Completed Clean Energy Engineering

Balanced Energy Networks

In plain English

AI plain-English summary

A working demonstration at London South Bank University will physically connect heating, cooling, electricity, and carbon capture into a single, cost-minimising network. This project tackles the "energy trilemma"—the challenge of keeping energy supplies secure, affordable, and low-carbon all at once. Currently, these systems operate largely in isolation, wasting energy when demand is low and struggling to meet peaks. The team will build an inter-seasonal thermal storage system that stores heat from summer for use in winter, and a bi-directional electricity network that can both send and receive power. Crucially, they will attach a device that generates electricity while simultaneously removing carbon dioxide from the air, making the whole system carbon neutral. If successful, this integrated approach could reshape how urban energy grids are designed. Instead of separate networks for heat, power, and emissions, future infrastructure could balance all three in real time, cutting costs and carbon simultaneously. The demonstration at a university campus provides a testbed that could be scaled to hospitals, business parks, or entire city districts. The project does not aim to discover new fundamental science—it is an engineering demonstration of how existing technologies can be combined into a practical, working system.

View original technical description
The Balanced Energy Networks project will deliver both a physical and digital network to integrate systems that will enable the balancing of heating, cooling, electricity, and carbon, in a way that minimises costs. Addressing the energy trilemma - delivering security of supply, at low cost, and with low carbon emissions - is a key requirement for achieving a sustainable and prosperous economy. The Balanced Energy Networks project will build a working demonstration of the integrated system at London South Bank University (LSBU). This will involve the construction of an inter-seasonal thermal storage system to balance the production of heating and cooling throughout the year. It will also create a bi-directional network to balance electricity supply and demand. Attached to these physical and information and control networks will be a range of innovative technologies including one which can both generate electricity and remove carbon dioxide from the air, allowing the overall system to be carbon neutral.

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Related Research

Grants with similar aims, by meaning.

GBDESC: Grid Balancing via the Domestic Energy Supply Chain
BankEnergi - Providing local energy systems for the London South Bank community
Learning Energy Systems : A dynamic innovative solution to reducing energy demand
Ebbs and Flows of Energy Systems (EFES)
Integrated heating and cooling networks with heat-sharing-enabled smart prosumers

Original classification

Collaborative R&D

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