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I.S. EN ISO 12241:2008

Superseded

Superseded

A superseded Standard is one, which is fully replaced by another Standard, which is a new edition of the same Standard.

View Superseded by

THERMAL INSULATION FOR BUILDING EQUIPMENT AND INDUSTRIAL INSTALLATIONS - CALCULATION RULES

Available format(s)

Hardcopy , PDF

Superseded date

04-03-2023

Superseded by

I.S. EN ISO 12241:2022

Language(s)

English

Published date

01-01-2008

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.

€88.00
Excluding VAT

Foreword
Introduction
1 Scope
2 Normative references
3 Terms, definitions and symbols
  3.1 Terms and definitions
  3.2 Definition of symbols
  3.3 Subscripts
4 Calculation methods for heat transfer
  4.1 Fundamental equations for heat transfer
  4.2 Surface temperature
  4.3 Prevention of surface condensation
  4.4 Determination of total heat flow rate for plane walls,
      pipes and spheres
5 Calculation of the temperature change in pipes, vessels and
  containers
  5.1 Longitudinal temperature change in a pipe
  5.2 Temperature change and cooling times in pipes, vessels
      and containers
6 Calculation of cooling and freezing times of stationary liquids
  6.1 Calculation of the cooling time for a given thickness of
      insulation to prevent the freezing of water in a pipe
  6.2 Calculation of the freezing time of water in a pipe
7 Determination of the influence of thermal bridges
  7.1 General
  7.2 Calculation of correction terms for plane surfaces
  7.3 Calculation of correction terms for pipes
8 Underground pipelines
  8.1 General
  8.2 Calculation of heat loss (single line) without channels
  8.3 Other cases
Annex A (normative) - Thermal bridges in pipe insulation
Annex B (informative) - Projecting thermal bridges of roughly
        constant cross-section
Annex C (informative) - Examples
Bibliography

Provides rules for the calculation of heat-transfer-related properties of building equipment and industrial installations, predominantly under steady-state conditions.

DocumentType
Standard
Pages
58
PublisherName
National Standards Authority of Ireland
Status
Superseded
SupersededBy
Supersedes

ISO 9229:2007 Thermal insulation Vocabulary
ISO 13787:2003 Thermal insulation products for building equipment and industrial installations Determination of declared thermal conductivity
ISO 10211:2017 Thermal bridges in building construction — Heat flows and surface temperatures — Detailed calculations
ASTM C 680 : 2014 : REDLINE Standard Practice for Estimate of the Heat Gain or Loss and the Surface Temperatures of Insulated Flat, Cylindrical, and Spherical Systems by Use of Computer Programs
ISO 9346:2007 Hygrothermal performance of buildings and building materials — Physical quantities for mass transfer — Vocabulary
ISO 23993:2008 Thermal insulation products for building equipment and industrial installations — Determination of design thermal conductivity
ISO 8497:1994 Thermal insulation — Determination of steady-state thermal transmission properties of thermal insulation for circular pipes
VDI 2055 Blatt 1:2008-09 Thermal insulation of heated and refrigerated operational installations in the industry and the building services - Calculation rules
ISO 8302:1991 Thermal insulation — Determination of steady-state thermal resistance and related properties — Guarded hot plate apparatus
ISO 8301:1991 Thermal insulation — Determination of steady-state thermal resistance and related properties — Heat flow meter apparatus
ISO 9288:1989 Thermal insulation — Heat transfer by radiation — Physical quantities and definitions
ISO 9251:1987 Thermal insulation Heat transfer conditions and properties of materials Vocabulary
ISO 7345:1987 Thermal insulation Physical quantities and definitions
BS 5422:2001 Method for specifying thermal insulating materials for pipes, tanks, vessels, ductwork and equipment operating within the temperature range -40°C to +700°C

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