Effect of wall orientation of the sand concrete lightened by wood shavings on the time lag and the decrement factor

The development of new lightweight concrete based on the valorization of local materials and waste in construction is an environmental and sustainable approach. In this context, the studied composite is a sand concrete (dune and alluvial) lightened by wood shavings to improve its thermophysical prop...

Full description

Bibliographic Details
Main Authors: Belhadj Belkacem, Goullieux Adeline, Bederina Madani, Quéneudec Michèle
Format: Article
Language:English
Published: EDP Sciences 2020-01-01
Series:MATEC Web of Conferences
Online Access:https://www.matec-conferences.org/articles/matecconf/pdf/2020/26/matecconf_icome2019_01013.pdf
id doaj-b8a14cef5148419da4d36757af08223e
record_format Article
spelling doaj-b8a14cef5148419da4d36757af08223e2021-08-05T13:53:07ZengEDP SciencesMATEC Web of Conferences2261-236X2020-01-013300101310.1051/matecconf/202033001013matecconf_icome2019_01013Effect of wall orientation of the sand concrete lightened by wood shavings on the time lag and the decrement factorBelhadj Belkacem0Goullieux Adeline1Bederina Madani2Quéneudec Michèle3SREML Laboratory, University Amar TelidjiResearch Unit EPROAD, University of Picardie Jules VerneSREML Laboratory, University Amar TelidjiResearch Unit EPROAD, University of Picardie Jules VerneThe development of new lightweight concrete based on the valorization of local materials and waste in construction is an environmental and sustainable approach. In this context, the studied composite is a sand concrete (dune and alluvial) lightened by wood shavings to improve its thermophysical properties. The objective is to investigate the orientation effect of an outside wall made with this material in an arid environment on the thermophysical properties of the wall, namely the time lag (Φ) and the decrement factor (f). The experimental study has been dedicated, first of all, to determine the optimal composition of sand concrete lightened by wood shavings, which the content is 60 kg/m3. This composition is a compromise between studied compactness and workability. Then, to study the thermal properties of the sand concrete without wood shavings (SC-W-WS) and sand concrete lightened by wood shavings (SC-WS). Finally, a numerical simulation using the EnergyPlus software was made to study the wall orientation effect designed in the Laghouat city (south of Algeria). The results obtained show that the substitution of sand by wood shavings has improved thermal properties of the wood sand concrete namely: the thermal conductivity, the specific heat and the thermal diffusivity. The simulation results are very interesting, because all orientations are right for the sand concrete lightened by wood shavings (SC-WS). Nevertheless, the north and the west orientations are wrong in the case of the sand concrete (SC-W-WS). However, the east orientation has the longest time lag, which is consistent with the literature. The advantage of these results is in favour of concrete having improved thermophysical properties.https://www.matec-conferences.org/articles/matecconf/pdf/2020/26/matecconf_icome2019_01013.pdf
collection DOAJ
language English
format Article
sources DOAJ
author Belhadj Belkacem
Goullieux Adeline
Bederina Madani
Quéneudec Michèle
spellingShingle Belhadj Belkacem
Goullieux Adeline
Bederina Madani
Quéneudec Michèle
Effect of wall orientation of the sand concrete lightened by wood shavings on the time lag and the decrement factor
MATEC Web of Conferences
author_facet Belhadj Belkacem
Goullieux Adeline
Bederina Madani
Quéneudec Michèle
author_sort Belhadj Belkacem
title Effect of wall orientation of the sand concrete lightened by wood shavings on the time lag and the decrement factor
title_short Effect of wall orientation of the sand concrete lightened by wood shavings on the time lag and the decrement factor
title_full Effect of wall orientation of the sand concrete lightened by wood shavings on the time lag and the decrement factor
title_fullStr Effect of wall orientation of the sand concrete lightened by wood shavings on the time lag and the decrement factor
title_full_unstemmed Effect of wall orientation of the sand concrete lightened by wood shavings on the time lag and the decrement factor
title_sort effect of wall orientation of the sand concrete lightened by wood shavings on the time lag and the decrement factor
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2020-01-01
description The development of new lightweight concrete based on the valorization of local materials and waste in construction is an environmental and sustainable approach. In this context, the studied composite is a sand concrete (dune and alluvial) lightened by wood shavings to improve its thermophysical properties. The objective is to investigate the orientation effect of an outside wall made with this material in an arid environment on the thermophysical properties of the wall, namely the time lag (Φ) and the decrement factor (f). The experimental study has been dedicated, first of all, to determine the optimal composition of sand concrete lightened by wood shavings, which the content is 60 kg/m3. This composition is a compromise between studied compactness and workability. Then, to study the thermal properties of the sand concrete without wood shavings (SC-W-WS) and sand concrete lightened by wood shavings (SC-WS). Finally, a numerical simulation using the EnergyPlus software was made to study the wall orientation effect designed in the Laghouat city (south of Algeria). The results obtained show that the substitution of sand by wood shavings has improved thermal properties of the wood sand concrete namely: the thermal conductivity, the specific heat and the thermal diffusivity. The simulation results are very interesting, because all orientations are right for the sand concrete lightened by wood shavings (SC-WS). Nevertheless, the north and the west orientations are wrong in the case of the sand concrete (SC-W-WS). However, the east orientation has the longest time lag, which is consistent with the literature. The advantage of these results is in favour of concrete having improved thermophysical properties.
url https://www.matec-conferences.org/articles/matecconf/pdf/2020/26/matecconf_icome2019_01013.pdf
work_keys_str_mv AT belhadjbelkacem effectofwallorientationofthesandconcretelightenedbywoodshavingsonthetimelagandthedecrementfactor
AT goullieuxadeline effectofwallorientationofthesandconcretelightenedbywoodshavingsonthetimelagandthedecrementfactor
AT bederinamadani effectofwallorientationofthesandconcretelightenedbywoodshavingsonthetimelagandthedecrementfactor
AT queneudecmichele effectofwallorientationofthesandconcretelightenedbywoodshavingsonthetimelagandthedecrementfactor
_version_ 1721220411155283968