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Surry 2 - Status & History

Comprehensive reactor performance metrics, cycle analysis, and historical outage data.

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Composite Operational Excellence Score (0-100) — average percentile rank across 7 dimensions in three sub-scores: Reliability (capacity factor, forced outage days, B2B avg streak), Efficiency (fuel utilization, refuel duration), and Discipline (startup duration, scram count). 5-year window. Higher = more operationally excellent. Click to see the full breakdown.
64
Excellence
#26 of 94
Mid Quartile
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Days of continuous operation since the last outage ended. Has forced outage(s) since last refueling.
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Current Run
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Longest recorded period of continuous operation between outages (2008-05-20 to 2009-11-01).
530
Record Run
days
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Breaker-to-Breaker runs — continuous operation exceeding the cycle-adjusted threshold (457 days for this 18-month cycle unit) with no trips to 0% power.
10
B2B Runs
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Lifetime capacity factor: average power level across all recorded days (100% = always at full power).
90.9%
Capacity Factor
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Total number of scheduled refueling outages detected in the historical data.
19
Outages
since 1999
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Average time from first power generation (>0%) to sustained full power (≥95% for 2+ days) across the last 3 scheduled outages. Click to compare against the fleet on the Operator Efficiency Leaderboard.
5.7
Avg Startup
days (last 3)
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Average fuel utilization — percent of the designed fuel cycle that this unit consumes before refueling, derived from the historical burn-down trajectory. Higher = more efficient operator (refuels with less margin remaining; closer to coastdown). Computed as 100% minus the unit's average refuel-point fuel %, using the last 3 years where available, otherwise lifetime average. Click to compare against the fleet on the Operator Efficiency Leaderboard.
98.6%
Fuel Utilization
3yr avg
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NukeWorker's Operational Excellence Score is a composite 0–100 ranking of every active US nuclear unit across 7 publicly observable performance metrics, grouped into three sub-scores:
Reliability — capacity factor, forced outage days, B2B avg streak
Efficiency — fuel utilization, refuel duration
Discipline — startup duration, scram count
Each unit's metric is converted to a percentile across the active fleet. Sub-score = average of its components; composite = average of the three sub-scores. Use the time-window toggle below to switch between 3yr / 5yr / lifetime.
Time window — change how far back we look
NukeWorker's
Operational
Excellence Score
64/100
Mid Quartile · #26/94
5-year window

Surry 2 ranks #26 of 94 active US units on NukeWorker's Operational Excellence Score over the 5-year window. Strongest area: Scrams (5-year) (90th percentile). Weakest: Refuel Duration (16th percentile).

Reliability
50
Capacity factor + Forced outages + B2B streaks
Efficiency
52
Fuel utilization + Refuel duration
Discipline
90
Startup duration + Scram count
Cohort Rankings apples-to-apples comparison within each peer group
Reactor type: #16 of 61 PWR
Containment: #1 of 5 Dry Subatmospheric (PWR)
Cycle length: #11 of 54 18-month cycle
Fleet rank above (26 of 94) compares all active US units; cohort ranks compare only against units sharing this property.
Per-dimension breakdown (7 metrics)
Capacity Factor 37th
89.8% (higher better, Reliability)
Forced Outage Days/yr 75th
1.8d (lower better, Reliability)
B2B Avg Streak 37th
508d (higher better, Reliability)
Fuel Utilization 87th
98.9% (higher better, Efficiency)
Refuel Duration 16th
40d (lower better, Efficiency)
Startup Duration 90th
3.1d (lower better, Discipline)
Scrams (5-year) 90th
0.0/yr (lower better, Discipline)

Each dimension's percentile is computed across the active US fleet (94 units with sufficient history). Sub-score = average of its component percentiles. Composite = average of the three sub-scores. 5-year window. View full leaderboard →

Methodology

NukeWorker's Operational Excellence Score is a composite ranking that combines 7 publicly observable performance metrics into a single 0-100 number per US nuclear unit.

How it's computed: Each unit's raw value is converted to a percentile (0-100) within the 94 active US units that have at least 2 completed refueling cycles. The 7 percentiles are averaged into 3 sub-scores (Reliability, Efficiency, Discipline), and those are averaged into the final composite.

Active window — 5-year:

  • Reliability — Capacity factor (5yr), forced outage days/yr (5yr), B2B avg streak (lifetime)
  • Efficiency — in-cycle fuel utilization (3yr), median refuel duration (5yr)
  • Discipline — robust mean startup duration, scrams/yr (5yr, annualised)

Cohort rankings: alongside the fleet rank, each unit gets ranked within its reactor type (PWR/BWR), containment design (Ice Condenser, Mark I, etc.), and cycle length (12/18/24-month). Useful for apples-to-apples comparisons.

What's excluded: subjective community ratings, confidential INPO ratings, financial metrics. We only use publicly available NRC + cycle data.

Why three windows? 5yr (default) is the industry standard. 3yr captures recent operational changes and post-pandemic recovery. Lifetime gives newer units a fair comparison and reveals long-term consistency.

Edge cases: units with fewer than 2 cycles (e.g., Vogtle 4) show "Provisional". Decommissioned units excluded.

Refresh cadence: recomputed daily. Each window cached separately.

A data-derived proxy for operational performance; not affiliated with INPO. INPO ratings are confidential and qualitative — ours is public and quantitative.

5-yr trend: 2021: 59/100 (#36/93)2022: 60/100 (#30/92)2023: 56/100 (#33/92)2024: 54/100 (#39/93)2025: 54/100 (#34/94)2026: 52/100 (#39/94) Stable vs 2025
Compare Surry 2 head-to-head with up to 3 other units. Compare now
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Duration of each outage in days, shown chronologically. Green bars are scheduled refueling outages, red bars are forced/unscheduled. The orange dashed line marks the average duration. Extended outages (>180 days) and D&D periods are excluded.

Outage Duration Trend

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Days between consecutive scheduled refueling outage starts, showing operating cycle regularity. The purple dashed line marks the average cycle length. Most U.S. reactors operate on 18-month (547 day) or 24-month (730 day) cycles.

Cycle Length History

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Time in days from first power generation (>0%) to sustained full power (≥95% for 2+ consecutive days) after each scheduled refueling outage. The dashed line marks the average. Includes startup testing holds and power dips.

Startup Duration Trend

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Monthly capacity factor with outage events overlaid as red bands. Green bars show average power level per month. Toggle to Daily view for raw daily data.

Power History

Scheduled
2026-04-12 In Outage 27+ 492d 2026-04-05 +7d
Scheduled
2024-10-27 2024-12-06 41 501d 2024-10-27 0d
Unscheduled
2023-06-10 2023-06-14 5 3d - -
Scheduled
2023-04-23 2023-06-07 46 507d 2023-04-23 0d
Scheduled
2021-10-24 2021-12-02 40 508d 2021-10-23 +1d
Scheduled
2020-05-03 2020-06-03 32 514d 2020-05-02 +1d
Scheduled
2018-10-27 2018-12-06 41 511d 2018-10-13 +14d
Scheduled
2017-05-06 2017-06-03 29 206d 2017-05-07 -1d
Scram # 52292
2016-10-09 2016-10-12 4 304d - -
Scheduled
2015-10-19 2015-12-10 53 89d 2015-10-11 +8d
Unscheduled
2015-07-14 2015-07-22 9 272d - -
Scram # 50529
2014-10-14 2014-10-15 2 147d - -
Scheduled
2014-04-20 2014-05-20 31 30d 2014-04-20 0d
Unscheduled
2014-03-20 2014-03-21 2 473d - -
Scheduled
2012-11-01 2012-12-02 32 495d 2012-10-28 +4d
Unscheduled
2011-06-21 2011-06-25 5 6d - -
Scheduled
2011-04-17 2011-06-15 60 59d 2011-04-17 0d
Scram # 46584
2011-02-03 2011-02-17 15 203d - -
Unscheduled
2010-07-15 2010-07-15 1 2d - -
Unscheduled
2010-07-12 2010-07-13 2 224d - -
Scheduled
2009-11-01 2009-11-30 30 530d 2009-11-01 0d
Scheduled
2008-04-27 2008-05-20 24 524d 2008-04-20 +7d
Scheduled
2006-10-08 2006-11-20 44 504d 2006-10-07 +1d
Scheduled
2005-04-24 2005-05-22 29 331d 2005-04-23 +1d
Unscheduled
2004-05-22 2004-05-28 7 173d - -
Unscheduled
2003-11-23 2003-12-01 9 4d - -
Unscheduled
2003-11-17 2003-11-19 3 4d - -
Scheduled
2003-09-19 2003-11-13 56 235d 2003-09-19 0d
Unscheduled
2003-01-26 2003-01-27 2 63d - -
Unscheduled
2002-11-23 2002-11-24 2 217d - -
Scheduled
2002-03-24 2002-04-20 28 114d 2002-03-24 0d
Unscheduled
2001-11-20 2001-11-30 11 183d - -
Unscheduled
2001-05-12 2001-05-21 10 90d - -
Unscheduled
2001-02-11 2001-02-11 1 102d - -
Scheduled
2000-10-01 2000-11-01 32 444d 2000-10-01 0d
Unscheduled
1999-07-06 1999-07-15 10 40d - -
Scheduled
1999-04-18 1999-05-27 40 - 1999-04-18 0d
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