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I.S. EN ISO 10211:2017

Current

Current

The latest, up-to-date edition.

THERMAL BRIDGES IN BUILDING CONSTRUCTION - HEAT FLOWS AND SURFACE TEMPERATURES - DETAILED CALCULATIONS (ISO 10211:2017)

Available format(s)

Hardcopy , PDF

Language(s)

English

Published date

01-01-2017

For Harmonized Standards, check the EU site to confirm that the Standard is cited in the Official Journal.

Only cited Standards give presumption of conformance to New Approach Directives/Regulations.


Dates of withdrawal of national standards are available from NSAI.

€82.00
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National Foreword
European foreword
Foreword
Introduction
1 Scope
2 Normative references
3 Terms and definitions
4 Symbols and subscripts
5 Description of the method
6 Output data and input data
7 Modelling of the construction
8 Input data specifications
9 Calculation method
10 Determination of thermal coupling coefficients and heat
   flow rate from 3-D calculations
11 Calculations using linear and point thermal transmittances
   from 3-D calculations
12 Determination of thermal coupling coefficient, heat flow
   rate and linear thermal transmittance from 2-D calculations
13 Determination of the temperature at the internal surface
14 Report
Annex A (normative) - Input and method selection data
        sheet - Template
Annex B (informative) - Input and method selection data
        sheet - Default choices
Annex C (normative) - Validation of calculation methods
Annex D (normative) - Examples of the determination of the
        linear and point thermal transmittances
Annex E (normative) - Determination of values of thermal
        coupling coefficient and temperature weighting factor
        for more than two boundary temperatures
Bibliography

Gives 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, and - minimum surface temperatures, in order to assess the risk of surface condensation.

DevelopmentNote
Supersedes I.S. EN ISO 10211-1 and I.S. EN ISO 10211-2. (02/2008)
DocumentType
Standard
Pages
74
PublisherName
National Standards Authority of Ireland
Status
Current
Supersedes

Standards Relationship
ISO 10211:2017 Identical
EN ISO 10211:2017 Identical

ISO 13789:2017 Thermal performance of buildings — Transmission and ventilation heat transfer coefficients — Calculation method
CEN/TS 16629:2014 Energy Performance of Buildings - Detailed Technical Rules for the set of EPB-standards
EN 673:2011 Glass in building - Determination of thermal transmittance (U value) - Calculation method
ISO 13788:2012 Hygrothermal performance of building components and building elements — Internal surface temperature to avoid critical surface humidity and interstitial condensation — Calculation methods
CEN/TS 16628:2014 Energy Performance of Buildings - Basic Principles for the set of EPB standards
ISO 52000-1:2017 Energy performance of buildings — Overarching EPB assessment — Part 1: General framework and procedures
ISO 10077-2:2017 Thermal performance of windows, doors and shutters — Calculation of thermal transmittance — Part 2: Numerical method for frames
ISO/TR 52019-2:2017 Energy performance of buildings Hygrothermal performance of building components and building elements Part 2: Explanation and justification
ISO 10456:2007 Building materials and products — Hygrothermal properties — Tabulated design values and procedures for determining declared and design thermal values
ISO 13370:2017 Thermal performance of buildings — Heat transfer via the ground — Calculation methods
ISO/TR 52000-2:2017 Energy performance of buildings Overarching EPB assessment Part 2: Explanation and justification of ISO 52000-1
ISO 6946:2017 Building components and building elements — Thermal resistance and thermal transmittance — Calculation methods
ISO 7345:1987 Thermal insulation Physical quantities and definitions
ISO 14683:2017 Thermal bridges in building construction — Linear thermal transmittance — Simplified methods and default values

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