

RHELGAN · Power & Energy Systems
Containerised & Parallel Power
Containerised generator plants and synchronised multi-set systems for larger infrastructure, redundancy, phased capacity and difficult-site deployment.
System pathway
Scale beyond a single generator without turning the site into an improvised plant room.
Containerised systems package larger generators, service access, acoustic treatment, fuel interfaces and project controls into transportable plant modules. Multi-generator systems can be designed for synchronised operation, staged loading and redundancy where one set is not the right architecture.
Technical framework
Configure the system around the project.
- Container formats
- 20 ft, 30 ft, 40 ft and 40HQ pathways shown in current manufacturing technical material
- Cooling
- Integrated or remote-radiator configurations available
- Fuel
- External fuel connections, automatic fuel-filling and water-separating filtration options
- Controls
- Deep Sea, ComAp and DEIF synchronisation pathways shown in manufacturing control architecture
- Parallel operation
- Multi-generator synchronisation and load-sharing configurations available
- Voltage
- High-voltage project configurations available where technically appropriate
Typical applications
Where this pathway fits.
Hospitals + critical facilities
Water / wastewater treatment
Industrial + remote project compounds
Specification controls
Keep the final design tied to the actual site.
Redundancy philosophy (N, N+1 or project equivalent) is set from the consequence of failure.
Short-circuit, protection, switchgear and bus design require project electrical engineering.
Container ventilation and heat rejection must be checked for ambient and altitude.
Medium / high-voltage work is only quoted against a defined project electrical brief.
Container size alone does not define capacity. Generator rating, service clearances, cooling, switchgear, fuel system, acoustic treatment and freight constraints are confirmed together.
RHELGAN · POWER & ENERGY SYSTEMS
