EN ISO 10211:2017 PDF
Thermal bridges in building construction - Heat flows and surface temperatures - Detailed calculations (ISO 10211:2017)
Thermal bridges in building construction - Heat flows and surface temperatures - Detailed calculations (ISO 10211:2017)
- Статус документа:
- Действующий
- Формат:
- Электронный (PDF)
- Количество страниц:
- 67
- Дата публикации:
- 19 июля 2017 г.
- Издание:
- CEN EN 10211 edition 2 version 1
- ICS:
- 91.120.10
ISO 10211:2017 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, and - 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 10211:2017 is based upon the following assumptions: - all physical properties are independent of temperature; - there are no heat sources within the building element. ISO 10211:2017 can also be used for the derivation of linear and point thermal transmittances and of surface temperature factors. NOTE Table 1 in the Introduction shows the relative position of ISO 10211:2017 within the set of EPB standards in the context of the modular structure as set out in ISO 52000-1.
Abstract
Overview
EN ISO 10211:2017 (ISO 10211:2017) specifies detailed methods for calculating thermal bridges in building construction. It defines both three‑dimensional (3‑D) and two‑dimensional (2‑D) geometrical models and the numerical procedures needed to determine:
- heat flows for assessment of overall building or element heat loss, and
- minimum surface temperatures to evaluate the risk of surface condensation.
The standard sets the geometrical boundaries and subdivisions of models, thermal boundary conditions, and required thermal values and relationships. It assumes that physical properties are independent of temperature and that there are no internal heat sources within the element. ISO 10211:2017 can also be used to derive linear and point thermal transmittances and surface temperature factors.
Key topics and technical requirements
- Model definitions: detailed rules for 3‑D and 2‑D geometrical modelling (cut‑off planes, subdivisions, auxiliary planes).
- Input data specifications: required thermal conductivities, surface resistances, boundary temperatures, equivalent conductivity for air cavities and quasi‑homogeneous layers.
- Assumptions: material properties considered temperature‑independent; no internal heat sources.
- Calculation method: numerical solution techniques, heat‑flow balance between material cells and environment, rules for cut‑off planes and partitioning.
- Outputs: total heat flow, minimum surface temperatures, thermal coupling coefficients, linear/point thermal transmittances, and surface temperature factors.
- Simplification rules: conditions under which geometrical or material simplifications (e.g., quasi‑homogeneous layers) are acceptable.
- Context in EPB standards: positions ISO 10211 within the set of Energy Performance of Buildings (EPB) standards (see ISO 52000‑1).
Practical applications and users
ISO 10211:2017 is intended for professionals who require rigorous assessment of thermal bridging and surface temperatures, including:
- Building designers and architects - to reduce heat loss and condensation risk in details (junctions, corners, service penetrations).
- Energy assessors and modelers - to derive accurate linear/point thermal transmittances for whole‑building energy calculations and certification.
- Building physicists and consultants - for detailed thermal simulations and compliance with EPBD/energy‑performance requirements.
- Product manufacturers and façade/wall system designers - to evaluate junction performance and support product data.
- Retrofit planners and regulators - to quantify thermal bridging effects in renovation and verification of regulatory compliance.
Typical uses include compliance with energy performance regulations, detailed design of thermal insulation systems, assessment of condensation risk at junctions, and generation of input data for building energy simulation tools.
Related standards
- ISO 52000‑1 (modular structure of EPB standards) - shows ISO 10211’s role within EPB methodology.
- EPB standards developed under ISO/TC 163 and CEN/TC 89 - ISO 10211 is part of the EPB suite for energy performance of buildings.
Keywords: ISO 10211:2017, thermal bridges, heat flow, surface temperatures, linear thermal transmittance, point thermal transmittance, condensation risk, building energy performance, EPB standards.
Технические детали
- Технический комитет
- CEN/TC 89 - Thermal performance of buildings and building components
- SKU
- EN ISO 10211:2017
Похожие стандарты
Стандарты, упомянутые в описании
ISO 10211:2017
ДействующийThermal bridges in building construction — Heat flows and surface temperatures — Detailed calculations
Overview ISO 10211:2017 - Thermal bridges in building construction - Heat flows and surface temperatures - Detailed calculations - defines rigorous procedures for numerical calculation of heat flows…
SIST EN ISO 10211:2017
ДействующийThermal bridges in building construction - Heat flows and surface temperatures - Detailed calculations (ISO 1…
Overview SIST EN ISO 10211:2017 (ISO 10211:2017) specifies detailed methods for calculating thermal bridges in building construction. It defines both three‑dimensional (3‑D) and two‑dimensional (2‑D)…
SIST EN ISO 52000-1:2018
Energy performance of buildings - Overarching EPB assessment - Part 1: General framework and procedures (ISO…
Overview EN ISO 52000-1:2017 - "Energy performance of buildings - Overarching EPB assessment - Part 1: General framework and procedures" (CEN adoption of ISO 52000-1:2017) defines a systematic, modul…