Integrated energy flexibility for buildings and industry
EnerVectum combines modular thermal storage, batteries, heat pumps, PV, EV charging, grid electricity and intelligent control into one flexible energy platform.
We help customer sites increase resilience, reduce energy costs, use more renewable energy and prepare for future flexibility markets.
One core. Multiple paths.
Thermal-centred flexibility connecting electricity, heat, storage, buildings and intelligent dispatch.
One platform for site-level flexibility
EnerVectum is designed for sites where several energy challenges overlap: heating demand, PV surplus, peak tariffs, grid constraints, EV charging plans, electrification pressure or the need for more resilient local energy operation.
Thermal storage core
A modular thermal storage layer for shifting useful heat across time and creating a flexible energy backbone.
Hybrid asset integration
Combine TES, BESS, PV, heat pumps, EV charging and grid electricity into one site-level flexibility strategy.
Intelligent control
Forecasting, optimisation and dispatch logic help decide when to store, convert, shift or deliver energy.
Pilot-ready pathway
Structured site analysis, measured validation and scalable deployment logic for serious reference projects.
Energy flexibility. One core. Multiple paths.
EnerVectum is a commercial platform company focused on turning heat, electricity, storage and control into measurable site-level value.
About EnerVectum AB
EnerVectum AB develops integrated energy flexibility solutions for buildings, light industry and local energy systems.
The platform combines modular thermal storage with mature energy assets such as batteries, heat pumps, PV, EV charging, grid electricity and intelligent control.
At the centre of the system is a modular thermal storage core, supported by smart control and optimisation layers that decide when to store, convert, shift or deliver energy.
How the platform works
EnerVectum connects energy inputs, local assets and useful outputs through a thermal-centred flexibility architecture.
Inputs
- Grid electricity
- Solar PV
- Recovered heat
- Electricity price signals
- Site demand data
Thermal core + dispatch
- Modular thermal storage
- BESS coordination
- Heat-pump interaction
- Local control and safety logic
- AI-assisted optimisation pathway
Outputs
- Heating and hot water
- Cooling pathways
- Peak reduction
- EV charging support
- Future flexibility services
Applications
EnerVectum is most relevant where thermal loads, electricity demand, PV production, peak constraints and future electrification create a need for smarter local energy management.
Commercial buildings
Offices, mixed-use buildings, schools, hotels, healthcare buildings and public properties with heating demand and power-cost exposure.
Light industry
Industrial and workshop environments with process heat, space heating, recovered heat potential or electrification pressure.
Local energy hubs
Sites or clusters where several energy assets can be coordinated locally to create resilience, optimisation and future flexibility value.
Looking for pilot and reference sites
We are looking for serious pilot dialogues with sites where energy flexibility can be measured, learned from and replicated.
Knowledge and market perspective
EnerVectum shares perspectives on thermal-centred flexibility, hybrid energy storage, intelligent control and the emerging role of local energy hubs.
Thermal flexibility
Why heat-side flexibility matters for buildings, industry and local energy systems.
Hybrid storage
Why BESS and TES should complement each other rather than compete as isolated assets.
Pilot logic
How measured pilots can become technical, commercial and financial proof points.
Contact
Let’s discuss energy flexibility
EnerVectum AB
Hildedalsgatan 18,
Gothenburg, Sweden
For pilot sites, property owners, technology partners, investors and innovation actors:
info@enervectum.com