Ontario Nuclear Supply
By Unit, Sep 14, 2026
| Station | Unit | Rated MW | Delivering | % of Rated | MW Missing | State |
|---|---|---|---|---|---|---|
| Darlington | Darlington 3 DARLINGTON-G3 | 881 | 0 | 0% | 881 | offline |
| Darlington | Darlington 2 DARLINGTON-G2 | 880 | 0 | 0% | 880 | offline |
| Darlington | Darlington 4 DARLINGTON-G4 | 880 | 0 | 0% | 880 | offline |
| Bruce A | Bruce 4 BRUCEA-G4 | 807 | 0 | 0% | 807 | offline |
| Bruce A | Bruce 1 BRUCEA-G1 | 829 | 804 | 96.9% | 25 | online |
| Darlington | Darlington 1 DARLINGTON-G1 | 873 | 851 | 97.5% | 22 | online |
| Bruce A | Bruce 2 BRUCEA-G2 | 825 | 804 | 97.5% | 21 | online |
| Bruce B | Bruce 6 BRUCEB-G6 | 828 | 809 | 97.7% | 19 | online |
| Bruce B | Bruce 5 BRUCEB-G5 | 819 | 801 | 97.8% | 18 | online |
| Bruce B | Bruce 7 BRUCEB-G7 | 829 | 814 | 98.2% | 15 | online |
| Pickering B | Pickering 6 PICKERINGB-G6 | 517 | 502 | 97.1% | 15 | online |
| Pickering B | Pickering 5 PICKERINGB-G5 | 518 | 505 | 97.5% | 13 | online |
| Pickering B | Pickering 8 PICKERINGB-G8 | 522 | 510 | 97.6% | 12 | online |
| Bruce B | Bruce 8 BRUCEB-G8 | 823 | 813 | 98.8% | 10 | online |
| Pickering B | Pickering 7 PICKERINGB-G7 | 526 | 518 | 98.4% | 8 | online |
| Bruce A | Bruce 3 BRUCEA-G3 | 803 | 797 | 99.3% | 6 | online |
“% of rated” can exceed 100%: the rating is a reference net figure, and output rises with colder condenser cooling water. Ratings are audited against observed full-power output.
Projected MW Offline, Ontario
IndividualA probabilistic forward curve for the Bruce, Darlington and Pickering fleet, built the same way as the U.S. curve and shown as a P10 to P90 band, with the refurbishment program in it.
Detected Outages
hour-precise| Unit | Onset | Ended | Duration | MW | Status |
|---|---|---|---|---|---|
| Darlington 2
Darlington |
Aug 3, 2026 03:00 | — | 1,028h (43d) | 880 | ongoing |
| Darlington 4
Darlington |
Aug 1, 2026 15:00 | — | 1,064h (45d) | 880 | ongoing |
| Darlington 3
Darlington |
Mar 30, 2026 00:00 | — | 4,055h (169d) | 881 | ongoing |
| Bruce 4
Bruce A |
Jan 31, 2025 22:00 | — | 14,185h (592d) | 807 | ongoing |
| Bruce 5
Bruce B |
Aug 23, 2026 21:00 | Aug 28, 2026 01:00 | 101h (6d) | 819 | ended |
| Bruce 2
Bruce A |
Jul 2, 2026 23:00 | Jul 6, 2026 02:00 | 76h (5d) | 825 | ended |
| Darlington 4
Darlington |
Jun 10, 2026 06:00 | Jul 1, 2026 01:00 | 500h (22d) | 880 | ended |
| Bruce 3
Bruce A |
Jun 4, 2026 03:00 | Jun 4, 2026 05:00 | 3h | 803 | ended new |
| Bruce 3
Bruce A |
Jun 3, 2026 07:00 | Jun 4, 2026 00:00 | 18h | 803 | ended new |
| Darlington 4
Darlington |
Apr 11, 2026 14:00 | May 26, 2026 15:00 | 1,082h (46d) | 880 | ended |
| Bruce 1
Bruce A |
Mar 23, 2026 17:00 | Mar 25, 2026 17:00 | 49h (3d) | 829 | ended |
| Pickering 8
Pickering B |
Mar 19, 2026 03:00 | May 29, 2026 21:00 | 1,723h (72d) | 522 | ended |
| Pickering 7
Pickering B |
Feb 2, 2026 03:00 | Feb 19, 2026 15:00 | 421h (18d) | 526 | ended |
| Bruce 8
Bruce B |
Jan 17, 2026 00:00 | Mar 19, 2026 01:00 | 1,466h (62d) | 823 | ended |
| Darlington 1
Darlington |
Dec 16, 2025 12:00 | Dec 18, 2025 23:00 | 60h (3d) | 873 | ended |
| Darlington 3
Darlington |
Nov 21, 2025 04:00 | Dec 2, 2025 22:00 | 283h (12d) | 881 | ended |
| Darlington 1
Darlington |
Oct 17, 2025 22:00 | Nov 8, 2025 15:00 | 522h (23d) | 873 | ended |
| Bruce 2
Bruce A |
Sep 20, 2025 02:00 | Dec 16, 2025 05:00 | 2,092h (88d) | 825 | ended |
| Pickering 6
Pickering B |
Sep 18, 2025 02:00 | Nov 30, 2025 21:00 | 1,772h (74d) | 517 | ended |
| Bruce 5
Bruce B |
Sep 7, 2025 21:00 | Sep 12, 2025 04:00 | 104h (6d) | 819 | ended |
| Bruce 7
Bruce B |
Jul 25, 2025 00:00 | Aug 5, 2025 02:00 | 267h (12d) | 829 | ended |
| Pickering 6
Pickering B |
Jul 19, 2025 02:00 | Jul 23, 2025 16:00 | 111h (5d) | 517 | ended |
| Bruce 8
Bruce B |
Jul 11, 2025 06:00 | Jul 11, 2025 13:00 | 8h | 823 | ended new |
| Bruce 8
Bruce B |
Jul 9, 2025 02:00 | Jul 10, 2025 23:00 | 46h | 823 | ended new |
| Bruce 1
Bruce A |
Jun 27, 2025 18:00 | Jul 3, 2025 07:00 | 134h (7d) | 829 | ended |
Detected from the hourly MW signal: a unit below 10% of its rated output for 3 consecutive hours. Onset is the hour it happened, not the day, so an evening trip is visible in the next morning’s file rather than days later. Outages are inferred from output; the reason is only ever shown when it comes from a sourced announcement.
What Ontario Does and Does Not Cover
Provenance. This is IESO grid-operator market data, MW actually delivered to the Ontario grid, from the IESO Generator Output & Capability Report. The U.S. pages use NRC regulatory percent-of-rated-thermal-power. Different measurements, comparable for availability, never mixed: Ontario is never added into the U.S. national figure.
The Ontario forward curve is a different model from the U.S. one. It is not the U.S. projection extended north, and it should not be read as equivalent. CANDU units refuel on power, so the refueling-cycle signal the U.S. curve is built on does not exist in Ontario. This model holds announced refurbishments to their published return dates, excludes permanently retired units on a sourced basis, and samples the rest from the observed duration distribution back to 2019. It backtests at 80.6% P10 to P90 coverage against a nominal 80%, with individual windows ranging 67 to 93%. Two refurbishment return dates have settled so far and both came back about seven months early, so the spread around announced returns is a stated assumption rather than a fitted one, and it is revised as more of them settle.
No price-impact layer for Ontario. The $/MWh sensitivity model runs on EIA’s republished ICE hub feed, which carries no Ontario hub, nor SPP. (NYISO and ERCOT no longer belong on that list: both are now ingested directly from the ISO.) Ontario day-ahead zonal prices are stored, but Ontario is deliberately kept out of the price-sensitivity universe rather than given a modelled sensitivity it has not earned.