View Item 
      •   IPB Repository
      • Dissertations and Theses
      • Undergraduate Theses
      • UT - Faculty of Agricultural Technology
      • UT - Agricultural and Biosystem Engineering
      • View Item
      •   IPB Repository
      • Dissertations and Theses
      • Undergraduate Theses
      • UT - Faculty of Agricultural Technology
      • UT - Agricultural and Biosystem Engineering
      • View Item
      JavaScript is disabled for your browser. Some features of this site may not work without it.

      Analisis pola aliran dan distribusi suhu udara pada rumah tanaman standard peak menggunakan Computational Fluid Dynamics (CFD)

      Thumbnail
      View/Open
      Full text (2.603Mb)
      Cover (296.9Kb)
      Abstract (328.0Kb)
      Ringkasan (288.9Kb)
      Judul (281.7Kb)
      Lembar Pengesahan (283.2Kb)
      Pernyataan Sumber Skripsi (338.4Kb)
      Biodata (350.0Kb)
      Kata Pengantar (288.5Kb)
      Daftar Isi (399.7Kb)
      BAB I (462.3Kb)
      BAB II (610.0Kb)
      BAB III (596.4Kb)
      BAB IV (1.884Mb)
      BAB V (368.1Kb)
      Daftar Pustaka (417.6Kb)
      Lampiran (754.5Kb)
      Date
      2011
      Author
      Nurianingsih, Resti
      Metadata
      Show full item record
      Abstract
      This experiment was analyzed of air flow and temperature distribution in standard peak greenhouse using computational fluid dynamics (CFD) as a basic consideration for air movement design. The method is using three models of greenhouse which modified condition of being slant roof to be 30o and 45o. The dimensions of greenhouse existing were: 12 m in length, 6 m in width, and 5,14 m in height. The floor was made from concrete. Polycarbonate was used as roof of the greenhouse and the wall was use screen as natural ventilation with 1,5 mm2. The results of the analysis showed that during the daytime, air temperature inside greenhouse surrounding the roof increased by the condition of being slant roof is steep. The CFD simulation showed clearly the air flow and temperature distribution in greenhouse. This cause showed the average of error at 00:00 o’clock is 1,44%, at 07:00 o’clock is 1,83%, at 12:00 o’clock is 2,34%, and at 17:00 o’clock is 1,49%. Therefore, it can be used as basic consideration for the modified of slant roof design with respect to low air temperature and uniform air temperature distribution. It was recommended that one of the optimal condition of being slant roof is 30o.
      URI
      http://repository.ipb.ac.id/handle/123456789/51361
      Collections
      • UT - Agricultural and Biosystem Engineering [3592]

      Copyright © 2020 Library of IPB University
      All rights reserved
      Contact Us | Send Feedback
      Indonesia DSpace Group 
      IPB University Scientific Repository
      UIN Syarif Hidayatullah Institutional Repository
      Universitas Jember Digital Repository
        

       

      Browse

      All of IPB RepositoryCollectionsBy Issue DateAuthorsTitlesSubjectsThis CollectionBy Issue DateAuthorsTitlesSubjects

      My Account

      Login

      Application

      google store

      Copyright © 2020 Library of IPB University
      All rights reserved
      Contact Us | Send Feedback
      Indonesia DSpace Group 
      IPB University Scientific Repository
      UIN Syarif Hidayatullah Institutional Repository
      Universitas Jember Digital Repository