Detail publikačního výsledku

Effect of Ventilation in Protected Escape Ways upon the Thermal Properties of these Spaces

RUSINOVÁ, M.; KALOUSEK, M.; SEDLÁKOVÁ, M.

Original Title

Effect of Ventilation in Protected Escape Ways upon the Thermal Properties of these Spaces

English Title

Effect of Ventilation in Protected Escape Ways upon the Thermal Properties of these Spaces

Type

Peer-reviewed article not indexed in WoS or Scopus

Original Abstract

Protected escape ways enable the rescuing of persons to the outside of a building on fire. They are characterized, in particular, by strict requirements relating to the aeration of such spaces. However, the fulfilling of these limits may impact the monitored thermal characteristics of the respective internal areas. The outlined dilemma will be illustrated by way of an example of a protected escape way aerated by positive-pressure ventilation.

English abstract

Protected escape ways enable the rescuing of persons to the outside of a building on fire. They are characterized, in particular, by strict requirements relating to the aeration of such spaces. However, the fulfilling of these limits may impact the monitored thermal characteristics of the respective internal areas. The outlined dilemma will be illustrated by way of an example of a protected escape way aerated by positive-pressure ventilation.

Keywords

Aeration, Protected Escape Way, Positive-Pressure Ventilation, Thermal Characteristics

Key words in English

Aeration, Protected Escape Way, Positive-Pressure Ventilation, Thermal Characteristics

Authors

RUSINOVÁ, M.; KALOUSEK, M.; SEDLÁKOVÁ, M.

RIV year

2017

Released

05.12.2016

Publisher

Trans Tech Publications

Location

Switzerland

ISBN

2297-8941

Periodical

Applied Mechanics and Materials

Volume

2016

Number

861

State

Swiss Confederation

Pages from

409

Pages to

416

Pages count

8

URL

Full text in the Digital Library

BibTex

@article{BUT130678,
  author="Marie {Rusinová} and Miloš {Kalousek} and Markéta {Sedláková}",
  title="Effect of Ventilation in Protected Escape Ways upon the Thermal Properties of these Spaces",
  journal="Applied Mechanics and Materials",
  year="2016",
  volume="2016",
  number="861",
  pages="409--416",
  doi="10.4028/www.scientific.net/AMM.861.409",
  issn="2297-8941",
  url="http://www.scientific.net/AMM.861409"
}