The influence of leakage of insulating layer on thermal parameters of ethics system
The influence of leakage of insulating layer on thermal parameters of ethics system
Data
2013
Autorzy
Orlik-Kożdoń, Bożena
Tytuł czasopisma
ISSN czasopisma
Tytuł tomu
Wydawca
Państwowa Szkoła Wyższa im. Papieża Jana Pawła II w Białej Podlaskiej
Streszczenie
The purpose of this paper is to show a part of results of research in examination
of rigid material used for thermal insulation with modified structure. Modification
of the material was relying on making of parallel perforations to the direction of
the heat and moisture flow. The base solid material was an expanded polystyrene
(15EPS-70-040) with board thickness of 5 cm. In the base material the circular
perforations with diameter of 1, 3 and 5 mm were done, on the 2 cm x2cm grid
(for 15EPS-70-40 material additional samples were done with perforations 7,9
and 11 mm). The researches were divided to preliminary and essential ones. The
scope of research included the measurement of water vapour factor’s transfer as
well as the measurement of heat conductivity factor; the thermographic control of
bulkhead insulated by solid and perforated Styrofoam, the simulation of thermalmoisture
phenomena in analyzed bulkheads. The essential research was conducted
in the Laboratory of Solar Energy Usage in the Faculty of Architecture. Two wall
arrangements were analyzed in the research. The common element was the wall’s
carrying construction. The first bulkhead was insulated by the material with a
modified structure - the styrofoam with 5mm perforation. The relative temperature
and humidity of external and internal air was registered, on the border of the
bulkhead layers as well. The external climate parameters were registered by the
Kombi weather station. In the framework of research the mathematical model of
coaxial transport processes was verified. Moreover, selected thermal-moisture
parameters of wall arrangements were specified. These were as follows: the heat
conductivity factor U, the dimensionless temperature of internal surface fRsi, the
water vapour flow.
Opis
Słowa kluczowe
thermal insulation,
thermal conductivity factor,
water vapour factor,
thermal-moisture process in bulkhead