The EnerVectum Platform

One thermal core. Multiple energy paths. Intelligent dispatch.

EnerVectum is an integrated energy flexibility platform for buildings, light industry and local energy systems.

The platform combines modular thermal storage, BESS, PV, heat pumps, EV charging, grid electricity and intelligent control into one coordinated site-level flexibility strategy.

Grid · PV · BESS · Heat · Cooling · EV · Control

What the platform does

EnerVectum turns separate energy assets into one coordinated flexibility system. Instead of treating batteries, thermal storage, heat pumps, PV and EV charging as isolated technologies, the platform manages them around site needs, constraints and value opportunities.

Energy inputs

  • Grid electricity
  • Solar PV and renewable electricity
  • Recovered heat and flexible thermal sources
  • BESS and fast electrical flexibility
  • Site energy and tariff data

Modular thermal core + intelligent control

The thermal core stores useful energy, while the control layer decides when to charge, store, convert, shift or deliver energy based on demand, tariffs, constraints and operational priorities.

Useful outputs

  • Heating and hot water
  • Cooling pathways
  • EV charging support
  • Peak reduction and load shifting
  • Future flexibility and market services

Why thermal storage complements batteries

Batteries are strong for fast electrical response and short-duration services. Thermal storage is naturally strong where the value is bulk energy capacity, useful heat, longer duration shifting, PV surplus absorption and heat-side flexibility.

EnerVectum does not position TES against BESS. The platform combines them where it creates better economics, resilience and system performance.

Right tool for each role

  • BESS for fast response and electrical flexibility
  • Thermal storage for lower-cost heat-side capacity
  • PV and grid electricity as flexible charging sources
  • Heat pumps and EV charging as controllable site assets
  • Intelligent dispatch as the value-creation layer

The control layer is part of the product

The platform value is not only in the physical assets. It is also in the logic that decides how those assets should operate together.

Forecast

Use weather, PV production, demand and price signals to anticipate future site conditions.

Optimise

Choose the best operating mode across thermal storage, BESS, heat pumps, EV charging and grid electricity.

Dispatch

Charge, store, convert, shift or deliver energy based on value, constraints and operational priorities.

Validate

Measure performance, cost value, emissions impact and replication logic for future deployment.

Where the platform creates value

  • Sites with PV export or curtailment
  • Buildings with heating demand and peak exposure
  • Light-industrial sites with thermal loads
  • Properties preparing for EV charging expansion
  • Customers affected by grid constraints or tariff pressure
  • Future local flexibility and energy-service models

Designed for measurable site value

EnerVectum starts with the customer site. The platform is configured around real energy data, heating and cooling demand, grid capacity, tariffs, PV production, EV charging plans and operational constraints.

This makes the platform suitable for structured pilots, reference cases and future financeable deployment models.

From platform concept to measured pilot

EnerVectum is preparing pilot projects where thermal-centred flexibility can be validated with real site data, real operating conditions and a clear replication logic.

  • Site data and energy baseline
  • Technical concept design
  • Value-stack assessment
  • Partner and funding structure
  • Measured validation and replication plan