Generate · Wind
Wind Power.
Wind is the workhorse of a round-the-clock clean portfolio — it generates when the sun doesn’t. We site turbines on measured resource data, micro-optimise every position, and build farms and wind–solar hybrids to bankable standards.
The practice
Wind is sited on
data, not
brochures.
A turbine in the wrong place is an expensive monument. The difference between a farm that hits its plant load factor and one that limps is decided long before erection — in the wind data, the micro-siting, and the wake modelling. We measure first, model honestly, and place every machine where the resource actually is.
Then we build it and stay to run it — because a 20-year asset needs an owner’s mindset, not a contractor’s exit.
- Measured wind data from met masts and LiDAR, not desktop maps
- Micro-siting and wake modelling for real plant load factor
- IEC 61400-compliant turbine class and site suitability
- Wind–solar hybrids that flatten the generation curve
What we build
Six ways we turn
wind into watts.
Utility-scale wind farms
Multi-turbine farms from a handful of machines to hundreds of MW — full EPC or BoP scope, delivered against measured resource and firm schedule.
Wind–solar hybrids
Co-located wind and solar sharing one grid connection — flatter generation curves, higher plant load factor, and more value per connection point.
Repowering & uprating
Older sites, better turbines — we replace or upgrade ageing machines on proven windy land to lift output without hunting for new sites.
Wind resource assessment
Met masts, LiDAR campaigns, and long-term correlation — bankable wind data and energy yield reports independent auditors and lenders accept.
Distributed & captive wind
Smaller turbines feeding a factory, estate, or group-captive structure — clean power close to load, sized to your consumption not a template.
O&M & performance
Condition monitoring, gearbox and blade care, availability tracking, and yield reporting — long-term operations that protect plant load factor.
Delivery
A 20-year asset,
built in six moves.
Resource assessment
Met masts and LiDAR campaigns, long-term correlation to reference stations, and turbulence and shear analysis — the measured truth about the wind, not a map estimate.
Micro-siting & design
Wake modelling, turbine class selection to IEC 61400, layout optimisation for yield and setbacks, and foundation and electrical design sealed and signed.
Procurement & logistics
Turbines, towers, and BoP from vetted vendors — plus the oversize-load transport and route surveys that make or break a wind schedule.
Construction & erection
Foundations, crane pads, internal roads, and heavy-lift erection — HSE-first, staged QA/QC hold points, and weekly transparent reporting.
Commissioning & grid sync
Turbine commissioning, power-curve and SCADA verification, grid synchronisation, and CEIG and DISCOM formalities — witnessed, documented, handed over.
Operate & maintain
Condition monitoring, scheduled and predictive maintenance, availability guarantees, and annual performance audits for the life of the asset.
Wind engineering standards
Bankable is a discipline.
- Measured wind data to IEC 61400-12 methods
- IEC 61400 turbine class and site-suitability checks
- P50/P90 energy yield from wake-modelled layouts
- Independent-auditor and lender-grade resource reports
- Foundation and structural design to IS/IEC codes
- Availability and power-curve guarantees
- HSE-first heavy-lift construction management
- CEIG clearances and DISCOM liaison managed end to end
- Complete as-built and O&M documentation at handover
Good questions
Asked often,
answered straight.
How much wind data do we really need before committing?
Enough to be bankable — typically at least a year of on-site measurement from a met mast or LiDAR, correlated to a long-term reference so the estimate reflects a normal wind year, not a lucky one. It feels slow, but it’s the cheapest insurance against building in the wrong place.
Why a wind–solar hybrid instead of one or the other?
Wind and solar peak at different times, so sharing a single grid connection means the line stays fuller through the day and the plant load factor climbs. That’s more energy per connection point, steadier supply, and better economics than either technology alone on the same land.
We have an old wind site — is repowering worth it?
Often, yes. The land is already proven windy and connected, so replacing tired machines with modern, larger-rotor turbines can lift output substantially without a fresh siting hunt. We run a data-led before/after case so the numbers, not nostalgia, make the call.
Do you handle approvals and grid connectivity?
End to end — resource-registration and land formalities, CEIG clearances, DISCOM and transmission liaison, and grid-synchronisation. You sign where needed; we carry the paperwork.