Model anywhere
Any coordinates on Earth. The scenario sits on the real site, with satellite imagery and a camera you can tilt into 3-D.
RiskLynx Software
QRA software to map consequences, exposure and societal risk in one auditable workspace.

RiskLynx helps process-safety teams model release consequences, estimate exposed population, and generate defensible individual and societal risk deliverables without moving between disconnected desktop tools.
The platform is built for studies that need transparent assumptions, traceable calculations and practical outputs that reviewers can follow.
Try RiskLynxA BLEVE fireball played through its whole life — growth, lift-off and burn-out — as a time-resolved temperature field. It runs in the same workspace as the rest of the study: no desktop install, no export step and nothing to reconcile between tools.
Rendered over the facility basemap, from the same run the hazard distances are read off.
Built for consequence modelling, population exposure and QRA reporting, RiskLynx keeps scenario data, mapped outputs and audit-ready calculations in the same project space.
Three planes, one registered coordinate space. Take the stack apart to see what each plane contributes — and what they resolve to when they come back together.
RiskLynx collapses site geography, dispersion physics and living population cycles into one time-resolved risk surface.
Geometry, consequence and exposure are modelled separately and registered to the same map, so every distance, every contour and every head-count is measured in one coordinate space.
Streets, parcels and building footprints for the real site, on a live basemap. Nothing above this plane means anything without it.
Dispersion, thermal radiation and overpressure models render straight onto the map, shaped by the site’s own wind and stability — not a generic circle drawn around a point.
Census density is resolved onto the buildings underneath it, then split by occupancy period — the same neighbourhood carries a different population at 03:00 than it does at 15:00.
Hover the map to separate its layers Click a plane · drag to rotate Tap a plane · drag to rotate
Each engine renders onto the same workspace so the scenario, its consequence footprint and the affected population stay connected.
Run a release model and the footprint draws straight onto the map, shaped by real wind speed and direction.

Pick a point on the map and RiskLynx draws the individual risk contours around it, so you know exactly how far is safe.

Load census density into the map and calculate affected population by cell, occupancy period and scenario footprint.

Build an event tree from a release and RiskLynx works out the odds of jet fire, flash fire, explosion or safe dispersal, with a frequency for each.

Pull years of wind observations for any site and RiskLynx turns them into the wind rose that drives every dispersion model.

A study is built on the real site, at real coordinates, over live satellite imagery and a 3-D camera. When it is finished the whole scenario integrates straight into Google Earth — one file, opened in the tool your reviewers already have. A direct Aspen HYSYS link, so stream conditions arrive from the process model instead of being retyped, is on the roadmap.
One file carries the whole scenario into Google Earth.
Any coordinates on Earth. The scenario sits on the real site, with satellite imagery and a camera you can tilt into 3-D.
The finished study leaves as a single file: zones, contours, plume, receptors and labels, in the colours they had on the map.
It runs in a browser. No desktop licence, no dongle, and no rebuilding the study in a second tool just to share it.
Stream conditions read straight from the process model — composition, pressure, temperature and flow — instead of being retyped into the source term.
Thermal radiation, toxic dispersion and overpressure footprints from defined release cases.
Location-specific individual risk and IRPA outputs across receptor points and mapped zones.
F-N curves, PLL and exposure summaries for scenario ranking and ALARP communication.
Scenario maps, contours, population overlays and tabular readouts prepared for export.
RiskLynx is intended for QRA, consequence modelling, population exposure and mapped risk deliverables for process-industry scenarios.
The platform focuses on mapped consequence footprints, individual risk contours, societal risk curves, exposure summaries and structured study outputs.
Yes. Maps, curves and population readouts are designed to make technical risk easier to review with operators, regulators and project teams.
Use the demo form below. Accounts are issued by an administrator after the workspace is prepared.
Tell us about your studies and we will set up a focused walkthrough for your team.
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