Technology + Integration

The structure stores the energy. The intelligence creates the value.

Rechargeable buildings are not created by equipment alone. They require the engineering, controls, modeling, and integration expertise that transforms building structures into active thermal infrastructure.

How it works

The intelligence layer behind rechargeable buildings.

Termobuild integrates with the systems project teams already know and use. The value comes from knowing how to model, control, charge, discharge, and optimize the building structure as part of the energy strategy.

Termobuild intelligence layer diagram showing existing building systems, proprietary modeling, control algorithms, and building outcomes
18+ years proven
3.2M+ sq ft installed
NREL featured projects
RETScreen validated
The difference

Actively Managed Thermal Energy Storage.

Every concrete building has thermal mass. Very few buildings use it as a predictable, controllable thermal energy storage asset.

Termobuild does not replace the design team, require proprietary HVAC equipment, or force owners into a specific controls platform. We provide the integration expertise that allows the structure, mechanical systems, ventilation strategy, and controls to work together as one high-performance energy system.

We do not sell equipment.

We provide the engineering intelligence behind the outcomes: lower capital cost, reduced peak demand, improved comfort, greater resilience, and better long-term financial performance.

Why experience matters.

Most buildings contain thermal storage capacity.

Few are designed to actively charge, store, and release energy in a way that improves comfort, reduces peak demand, lowers infrastructure costs, and maintains long-term performance.

That's where Termobuild's modeling, controls strategies, and project experience make the difference.

What Termobuild brings

The Building Intelligence Stack.

1

Engineering Integration

Aligning structure, HVAC, geothermal, ventilation, and controls into a coordinated design strategy.

2

Proprietary Energy Modeling

Predicting storage capacity, load shifting potential, system performance, and financial outcomes before construction.

3

Predictive Control Algorithms

Determining when the building should charge, store, and release thermal energy based on operating conditions.

4

Patented Methodologies

Applying decades of development, real-world project data, and repeatable design strategies to new buildings.

Performance Through Simplification

Designed to amplify the systems already being specified.

Termobuild works alongside architects, engineers, controls contractors, and equipment suppliers. Our role is not to replace preferred manufacturers or rewrite the specification around a proprietary product.

Our role is to help the project team unlock better performance from the structure and systems already being designed.

Reduce infrastructure. Improve outcomes.

By activating the structure itself as thermal infrastructure, project teams can often reduce mechanical capacity, lower peak demand, improve comfort, and strengthen long-term building performance.

Explore how rechargeable building intelligence can fit your project.

Termobuild helps project teams evaluate where structural thermal energy storage can improve performance, reduce infrastructure burden, and strengthen long-term building economics.