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Sizing a solar hot water system is not guesswork. It is not "X panels per building" or "Y liters per room." Correct sizing is a thermodynamic and hydraulic calculation based on real demand, temperature lift, available irradiation, and system integration strategy.
A commercial hot water system that is properly sized will work the moment it is installed and will remain stable for years. A poorly sized system will produce complaints, stagnation, pump failures, and ultimately financial loss.
This guide explains how to size solar thermal systems for real commercial facilities—hotels, hospitals, schools, campuses, industrial laundries, and student housing. The goal is not maximum temperature; it is consistent delivery, minimal maintenance, and predictable ROI.
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| Latinská Amerika | 14–22°C |
The colder the inlet, the more energy you must deliver.
Commercial buildings typically run:
ΔT = Tsetpoint − Tinlet
Example: Hotel in Greece, inlet 15°C → setpoint 50°C → ΔT = 35°C
This is the most important formula in commercial solar thermal.
Q (kWh/day) = 1.163 × V (m³) × ΔT
Where:
Assume:
Convert L to m³:
3500 L/day → 3.5 m³/day
Q = 1.163 × 3.5 × 38 ≈ 154.7 kWh/day
This is base shower demand only. Add laundry, kitchen, pool → typically +40–100%
If you only know the number of rooms or beds, we can derive the thermal demand range and design scenario.
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| Region | Roční ozáření |
|---|---|
| Northern EU | 950–1,150 kWh/m²·year |
| cURL Too many subrequests. | 1,400–1,700 kWh/m²·year |
| LATAM | 1,500–2,000 kWh/m²·year |
| MENA | 1,800–2,300 kWh/m²·year |
The difference is 2× annual yield.
A 5% shading = 10–20% real output loss due to temperature cascade.
Solar should not deliver the final high-temperature lift. It should deliver preheat or base load.
Correct priority: Solar → Heat Pump → Boiler
Why?
This reduces:
Q = 1.163 × 3.6 × 35 ≈ 146.5 kWh/day
Assume 70% SF (solar fraction):
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→ Glycol destruction, pump failure.
→ System becomes a big kettle with zero optimization.
Do not buy collectors based on photos or catalogs. Solar thermal is not decorative; it is a financial tool.
We design systems that run 365 days,
not seasonal marketing prototypes.
Sizing a commercial solar hot water system correctly requires engineering discipline, not marketing promises. The process is straightforward:
A properly sized system will deliver consistent performance, minimal maintenance, and predictable ROI. An improperly sized system will generate complaints, failures, and financial losses.
The difference between success and failure is not the product—it's the engineering. Work with professionals who calculate, not estimate. Work with manufacturers who design systems, not sell components.