Please use this identifier to cite or link to this item: https://dspace.univ-ouargla.dz/jspui/handle/123456789/20551
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dc.contributor.advisorAbdelouahed KRIKER-
dc.contributor.authorMEKHERMECHE, Abdeslam-
dc.date.accessioned2017-11-16T10:48:52Z-
dc.date.available2017-11-16T10:48:52Z-
dc.date.issued2017-
dc.identifier.urihttp://dspace.univ-ouargla.dz/jspui/handle/123456789/20551-
dc.descriptionConstructions Civilesen_US
dc.description.abstractLameilleure façon d’assurerledéveloppementdurabledusystèmeénergétique passe del’avisgénéralparlaréductiondelaconsommation detouteslesressources énergétiques.unebonnepartiedeladéperditiondechaleurdanslesconstructions se faisantparlesmurs.lesmatériaux isolantsralentissent letransfert dechaleuràtravers l’enveloppe dubâtiment .laqualitédel’isolantàprévoird’épandduclimatde l’expositiondesmursetaussidesmatériaux employéspourlaconstruction.ausud algérienlaconsommationénergétiqueesttrèsimportantvusonclimatdésertique chaudetsecenétéetfroidenhiverd’oùlintérêt d’utiliserlamaçonnerieenbrique de terrecrueetcuite. L’objetdecetterechercheestdefairel’étudedecestroisgrandesparties: - Etudedespropriétésthermiquesdesbriquescuiteindustriellesmaisoùlestrous desbriquessontremplisparunmélangeargileavecsablededune - Etudedespropriétésthermiquesetmécaniquesdesbriquescruesenterreavec sablededuneoùlepourcentagedesableetde0% ;10%;20%;30%et40% cesdernièresserontrenforcéespardesfibresde palmieroùlepourcentageetde 0%;1%;2%et3%enmasseetlespropretésthermiquesetmécaniquesdes briquescuitésoùlepourcentagedel’argileetde100%;99%;98%;97% renforcéespardesfibresdepalmieroùlepourcentageetde0%;1%;2% et3 %dela masseglobale. - Etudethermiquesurdesprototypesde1x1x1m2réalisésdesbriquescrues Lesrésultatsontmontré quel’augmentationdu1%;2% et3%defibreestbénéfique pourl’amélioration.des propriétésthermiquesavecdesrésistancesmécaniques acceptables. Nousavonsobtenusà14hunécartdetempératuresextérieuresetintérieurs très remarquablecomparéauprototypetémoin.en_US
dc.description.abstractThe construction materials usually used in the large Algerian Sahara are the concrete, cinder, mortar which represents poor thermal propretés which adversely effects on the energy consumption. The Great Sahara of our country is characterized by a hot and dry climate in summer, cold, and dry in the winter. In the concern of valuing materials, premises and contribute to the reduction of this consumption (loads), and to improve the thermal comfort in the buildings it is necessary to implement of materials particularly performing providing a good thermo mechanical cleanliness to. The purpose of this research is to make the study of these three major parties: - Study of thermal properties of hollow bricks industrial but where the holes in the bricks are filled by a mixture clay more dune sand - Study of the thermal and mechanical properties of the raw clay bricks plus dune sand where the percentage of sand and 0%; 10%; 20%; 30% and 40% these will be reinforced by palm fibers where the percentage and 0%; 1%; 2% and 3% by mass and the thermal and mechanical properties of the bricks in which the percentage of clay and 100%; 99%; 98%; 97% reinforced with palm fibers where the percentage and 0%; 1%; 2% and 3% by mass - Thermal study on prototypes of 1 m2 made of raw bricks The results showed that the increase in% of fiber is beneficial for the improvement of thermal properties with acceptable mechanical resistances. At 1400 we obtained a very remarkable temperature difference compared to the prototype control-
dc.language.isofren_US
dc.subjectConstructionen_US
dc.subjectsable de dunesen_US
dc.subjectbrique de terrecuitéen_US
dc.subjectRésistance thermiqueen_US
dc.subjectfiber-
dc.subjectsand-
dc.subjectclay-
dc.subjectBrick Earth raw-
dc.subjectThermal resistance-
dc.subjectmechanical Resistance and temperature difference-
dc.titleÉtude thermique des briques en terre destinées aux constructions en zones sahariennesen_US
dc.typeThesisen_US
Appears in Collections:Département de Hydraulique et Génie Civil - Doctorat

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