Power becomes energy
How much energy does a constant load request in half an hour?
kW and kWhThe power playbook / 12 practical lessons
A generator fails. The battery takes over. Can you predict when the lights go out?
Start with a 1 MW load and a 100 kWh battery, then change one assumption at a time. Read the calculations here, run each experiment in your browser, and compare the result with the reference Python engine.
For datacenter engineers learning power continuity. Begin with power and energy, work through outages and shared failures, then compare aggregate AI demand and annual PUE planning. Basic arithmetic is enough to start.
How much energy does a constant load request in half an hour?
kW and kWhHow much source power is needed to deliver 1,000 kW?
EfficiencyDoes half the stored energy give half the ride-through duration?
Finite storageWhat changes when startup takes 60 seconds instead of 30?
Sequence and delayWhat changes if the generator cannot start?
Combined failuresAre two paths enough when either one must carry the whole load?
N+1 capacity reasoningCan a shared control fault defeat both power paths?
Failure domainsWhat happens to two paths when their common main bus fails?
Common upstream assetsWhy does the 50 kWh case last longer when it can charge first?
Opening balancesHow long can 5 MWh of stored energy bridge a 50 MW load?
Aggregate AI power demandDoes 57 kWh bridge recovery at 500 seconds? Does 58 kWh?
Exact event timingHow does assumed PUE change annual energy for the same 50 MW IT load?
Facility energy planningThese are deterministic synthetic electrical examples with explicit units, input scenarios and downloadable results. They teach reserve accounting and failure-path reasoning. They do not predict GPU jobs, grid adequacy, electrical transients or certified facility uptime.
Read about the author, model scope and reproducibility evidence →