This document specifies a method based on cup tests for determining the water vapour permeance of
building products and the water vapour permeability of building materials under isothermal conditions.
Different sets of test conditions are specified.
The general principles are applicable to all hygroscopic and non-hygroscopic building materials and
products, including insulation materials and including those with facings and integral skins. Annexes
give details of test methods suitable for d...
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This International Standard specifies two alternative methods for determining hygroscopic sorption properties of porous building materials and products: a) using desiccators and weighing cups (desiccator method); b) using a climatic chamber (climatic chamber method). The desiccator method is the reference method. This International Standard does not specify the method for sampling. The methods specified in this International Standard can be used to determine the moisture content of a sample in e...view more

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This International Standard gives simplified calculation methods for: a) The internal surface temperature of a building component or building element below which mould growth is likely, given the internal temperature and relative humidity. The method can also be used to assess the risk of other internal surface condensation problems. b) The assessment of the risk of interstitial condensation due to water vapour diffusion. The method used does not take account of a number of important physical ph...view more

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    • Standard
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ISO 13788:2012 gives simplified calculation methods for:
The internal surface temperature of a building component or building element below which mould growth is likely, given the internal temperature and relative humidity. The method can also be used to assess the risk of other internal surface condensation problems.
The assessment of the risk of interstitial condensation due to water vapour diffusion. The method used does not take account of a number of important physical phenomena includin...
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This standard specifies rules for the execution of permanent protective layers for water-proofings against - ground moisture according to DIN 18195-4 - non-pressing water according to DIN 18195-5 and - outside pressing water according to DIN 18195-6 and states the protective measures which have to be taken to avoid damages of the water-proofing during the construction time.

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    • Standard + National Annex and/or Foreword
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This standard specifies the requirements of water-proofing of buildings. Part 5 gives details about the design and execution of water-proofings against non-pressing water.

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This standard specifies the requirements of waterproofings of buildings against groundmoisture. Part 4 gives details about the design and execution of waterproofings.

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This standard specifies the requirements of water-proofing of buildings. Part 6 gives details about the design and execution of water-proofings against outside pressing water.

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This standard discribes principles of waterproofing of buildings. It contains definition and a table in which waterproofing types are assigned to the kind of water straining and the kind of soil.

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This standard is applicable in connection with waterproofing against - ground moisture according to DIN 18195-4 - non-pressing water according to DIN 18195-5 and - outside pressing water according to DIN 18195-6 used in penetrations, transitions and seals. This standard is not applicable to waterproof coverings for roofs or decks of bridges on public highways (see also DIN 18195-1).

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This standard specifies the requirements of the waterproofing of buildings. Part 3 contains the description of the processing of the materials.

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This standard is applicable in connection with waterproofing against - ground moisture according to DIN 18195-4 - non-pressing water according to DIN 18195-5 and - outside pressing water according to DIN 18195-6 for waterproofing of movement joints in structures.

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This draft European Standard specifies a method of test to determine the resistance of pitched roof coverings to wind-driven rain. The test method is applicable to discontinuously laid unsealed small roof covering elements such as clay tiles, concrete tiles, slates, fibre cement slates and shingles.

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This Technical Report describes a method of test for determining the resistance of pitched roof coverings to wind-driven and deluge rain.
The test method is applicable to discontinuously laid unsealed small roof covering elements such as clay tiles, concrete tiles, slates, fibre cement slates and stones.
NOTE   The test method may be adapted for fittings.

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This standard specifies the definition, method of calculation and method of presentation of winter external design temperatures, used in determining the maximum heat requirements for space heating in buildings. This is linked to a measure of wind speed, for locations where low temperatures occur in conjunction with windy conditions.

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2011-02-08 EMA: // final draft received in ISO/CS (see notification from 2011-02-07 in dataservice).
MINOR AMENDMENT!!!     MINOR AMENDMENT!!!     MINOR AMENDMENT!!!     MINOR AMENDMENT!!!

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This standard deals with the waterproofing of structures by means of bitumious materials, metal strips and synthetic waterproofing sheats to prevent leakage of water pressing from the inside, i. e. water exerting hydrostatic pressure on the waterproog seal from inside, such as in drinking water tanks, reservoirs, swimming pools and stormwater retention tanks. This standard does not deal with seals for earthworks or for protection against chemicals.

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This standard specifies the requirements of materials which are to be used for waterproofings of buildings.

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This standard specifies the equations to be used in a simulation method for calculating the non steady transfer of heat and moisture through building structures.  
It also provides a benchmark example intended to be used for validating a simulation method claiming conformity with this standard, together with the allowed tolerances.
The equations in this standard take account of the following storage and one-dimensional transport phenomena:
-   heat storage in dry building materials and absorbed...
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