or enter on-bottom drilling data, normalize changing operating parameters and review deviations from a user-selected normal trend.

1 · Qualify dataExclude connections, slides, reaming, dysfunction and sensor failures.
2 · Compare like with likeKeep bit, BHA, lithology and operating regime changes visible.
3 · CorroborateInvestigate trend changes with flow, pits, gas, cuttings and drilling response.

WELL CONTEXT

Calculation basis

Ready

ADD READING

On-bottom drilling point

Paste or import drilling data

Header row required: depth_m, rop_m_h, wob_kn, rpm, bit_mm and mud_kg_m3. Optional: include and note.

INCLUDED0No data
NORMAL TREND0Select interval
LARGEST ΔdcNo comparison
REVIEW FLAGS0screening only

DEPTH TREND

Corrected d-exponent and fitted normal trend

No readings
d-EXPONENT TREND
Add or import readings

READING INVENTORY

Inputs, d and corrected d

UsemMDROP m/hWOB kNRPMBit mmMud kg/m³ddcΔdcNote
Add or import drilling readings to begin.

Trend-screening aid—not a pore-pressure calculation, kick detector or well-control instruction. The Jorden–Shirley relationship was empirical and is sensitive to bit type/wear, lithology, hydraulics, differential pressure, motor/RSS contribution, sliding, dysfunction, WOB/RPM measurement and data averaging. Corrected d uses a user-entered reference mud density divided by actual mud density; use ECD only when its basis and measurement are consistent. Do not compare across bit/BHA, lithology or operating-regime changes without qualified review. A trend departure must be corroborated with flow checks, pit volume, gas, cuttings, torque/drag, standpipe pressure and the approved well-control program. Files stay in this browser.

13 / REPORTING

Geological Operations QC Report Builder

Document the evidence behind a field or laboratory data-acceptance decision. Choose a report type, review each control, flag concerns or failures, and export a traceable report package.

LIVE DISPOSITION

Incomplete

Review the applicable controls to determine disposition.

0% reviewed

Focus your review

Filters change only this screen. Disposition, saved drafts, full CSV/JSON and Print/PDF always include every control. Follow-up exports include all unresolved controls, independent of filters.

Evidence index

Record the exact files and references reviewed. Local files are fingerprinted in this browser; file contents are not stored in the report or uploaded.

No indexed evidence.

Maximum 25 records. Files up to 64 MB receive a SHA-256 fingerprint; larger files retain explicit name, size and modified date with “not hashed — size limit.” Fingerprints identify bytes only—they do not verify provenance, completeness or technical acceptance.

Report conclusions

This report records a technical evidence review. It does not replace the approved program, operator acceptance authority, service-company procedures, regulatory requirements or qualified operational judgment.

Prepared by / dateReviewed by / dateApproved disposition / date

Professional review aid only. Apply the approved program, operator requirements, service-company procedures, jurisdictional rules and qualified technical judgment. A completed checklist does not certify data or replace well-control, radiation, pressure-control or HSE procedures.

14 / STRATIGRAPHIC PICKING

Formation Top Pick Helper

Build or import the well prognosis, add an optional gamma-ray curve, and generate location-aware guidance for depositional setting, expected cuttings and a defensible top-pick criterion.

1 · Set regional contextEnter a field, nearby town, DLS location or area.
2 · Build the prognosisAdd formations manually, paste a list or import CSV/TXT.
3 · Compare the evidenceReview samples and GR character, then confirm—not blindly accept—the pick.

WELL CONTEXT

Location and formation list

Ready
Paste or import a formation-top list

One formation per line. A second value may contain its prognosed depth, for example Cardium, 2440.5. CSV headers such as formation, top and planned_md are recognized.

WELL PROGNOSIS

Formation tops

0 formations
FormationPrognosedSuggestedConfirmed
Add or import formations to begin.

OPTIONAL LOG EVIDENCE

Gamma-ray top viewer

No curve loaded
Import a depth + GR curve to score candidate boundaries.
GR
LAS or CSV
Gamma rayPrognosed topSuggested pickConfirmed pick

Select a formation row to focus its search window. Click or tap the plot to stage a manual depth, then choose Set confirmed pick to save it.

Interpretation aid—not an automated stratigraphic authority. Formation tops are operational interpretations. Confirm picks against the approved prognosis, local naming convention, offset/type logs, sample lag, drilling parameters, mud-gas response, resistivity and other available evidence. The browser-side assistant uses a researched public-source library and transparent GR-change scoring; files remain on this device and are not uploaded.

15 / SAMPLE EVALUATION

Drill Cuttings Description Helper

Start with source-backed regional formation context, then work from sample integrity through hand-lens, microscope or thin-section observations to discriminating tests and a consistent interval description. Regional expectations remain separate from observations to reduce confirmation bias.

1 · Qualify the sample Check lag, cavings, contamination, washing and representativeness.
2 · Identify from evidence Compare internal grain, mineral, fabric and reaction—not cutting shape alone.
3 · Describe and qualify Record what is observed, confidence, limitations and interpreted rock type.

SOURCE-BACKED REGIONAL SYNTHESIS

Formation intelligence

Enter a field, nearby town or Dominion Land Survey location and the formation or member. The tool resolves regional lithology, minerals, depositional setting, possible fossils and their expected appearance in drill cuttings from a library focused on key Alberta and southeast Saskatchewan units.

Awaiting inputs

Regional reference only—not a sample, fossil or reservoir-quality identification. Fossil absence does not disprove a formation, and recovered fragments may be reworked, caved, lagged or drilling-related. Confirm against the operator prognosis, type logs, offset control, current cuttings, logs and laboratory data. This release uses a researched public-source library in your browser; nothing is uploaded. Avoid entering confidential well names or coordinates.

Loading atlas explorer…

Loading regional references…

PUBLICATIONS · TYPE & REFERENCE LOGS · DATA REPOSITORIES

Regional reference & type-log library

Explore published reference wells, regional sections and official data holdings across Western Canada and selected international basins. These are curated source links, not downloaded curves or automatic local formation interpretations. The regional synthesis above retains its stated Alberta / Saskatchewan coverage.

Formal type sections, illustrative reference logs and regional cross-sections are different evidence types. Publication figures require scale/depth calibration before digitization. Confirm access and reuse rights with the custodian; some holdings require registration or payment. No account credentials are collected and no third-party data is fetched automatically. Your shortlist stays in this page until you download it or close the page.

Already have an authorized file? Open LAS Viewer · Digitize a published log image

PRIVATE IMAGE-ASSISTED REVIEW

Analyze a drill-cuttings image

Upload or photograph a representative tray or microscope field. The browser measures visible colour, contrast and texture, then drafts a preliminary observation for geological review.

No image selected

Image preview

Build the sample description

Identification tests and limitations

Record the observed result from hand lens, reflected-light microscope or prepared thin section as applicable. No single test proves a rock type.

Description output

Check the evidence actually observed before using the interpreted rock name.

Method references: AAPG drill-cuttings analysis · British Geological Survey Rock Classification Scheme · Alberta Energy Regulator core and cuttings resources. Hand-lens and reflected-light microscope observations remain field identifications. Polarized-light microscopy requires a representative prepared thin section and trained petrographic interpretation. Confirm material conclusions against the approved operator manual, regional geology, drilling context and laboratory data.

17 / INTERACTIVE LOG WORKSPACE

Composite Log Creator & Viewer

Load depth-indexed drilling data, add formation tops and inspect synchronized geology and drilling tracks. Calculations use only entered or imported values; gaps remain gaps.

COMPOSITE FIELD LOG
Wheel to zoom · drag vertically to pan · click for exact-row readout
Select a plotted row.

Reservoir / hydrocarbon interval screening

Editable screening examples, not field-calibrated cutoffs. Candidates require low GR, density porosity and deep/true resistivity together. Coal, fresh water, lithology, thin beds and borehole effects can mimic these patterns. Confirm matrix, tool quality, logs, samples and formation fluids before interpreting hydrocarbons. No saturation, net pay or reserves are calculated.

Import LAS to screen wireline intervals.

Reference: SLB · Basic Well Log Interpretation. Cutoffs above are user-editable examples, not thresholds prescribed by this reference.

Calculation basis

18 / CORE DESCRIPTION WORKSPACE

Interactive Core Log Editor

Author core runs and geological intervals beside a hand-drawn field log. Recovery and RQD are calculated from entered run lengths; geological observations remain explicitly user-authored.

GEOLOGICAL CORE LOG
Old-school field sheet · click an interval to edit · wheel zoom · drag to pan

Interval register

Click a row or the drawn log to load that interval into the editor.

19 / WELL PLANNING WORKSPACE

Operational Well & Directional Program Builder

Build a source-explicit drilling program from surface to TD. Survey coordinates use minimum curvature; formation intersections are reported only inside supplied station coverage.

VERTICAL SECTION
Wheel to zoom · drag to pan · select a survey station
Select a station.

Calculated directional program

mTVD, mSS, N/S, E/W, vertical section and DLS are calculated from the entered MD / INC / AZI stations.

20 / FIELD CALCULATION LIBRARY · 58 CALCULATORS

Common Drilling Formulas

Select a calculation, then choose metric or field units independently for every input and result. Values are normalized to the displayed equation basis without inferring missing inputs.

CIRCULATION

Bottoms-up lag time

AUTO UNITS
Calculated resultEnter all required values.

Reference shelf

This is the first component of the planned Formation Intelligence publication library. Each formula keeps its method and source visible; future geology references can be indexed by basin, area, formation and topic.

Field-use limitation: verify critical well-control, pressure, casing and cement calculations against the approved drilling program, current rig data, operator procedures and a competent supervisor. Geometry-based lag is theoretical and excludes washout, compressibility, surface-system volume and actual tracer response unless entered.

21 / OPERATIONS PLANNING

ICP drill-out & TD timing

Plan milestones with explicit units, dates and assumptions. Print a planning sheet or download a draft. Estimates never substitute for operational release criteria.

NEED THE COMPLETE WORKFLOW?

Move from a free utility into the live well.

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Open GEONAVIGATE Infinity ↗
22 / DAILY GEOLOGICAL REPORTING

Tour Sheet → Daily Report

Turn a Pason ETS 3.0 XML export into a daily / AM geological report. Review imported operations, confirm mud units and add your interpretation.