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Preliminary guidelines · Version 1.0

Green & Smart Campus

Energy, technology and sustainability as a single infrastructure.

The objective

Lower costs, lower consumption, same comfort

Cut operating costs and energy dependence while keeping comfort high. Sustainability here is an economic requirement before it is an environmental one.

The energy system

It is not a roof with panels

Sizing comes from a study of real loads. Energy autonomy is proven with numbers, not promised.

  • Photovoltaics on compatible roofs
  • Storage systems
  • Heat pumps
  • Intelligent load management
  • Monitoring per building
  • Provision for an energy community

The areas

Where the work happens

Buildings

Efficient envelope, shading, natural ventilation where possible, high-performance windows and controlled climate.

Water

Lower consumption, rainwater recovery where permitted, efficient irrigation and leak monitoring.

Data

Collected with clear purpose, minimisation and proper security. Aggregated, it becomes a tool for running the campus and measuring impact.

Blockchain

Only where it gives a concrete advantage, such as shared audit between parties who do not want to depend on a single ledger. For everyday payments a traditional database is simpler and more efficient.

Environmental KPIs

It is not a roof with panels

Values to be determined during the feasibility phase.

kWh produced and consumed

to be determined

Share of renewable energy

to be determined

Peak power

to be determined

kWh per square metre

to be determined

Water per user

to be determined

Operational emissions

to be determined

Waste recovered

to be determined

Low-emission mobility

to be determined

Architecture, energy, mobility and behaviour designed as one infrastructure. Sustainability is an economic requirement.

We are not rebuilding the past.

We are building a place where technology and history coexist, work sustains the community, and the territory generates opportunity again.

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