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Norm

ISO 10211:2007

Issue date: 2007 12 05

Thermal bridges in building construction — Heat flows and surface temperatures — Detailed calculations

ISO 10211:2007 sets out the specifications for a three-dimensional and a two-dimensional geometrical model of a thermal bridge for the numerical calculation of: h...
Withdrawn: 2017 06 21
Publisher:
International Organization for Standardization
Format:
Digital | 45 Pages
Language:
English
Currently valid:

ISO 10211:2007 sets out the specifications for a three-dimensional and a two-dimensional geometrical model of a thermal bridge for the numerical calculation of:

  • heat flows, in order to assess the overall heat loss from a building or part of it;
  • minimum surface temperatures, in order to assess the risk of surface condensation.

These specifications include the geometrical boundaries and subdivisions of the model, the thermal boundary conditions, and the thermal values and relationships to be used.

ISO 10211:2007 is based upon the following assumptions:

  • all physical properties are independent of temperature;
  • there are no heat sources within the building element.

ISO 10211:2007 can also be used for the derivation of linear and point thermal transmittances and of surface temperature factors.

ISO 10211:2017
2017 06 21
Thermal bridges in building construction — Heat flows and surface temperatures — Detailed calculatio...
Norm
ISO 10211:2007
2007 12 05
Thermal bridges in building construction — Heat flows and surface temperatures — Detailed calculatio...
Norm
ISO 10211-1:1995/Cor 1:2002
2002 06 13
Thermal bridges in building construction — Heat flows and surface temperatures — Part 1: General cal...
Norm
ISO 10211-2:2001
2001 03 15
Thermal bridges in building construction — Calculation of heat flows and surface temperatures — Part...
Norm
ISO 10211-1:1995
1995 08 17
Thermal bridges in building construction — Heat flows and surface temperatures — Part 1: General cal...
Norm
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Norm
ISO 10211:2017
Issue date : 2017 06 21
Thermal bridges in building construction — Heat flows and surface temperatures — Detailed calculations