🔥 Underfloor Radiant (EN 1264)
Size underfloor radiant heating and cooling systems per EN 1264, calculating specific heat flux (W/m²), surface temperature limits, and dew point condensation safety.
⚡ Fortran 90 Engine
Double Precision (IEEE 754)
✓ ISO / ASME Validated
📊 Solver Telemetry
● ACTIVE
👁️ Consultations
38
⚡ Calculs faits
31
💾 Téléchargements
284
📦 Code Fortran
4.4 KB
📅 Mise en service
Jun 2026
⏱️ Latence
< 1 ms
🔥 Underfloor Embedded PEX Pipe Thermal Layer Cross-Section
Real-time thermal flux distribution across screed, insulation & surface finish📝 Configuration & Presets
🔥 Tile Floor Heating (150 mm pitch)
🪵 Wood Parquet (100 mm pitch)
❄️ Summer Radiant Cooling (16°C)
🚿 Bathroom Comfort
EN 1264 Formulations:
• Specific Output: q = B · ΔθH [W/m²]
• Floor Surface Temp: TF = Ti ± (q / α) [°C]
• Heating Limit: TF ≤ 29°C (occupied spaces)
• Cooling Limit: TF ≥ Tdew + 1.0°C (dew point safety)
• Specific Output: q = B · ΔθH [W/m²]
• Floor Surface Temp: TF = Ti ± (q / α) [°C]
• Heating Limit: TF ≤ 29°C (occupied spaces)
• Cooling Limit: TF ≥ Tdew + 1.0°C (dew point safety)
📊 Radiant Output Results
📊 Output Summary
Specific Thermal Heat Flux
q = 84.5 W/m²
✅ COMPLIANT WITH EN 1264 (TF ≤ 29°C)
Q = 5.50 kW
Mean Floor Surface Temp (TF)
27.83 °C
Max limit: 29.0 °C
Total Room Thermal Output
5.50 kW
18750 BTU/h
Hydronic Water Flow Rate
789.2 L/h
0.22 L/s (ΔT=6°C)
Room Dew Point (Tdew)
6.00 °C
Margin = +21.8 °C
📈 Thermal Flux q (W/m²) vs Supply Water Temp
📉 Floor Surface Temp (TF) vs Pipe Pitch (W)
================================================================= THERMOFLUIDCALC — EN 1264 UNDERFLOOR RADIANT REPORT ================================================================= Case Title : Engineered Hardwood Parquet Radiant Heating Operating Service Mode : Radiant Heating Floor Area / Pipe Pitch : 65.0 m2 / 100 mm Covering Thermal Resistance: 0.080 m2.K/W Supply / Return Water Temp : 42.0 °C / 36.0 °C Room Air Temp / RH : 20.0 °C / 40.0 % (Dew point = 6.00 °C) ----------------------------------------------------------------- SPECIFIC THERMAL HEAT FLUX : 84.54 W/m2 Mean Floor Surface Temp : 27.83 °C EN 1264 Comfort Compliance : ✅ COMPLIANT WITH EN 1264 (TF ≤ 29°C) Total Heating/Cooling Load : 5.50 kW (18750 BTU/h) Hydronic Water Flow Rate : 789.2 L/h (3.47 GPM) =================================================================
📘 Calculation Methodology & EN 1264 Standards
EN 1264 Calculation Engine
The characteristic emission curves determine the thermal flux $q$ based on logarithmic mean temperature difference $\Delta \theta_H$ and floor resistance:
q = B · ΔθH [W/m²]
Surface Temperature Limitations
- Heating: Maximum $29^\circ\text{C}$ in living areas ($33^\circ\text{C}$ in bathrooms) to prevent venous foot discomfort.
- Cooling: Surface temperature must remain $\ge T_{dew} + 1.0^\circ\text{C}$ to prevent slippery floor condensation.
Key Engineering Assumptions
- Standard $16\times 2\,\text{mm}$ cross-linked polyethylene (PEX-a/b) tubes.
- Cement screed conductivity $k = 1.2\,\text{W/(m}\cdot\text{K)}$ with 45 mm thickness.
- Heat capacity of circulating water $c_p = 4.186\,\text{kJ/(kg·K)}$.