DAMagedOpt prices cavitation, rough-zone stress and start-stop damage in euros, inside the same objective as revenue. The schedule that earns most is often not the most efficient one.
See the method and the caveats+8.03% gross revenue uplift
+7.82% net after modelled wear, +€5.05M/yr
A unit is dispatched from setpoints frozen at commissioning, a cam curve and a trader's spreadsheet next to a SCADA screen. Prices move hour by hour and inflow moves with the weather. Every hour off the good zone spends runner, bearing and guide-vane life.
Plant automation optimises efficiency and is blind to price. Trading software optimises price and treats the machine as a MW block with no hill chart.
The engine runs a deterministic dynamic program over two coupled maps: a performance hill chart (efficiency against unit flow and unit speed) and a damage hill chart (cavitation, rough zones, off-design stress, start-stop cost). Reservoir stock is scheduled over the season, not the hour.
It will park the unit at lower efficiency whenever the wear avoided is worth more than the megawatt-hours lost — and accept hard wear when a price spike pays for it.
You give four numbers: machine type, rated power, design head, rated flow. An ML estimator infers a performance hill chart and a damage hill chart from the specs alone.
Cavitation, rough-zone operation, off-design stress and each start-stop become a wear cost in euros, which sits in the objective beside the revenue.
Deterministic DP over a rolling day-ahead horizon and seasonal reservoir stock, then scored against a price-following baseline on real 2024 DE-LU prices.
A damage index per operating point and a wear cost in euros — per hour, per zone, per start. The unit your maintenance budget already speaks in.
No hill chart usually means no project. The estimator infers one from nameplate specs, and better data later lowers your fee percentage.
The reservoir is not emptied to chase one good afternoon. Stock is scheduled across the season together with the day-ahead horizon.
Every figure we publish carries its reference machine, bidding zone, period and baseline, so an engineer can check it instead of believing it.
Nobody has bought yet, so there is no customer name on this page. The 2024 backtest and its named data sources are the only proof we show.
Read the full 2024 backtestOur fee is a percentage of the additional revenue (uplift) that DAMagedOpt generates for your plant. The better the data you provide, the lower your percentage.
DAMagedOpt estimates your turbine performance curves from operational data alone.
You provide hillcharts generated by computational fluid dynamics (CFD) simulation.
You provide hillcharts measured on a reduced-scale physical model in laboratory conditions.
You provide hillcharts measured on the actual full-scale turbine — the gold standard.
Uplift is the additional revenue generated by DAMagedOpt's optimized dispatch compared to your plant's baseline operation. We measure it transparently so you only pay for real, verified gains.
Hillcharts (also called turbine efficiency maps) show how efficiently a turbine converts water energy into electricity as a function of hydraulic head and flow rate. Higher quality hillcharts allow DAMagedOpt to build more accurate digital twins, leading to better optimization results.
300 MW Francis reference turbine · Full calendar year 2024 (annualised) · SMARD DE-LU day-ahead prices · spec-estimated hillchart
Methodology: Deterministic dynamic programming replayed over 4 representative 2024 DE-LU seasonal weeks (672 h), annualised by ×13.07 to a full leap year. Reference: 300 MW Francis turbine, spec-estimated hillchart (no measured data). Wear costs enforced identically for both strategies; wear is 3.5% of gross revenue.
Results are for a reference turbine under 2024 DE-LU market conditions. Your actual uplift depends on your turbine specs, hill chart quality, reservoir configuration, and local market prices.
Methodology + results · Instant download · No sales call
5–7 business day delivery · One-time fee · No subscription · Stripe checkout
The €49 proof report shows the exact methodology and format you will receive. Numbers in that report are for a 300 MW Francis reference turbine; your report uses your specs.
Indicative prior — not a guaranteed uplift. Accuracy improves with better hillchart data. Results depend on your turbine, reservoir, and local market prices.
5–7 business day delivery · One-time fee · No subscription · Stripe checkout
Typical delivery: 5–7 business days
Enter your plant parameters to see what DAMagedOpt could generate for you
Method, results and caveats of the 2024 DE-LU backtest on the 300 MW Francis reference unit. Download starts immediately after payment.
You send rated power, head range, flow range, machine type and bidding zone, plus a hill chart if you have one. We return a full-year real-price backtest report in 5–7 business days. The €900 is credited against the first uplift contract.
Name, work email, installed capacity and machine type. We come back with a preliminary estimate within two business days.