Publication detail

Vaporization box for monitoring of moisture generation depending on the temperature and relative humidity

KOLÁŘ, R. BRZOŇ, R.

Original Title

Vaporization box for monitoring of moisture generation depending on the temperature and relative humidity

Type

journal article - other

Language

English

Original Abstract

Determination of the surface temperature in order to evaluate the risk of mould growth is currently already a common task. Good knowledge of boundary conditions is necessary for precise evaluation of this risk. Standardized requirements are suitable for a preliminary design and a general comparison of various assembly details, as they help us understand how these details will work (in defined boundary conditions). But the real user behaviour varies greatly and is not always in agreement with the standardized requirements. Air humidity is one of the parameters which significantly influence the mould growth. It varies depending on the use of the building and especially on the number of moisture (humidity) sources. To determine the production of moisture by different sources we built an vaporization climatic chamber, where we monitor the production of moisture in dependence on relative air humidity and air temperature.

Keywords

Moisture; Moisture determination; Moisture meters; Measuring instruments; Technical standards; Evaporation; Air humidity; Source of humidity.

Authors

KOLÁŘ, R.; BRZOŇ, R.

Released

28. 1. 2016

Publisher

Trans Tech Publications, Switzerland

Location

Switzerland

ISBN

1662-7482

Periodical

Applied Mechanics and Materials

Number

824

State

Swiss Confederation

Pages from

614

Pages to

622

Pages count

9

BibTex

@article{BUT121383,
  author="Radim {Kolář} and Roman {Brzoň}",
  title="Vaporization box for monitoring of moisture generation depending on the temperature and relative humidity",
  journal="Applied Mechanics and Materials",
  year="2016",
  number="824",
  pages="614--622",
  doi="10.4028/www.scientific.net/AMM.824.614",
  issn="1662-7482"
}