See where to look next
A concentration spike is more useful when tied to location, wind, time, and nearby assets. The atlas helps field teams prioritize follow-up.
Geospatial layer
Asset register
| Asset name | Open emissions | Observation type | Rate (kg/hr) | Volume (kgCH₄) | Status |
|---|
Temporal trace
Demo reconciliation
| Name | Site vs source level | Discrepancy | Unattributed |
|---|
Source categories
Leaderboard
Regional rollup
AIMnet methane observatory
AIMnet connects field sensors, GPS context, satellite views, and lab workflows so methane observations around wells become easier to inspect, explain, and act on.
Why this matters
A concentration spike is more useful when tied to location, wind, time, and nearby assets. The atlas helps field teams prioritize follow-up.
Sensor data, satellite context, and well metadata stay together so lab review can compare patterns instead of chasing files.
Methane is hard to see from the ground. A shared visual record explains what was measured, where, and what changed over time.
Observation workflow
Bring in methane, GPS, wind, and site metadata from lab and field campaigns.
Place readings near wells and terrain so spatial patterns become visible.
Filter by basin, time, concentration, and asset to compare local and regional signals.
Reserve space for an AI field-notes service that references selected sites and readings.
Next build phases
Map real lab columns to well, GPS, methane, timestamp, wind, and quality fields.
Connect sensor streams or database endpoints when the pipeline is ready.
Ground a future chat service in selected sites, active filters, and visible readings.
Data import
Drop a CSV here or click to browse
The first row must be column headers. Latitude, longitude, methane, and timestamp are required.
Map your columns
Preview (first 5 rows)