Experimental data and calibration processes to a new and simple device dedicated to the thermo-optical properties of a polycarbonate construction material

Thermo-optical properties of construction materials are important factors while designing a building. Human comfort and environmental issues are the main reasons inciting researchers to work in this field. For instance, the thermal conductivity coefficient, the optical reflectance, the optical trans...

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Main Authors: Damien Ali Hamada Fakra, Blazquez Recio Alfonso José, Nour Mohammad Murad, Ando Ny Aina Randriantsoa, Jean Claude Gatina
Format: Article
Language:English
Published: Elsevier 2020-10-01
Series:Data in Brief
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2352340920311835
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spelling doaj-d738fd2923884f44ab6fc42a02bb5e9e2020-11-25T04:00:57ZengElsevierData in Brief2352-34092020-10-0132106289Experimental data and calibration processes to a new and simple device dedicated to the thermo-optical properties of a polycarbonate construction materialDamien Ali Hamada Fakra0Blazquez Recio Alfonso José1Nour Mohammad Murad2Ando Ny Aina Randriantsoa3Jean Claude Gatina4PIMENT Laboratory - University of la Réunion, 117 Rue du General Ailleret, 97430 Le Tampon, Reunion; Corresponding author.Escuela Tecnica Superior de ICCP - University of Granada, Calle Doctor Severo Ochoa, S/N, 18001 Granada, SpainEnergy Lab (LE2P) Laboratory - University of la Réunion, 40 Avenue de Soweto, 97410 Saint-Pierre, ReunionHigher Institute of Technology of Antananarivo (I.S.T), Ministry of Higher Education and Scientific Research, Iadiambola Ampasampito, PO Box 8122, Antananarivo 101, MadagascarPIMENT Laboratory - University of la Réunion, 117 Rue du General Ailleret, 97430 Le Tampon, ReunionThermo-optical properties of construction materials are important factors while designing a building. Human comfort and environmental issues are the main reasons inciting researchers to work in this field. For instance, the thermal conductivity coefficient, the optical reflectance, the optical transmittance and the optical absorbance of materials are frequently measured properties in civil engineering. Currently, each of these physical coefficients is measured separately by various devices. A new experimental device is therefore designed to measure these properties in a single unit. The data presented in the article consists of the experimentation process of designing a new type device. This paper includes data for calibration, measurements and validation for the elements of the new device. This data has been collected in the laboratory and is made available for reproducibility and improvement research in the field of thermo-optical properties of construction materials. This data article is related to the original research article of Fakra et al. denoted “A new simple experimental device for measuring the thermo-optical properties of translucent construction materials.” [1].http://www.sciencedirect.com/science/article/pii/S2352340920311835ReflectanceTransmittanceAbsorbanceThermal conductivityLow-costDevise
collection DOAJ
language English
format Article
sources DOAJ
author Damien Ali Hamada Fakra
Blazquez Recio Alfonso José
Nour Mohammad Murad
Ando Ny Aina Randriantsoa
Jean Claude Gatina
spellingShingle Damien Ali Hamada Fakra
Blazquez Recio Alfonso José
Nour Mohammad Murad
Ando Ny Aina Randriantsoa
Jean Claude Gatina
Experimental data and calibration processes to a new and simple device dedicated to the thermo-optical properties of a polycarbonate construction material
Data in Brief
Reflectance
Transmittance
Absorbance
Thermal conductivity
Low-cost
Devise
author_facet Damien Ali Hamada Fakra
Blazquez Recio Alfonso José
Nour Mohammad Murad
Ando Ny Aina Randriantsoa
Jean Claude Gatina
author_sort Damien Ali Hamada Fakra
title Experimental data and calibration processes to a new and simple device dedicated to the thermo-optical properties of a polycarbonate construction material
title_short Experimental data and calibration processes to a new and simple device dedicated to the thermo-optical properties of a polycarbonate construction material
title_full Experimental data and calibration processes to a new and simple device dedicated to the thermo-optical properties of a polycarbonate construction material
title_fullStr Experimental data and calibration processes to a new and simple device dedicated to the thermo-optical properties of a polycarbonate construction material
title_full_unstemmed Experimental data and calibration processes to a new and simple device dedicated to the thermo-optical properties of a polycarbonate construction material
title_sort experimental data and calibration processes to a new and simple device dedicated to the thermo-optical properties of a polycarbonate construction material
publisher Elsevier
series Data in Brief
issn 2352-3409
publishDate 2020-10-01
description Thermo-optical properties of construction materials are important factors while designing a building. Human comfort and environmental issues are the main reasons inciting researchers to work in this field. For instance, the thermal conductivity coefficient, the optical reflectance, the optical transmittance and the optical absorbance of materials are frequently measured properties in civil engineering. Currently, each of these physical coefficients is measured separately by various devices. A new experimental device is therefore designed to measure these properties in a single unit. The data presented in the article consists of the experimentation process of designing a new type device. This paper includes data for calibration, measurements and validation for the elements of the new device. This data has been collected in the laboratory and is made available for reproducibility and improvement research in the field of thermo-optical properties of construction materials. This data article is related to the original research article of Fakra et al. denoted “A new simple experimental device for measuring the thermo-optical properties of translucent construction materials.” [1].
topic Reflectance
Transmittance
Absorbance
Thermal conductivity
Low-cost
Devise
url http://www.sciencedirect.com/science/article/pii/S2352340920311835
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