Aerated concrete wall
Aerated concrete wall plus mineral wool in a standard search-targeted build-up.
This baseline comparison shows a 30 cm aerated concrete wall with 15 cm mineral wool.
Used for quick thermal checks of walls, roofs, and floors.
The baseline aerated concrete example keeps the result useful for the "aerated concrete wall 30 cm with 15 cm mineral wool" search intent without copying the other wall page wording.
Use this page when you want a fast example for a specific wall thickness and insulation thickness combination.
This variant describes an assembly related to an aerated concrete wall. The variant name includes thicknesses 30 cm, so compare the result with nearby thinner and thicker options. Read the value as a conceptual comparison: it shows the effect of thickness and lambda, but it does not include every junction detail, fixing, or moisture condition.
The insulation material or assumption is mineral wool. This material helps with acoustics and fire behaviour, but it needs moisture protection and careful installation.
Aerated concrete insulates better than dense concrete, but density and joints still affect the result. Before using the result for construction decisions, check current product data, local requirements, layer continuity, and possible thermal bridges.
Compare this page with nearby variants rather than reading it in isolation. The most useful set is the no-additional-layer case, a minimum option, and an option with margin for installation error and material tolerance.
If the example covers services, concrete, or heating, use it as a starting point for range checking. Exact sizing still depends on standards, loads, pressures, protective devices, or local execution conditions.
Aerated concrete wall plus mineral wool in a standard search-targeted build-up.
Total build-up thickness is 48 cm.
The estimated U-value is based on the full layer stack.
Pages like this support long-tail search queries and help users land directly on an assembly example.
For detailed design, check the calculator and the wall guide pages to account for junctions and thermal bridges.
Each layer adds resistance using R = d / lambda. The final U-value includes the wall leaf, the insulation, and the surface resistances.
This page is a quick reference, while the main calculator remains the place to adjust the exact project layers.
The calculators use visible formulas and explicit unit conversions. Treat the result as a preliminary check, not a complete building design.
See how formulas, unit conversions, rounding, and limitations are handled. Methodology details.