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Polycarbonate U-Value and Thermal Performance: Complete Spec Table for Glazing Buyers

Why U-Value Matters for Polycarbonate Glazing

The U-value (thermal transmittance, W/m²·K) tells you how much heat passes through a panel per square metre per degree of temperature difference. Lower is better for insulation. For polycarbonate, the U-value is set by the wall structure (number of walls, rib spacing, thickness) — not by the raw polymer. This is why multiwall PC out-insulates glass and single-layer sheet despite using the same material.

U-Value Comparison Table

Glazing type Thickness U-value (W/m²·K) Light transmission
Single glass 6 mm 5.8 90%
Double glazing (air) 24 mm 2.8–3.0 80%
Solid polycarbonate 4–10 mm 5.0–5.5 88–92%
Twin-wall PC 6 mm 3.5–3.9 80–82%
Twin-wall PC 10 mm 2.9–3.2 79–81%
Twin-wall PC 16 mm 2.4–2.7 75–80%
6-wall PC 16 mm 2.0–2.3 65–75%
6-wall PC 25 mm 1.6–1.9 55–65%

Values are indicative per EN 673 (glass) and manufacturer data for PC. Exact U-values depend on rib geometry; request the certified value for the specific profile.

How U-Value Relates to Real Performance

  • Greenhouse heating cost: a 16 mm 6-wall panel (U≈2.1) saves ~45% heating vs 6 mm twin-wall (U≈3.7) on the same area
  • Condensation: lower U-value panels stay warmer on the inside face, reducing condensation in cold climates
  • Solar gain: U-value is only half the thermal story — light transmission and solar heat gain (SHGC) matter for greenhouses and daylighting
  • Combined metric: for energy modelling, use U-value + SHGC together, not U-value alone

Standards and Measurement

  • EN 673 — U-value calculation for glass (methodology)
  • ISO 10292 — heat transmittance of glazing
  • EN 12631 / ISO 10077-2 — thermal performance of profiles (for framed assemblies)
  • NFRC 100 — North American U-factor rating procedure

How to Specify for Thermal Performance

  1. Set your U-value target — from building code (e.g. roof glazing max U) or energy budget
  2. Choose wall structure — twin-wall for economy, 6-wall for insulation-first projects
  3. Match thickness to span — 10 mm twin-wall spans ~1.0 m; 16 mm spans ~1.4 m
  4. Add IR/thermal sheets — for the lowest U-values, specify IR-reflective or coated multiwall
  5. Confirm the certified value — request the manufacturer’s U-value certificate for your profile, not the generic table

FAQ: Polycarbonate U-Value

What is the U-value of 10mm twin-wall polycarbonate?

Approximately 2.9–3.2 W/m²·K, depending on the rib geometry. That is roughly equivalent to double glazing and about half the heat loss of single glazing.

Is polycarbonate better insulated than glass?

Single-skin polycarbonate is similar to single glass (~5 W/m²·K). Multiwall polycarbonate (16–25 mm) outperforms single and double glazing, reaching U-values of 1.6–2.3 W/m²·K.

What U-value do I need for a greenhouse?

For year-round heated greenhouses, target U ≤ 3.0 W/m²·K (10–16 mm multiwall). For unheated or seasonal structures, 6–10 mm twin-wall is the common balance of cost and performance.

Does a lower U-value reduce light?

Generally yes — more walls and thicker structures that insulate better also transmit less light. 25 mm 6-wall transmits ~55–65% vs 80%+ for 10 mm twin-wall. Balance insulation vs daylight for your crop or building use.

Solar Heat Gain (SHGC) — The Other Half of the Story

U-value measures heat loss; SHGC (solar heat gain coefficient) measures how much solar energy enters. For greenhouses and daylighting, SHGC is often more important than U-value:

Glazing U-value (W/m²·K) SHGC Light transmission
Clear twin-wall 10 mm 3.0 0.70–0.75 80%
Diffused twin-wall 10 mm 3.0 0.60–0.68 70–75%
6-wall 16 mm 2.1 0.50–0.60 65–70%
IR-reflective 16 mm 1.7–1.9 0.40–0.50 55–60%

Rule of thumb: hot climates — pick lower SHGC to reduce cooling load; cold climates — pick higher SHGC to harvest solar gain. The diffused surface option raises haze and softens light for greenhouse crops while barely changing U-value.

Condensation Control

  • Anti-condensation coating — available on multiwall inner faces; bead-and-channel design drains interior condensation
  • Ventilation — ridge and eave vents remove humid air, the real cause of internal condensation
  • Sealed ends — open multiwall channels act as condensation traps; end caps or tape are mandatory
  • U-value and dew point — lower U-value panels keep the interior face warmer, raising the condensation threshold

Energy Modelling Inputs for Designers

When you model a polycarbonate glazing project, use these inputs:

  • U-value — from the certified manufacturer data (not the generic table)
  • SHGC — from the specific product data sheet
  • Air leakage — framed assemblies leak at joints; add 10–15% to effective U-value for modelling
  • Thermal bridging — aluminium frames conduct heat; use thermally broken profiles for best performance

Get Thermal Performance Data for Your Project

Send your application (greenhouse, glazing, cold store), U-value target, span and climate. Bakway provides certified U-value data for our multiwall profiles and recommends the thickness/structure that meets your energy budget.

Send Thermal RFQ