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  <doi_batch_id>aspg-22-971-1791483555</doi_batch_id>
  <timestamp>20261008181915</timestamp>
  <depositor>
   <depositor_name>American Scientific Publishing Group</depositor_name>
   <email_address>admin@americaspg.com</email_address>
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  <registrant>American Scientific Publishing Group</registrant>
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  <journal>
   <journal_metadata language="en">
    <full_title>International Journal of BIM and Engineering Science</full_title>
    <abbrev_title>IJBES</abbrev_title>
    <issn media_type="electronic">2571-1075</issn>
   </journal_metadata>
   <journal_issue>
    <publication_date media_type="online">
     <year>2021</year>
    </publication_date>
    <journal_volume>
     <volume>4</volume>
    </journal_volume>
    <issue>2</issue>
   </journal_issue>
   <journal_article publication_type="full_text">
    <titles>
     <title>Trombe Wall as a Passive Design Strategy in Tunisian Dwelling Using BIM Technology</title>
    </titles>
    <contributors>
     <person_name sequence="first" contributor_role="author">
      <given_name>Habiba Benzarti ep</given_name>
      <surname>Ghedas</surname>
      <affiliations>
       <institution>
        <institution_name>Superior Technical School of Architecture at Barcelona (ETSAB), Polytechnic University of Catalonia (UPC), Barcelona, Spain; Laboratory Studies of Thermal and Energy Systems, LESTE, Engineeri</institution_name>
       </institution>
      </affiliations>
     </person_name>
    </contributors>
    <jats:abstract>
     <jats:p>In Tunisia, the energy consumption associated with the residential building sector has continuously increased over the last three decades. This sector was identified to be one of the most cost-effective sectors for reducing energy consumption by the progress and the use of efficient technologies. Passive and active systems using clean energies are developed to lessen the energy needs and provide a sustainable environment. The Trombe wall system is efficient if it is correctly designed. This study aims to assess the thermal efficiency of the Trombe wall system in the Tunisian climate. To achieve our goal, a promising new technology BIM (Building Information Modeling) is used to evaluate the thermal effect of passive solar heating in Tunisian dwellings. Therefore, Energy Use Intensity, Annual Energy Cost, and Life Cycle Energy Cost parameters are used to assess the performance energetic and environmental of Trombe wall system.</jats:p>
    </jats:abstract>
    <publication_date media_type="online">
     <year>2021</year>
    </publication_date>
    <pages>
     <first_page>79</first_page>
     <last_page>89</last_page>
    </pages>
    <publisher_item>
     <item_number item_number_type="article-number">971</item_number>
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     <ai:license_ref applies_to="vor">https://creativecommons.org/licenses/by/4.0/</ai:license_ref>
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    <doi_data>
     <doi>10.54216/IJBES.040205</doi>
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       <resource mime_type="application/pdf">https://www.americaspg.com/storage/01775602335.pdf</resource>
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