10. Commercial Buildings
Commercial buildings may have:
- daytime electrical demand;
- DHW demand;
- space heating;
- cooling;
- variable occupancy.
This can create opportunities for higher solar-energy utilization, but it also makes the load profile more complex.
The designer should separate:
Load → Temperature → Schedule → Solar Availability
rather than treating the entire annual demand as one number.
11. Hotels
Hotels are particularly interesting because domestic hot-water demand can occur throughout the year.
Potential thermal loads include:
- guest-room DHW;
- kitchens;
- laundry;
- space heating;
- other hot-water services.
This makes thermal storage and temperature management important.
A centralized Brine 450W architecture can be represented as:
PVT → Brine → HX → Heat Pump → Central Storage → Hotel Loads
A DX 450W configuration can instead integrate the collector directly with the refrigerant circuit.
12. Hospitals
Hospitals require a stronger emphasis on reliability.
PVT should normally be treated as part of the energy system rather than as the sole source of guaranteed peak thermal capacity.
A typical conceptual architecture is:
PVT → Source Circuit → Heat Pump → Storage → Building Loads + Auxiliary Source
The system must account for:
- critical loads;
- backup;
- peak demand;
- temperature requirements;
- year-round operation.
13. Schools
Schools have distinctive schedules.
Thermal demand may be concentrated during:
- school hours;
- weekdays;
- heating season.
Demand can fall substantially during:
- weekends;
- holidays;
- summer.
This makes operating schedules and storage important design variables.
14. Swimming Pools
Swimming pools can be attractive PVT applications because their useful thermal temperature can be relatively low.
Where the required pool temperature can be achieved directly from the PVT system, a heat pump may not always be required.
Where additional temperature lift is necessary, the PVT system can act as a heat-pump source.
The engineering question is therefore:
Can the PVT collector supply useful heat at the required pool temperature, when that heat is needed?
15. Multi-Family Buildings
Multi-family systems introduce centralized infrastructure.
The system may include:
- large PVT fields;
- central source circuits;
- central heat pumps;
- thermal storage;
- distribution networks.
A conceptual Brine 450W system is:
PVT Field → Brine Loop → HX → Central Heat Pump → Storage → Building Distribution
The design must consider the complete system rather than individual collector performance.
16. Industrial Process Heat
Industrial PVT applications cannot be defined simply by saying “industrial.”
The first engineering question is:
What temperature does the process require?
Low- and medium-temperature processes may be suitable for PVT-assisted heat-pump systems.
Higher-temperature processes may require different PVT technologies or system architectures.
Therefore, industrial application selection must begin with:
Process → Temperature → Load Profile → Solar Resource → PVT Technology