Publication result detail

Pulse Transient Method as a Tool for the Study of Thermal Properties of Solar Cell Laminating Films

ZMEŠKAL, O.; ŠTEFKOVÁ, P.; HŘEBENOVÁ, L.; BAŘINKA, R.

Original Title

Pulse Transient Method as a Tool for the Study of Thermal Properties of Solar Cell Laminating Films

English Title

Pulse Transient Method as a Tool for the Study of Thermal Properties of Solar Cell Laminating Films

Type

Peer-reviewed article not indexed in WoS or Scopus

Original Abstract

The paper reports a study on the possible influence of surroundings on thermal properties of various types of laminating films used in the design of photovoltaic (PV) modules based on crystalline silicon. The main purpose of cell encapsulation is to provide protection of photovoltaic panels against environmental damage (especially humidity).

English abstract

The paper reports a study on the possible influence of surroundings on thermal properties of various types of laminating films used in the design of photovoltaic (PV) modules based on crystalline silicon. The main purpose of cell encapsulation is to provide protection of photovoltaic panels against environmental damage (especially humidity).

Keywords

fractal analysis, fractal structure, specific heat, thermal conductivity, thermal diffusivity, thermo vision, transient pulse method

Key words in English

fractal analysis, fractal structure, specific heat, thermal conductivity, thermal diffusivity, thermo vision, transient pulse method

Authors

ZMEŠKAL, O.; ŠTEFKOVÁ, P.; HŘEBENOVÁ, L.; BAŘINKA, R.

RIV year

2010

Released

26.11.2009

Publisher

SpringerLink

Location

USA

ISBN

0195-928X

Periodical

INTERNATIONAL JOURNAL OF THERMOPHYSICS

Volume

30

Number

6

State

United States of America

Pages from

1891

Pages to

1901

Pages count

11

BibTex

@article{BUT48308,
  author="Oldřich {Zmeškal} and Pavla {Štefková} and Lenka {Dohnalová} and Radim {Bařinka}",
  title="Pulse Transient Method as a Tool for the Study of Thermal Properties of Solar Cell Laminating Films",
  journal="INTERNATIONAL JOURNAL OF THERMOPHYSICS",
  year="2009",
  volume="30",
  number="6",
  pages="1891--1901",
  issn="0195-928X"
}