Need Help Designing the PVT System?
Tell us:
- project location;
- application;
- heating requirements;
- heat pump system.
Our engineering team can help evaluate the suitable PVT configuration.
Published: May 28, 2026
Last Modified:August 6, 2026
A photovoltaic thermal solar-assisted heat pump (PVT-SAHP) system depends on one fundamental question:
Where does the heat pump obtain its low-temperature heat source throughout the year?
According to system architecture, PVT heat pump systems can be classified into:
The difference is whether the heat pump relies only on the PVT collector or combines PVT with another renewable or environmental heat source.
Miglioli et al. identify single-source and dual-source configurations as one of the major classifications of PVT-SAHP systems, together with DX and IDX architectures.
Architecture:
PVT Collector
↓
Heat Pump
↓
Building LoadExamples include:
It increases adaptability but also increases:
A single-source PVT-SAHP system uses the PVT collector as the only external heat source for the heat pump.
Basic structure:
Solar Radiation
↓
PVT Collector
↓
Heat Extraction
↓
Heat Pump
↓
Heating / DHWThe system design focuses on maximizing the relationship between:
Compared with dual-source systems:
The PVT collector becomes the central renewable energy source.
Fewer heat source interfaces are required.
The main limitation:
PVT output changes with:
During periods of low solar availability:
A dual-source PVT-SAHP system combines PVT with another heat source.
Typical architecture:
PVT Source
↓
Heat Pump
↓
Building Load
↑
Secondary Heat SourceExamples:
The purpose is not simply adding another heat source.
The purpose is:
Maintain stable heat pump operation under changing conditions.
System priority:
PVT
↓
Heat PumpSystem support:
Secondary Source
↓
Heat PumpThe system can select the most suitable heat source according to conditions.
The heat pump is less dependent on a single renewable source.
Suitable for projects where:
The system needs decisions about:
Additional components may include:
| Parameter | Single Source | Dual Source |
|---|---|---|
| Heat Sources | One | Two or more |
| Architecture | Simpler | More complex |
| Control Strategy | Easier | More advanced |
| Installation | Simpler | More components |
| Adaptability | Moderate | Higher |
| Seasonal Stability | Lower | Higher |
| Project Flexibility | Moderate | Higher |
Single-source / dual-source is independent from DX / Brine classification.
A complete PVT-SAHP system can be described using two dimensions:
PVT-SAHP
|
-----------------------
| |
DX IDX
| |
Single / Dual Single / Dual
Source SourceMiglioli et al. describe PVT-SAHP configurations through these combined architecture approaches.
For Solis PVT Engineering Design Series:
Single-source IDX reference design.
Solis Brine 450W
↓
Brine Loop
↓
Heat Pump
↓
BuildingThe Brine architecture can be extended toward dual-source configurations when project requirements require additional heat sources.
Single-source DX reference design.
Solis DX 450W
↓
Refrigerant Circuit
↓
Heat Pump
↓
BuildingFocus:
Suitable conditions:
Suitable conditions:
A professional decision process:
Building Requirement
↓
Climate Analysis
↓
Solar Availability
↓
Heating Season Profile
↓
Single or Dual Source Decision
↓
DX or Brine Selection
↓
System OptimizationAssuming dual source always improves performance.
Reality:
More sources require better control.
Designing only for peak conditions.
Real systems operate across seasons.
Ignoring control strategy.
A dual-source system without proper control may lose its expected benefits.
The available collector testing evidence supports:
However: Single-source vs dual-source selection belongs to the system architecture layer, requiring consideration of:
A system where the PVT collector provides the only external heat source.
A system combining PVT with another heat source to improve adaptability.
No. It provides flexibility but increases system complexity.
Brine 450W and DX 450W can both serve as reference architectures. Final selection depends on project requirements.
Previous:
Next:
Tell us:
Our engineering team can help evaluate the suitable PVT configuration.