<rss version="2.0">
   <channel>
      <title>Varadharaju  Ramasamy  </title>
      
      
      <link>http://irplus.eng.usm.my:8080/ir_plus/viewContributorPage.action;jsessionid=F31AF8C3EC9C81636A0B438F35934FB0?personNameId=5845</link>
      <description>Contributor Page for: Varadharaju  Ramasamy  </description>
      <generator>EngLib USM</generator>
      
      <item>
               <title>Heat transfer in fluidized bed / Varadharaju Ramasamy</title>
			   <link>http://irplus.eng.usm.my:8080/ir_plus/institutionalPublicationPublicView.action;jsessionid=F31AF8C3EC9C81636A0B438F35934FB0?institutionalItemVersionId=7307</link>
			   <description>Projek ini membuat penyelidikan tentang perolakan bebas yang berlaku dalam porous medium. Penyelidikan ini mengunakan penyelesaian dua paksi untuk paksi datar.Penyelesaian untuk penyelidikan ini tidak bergantung kepada syarat –sayarat paksi.Dalam kes ini, perolakan bebas dalam keadaan tertutup dan plat tertanam dalam medium porous diambil kira . Penyelidikan mengenai perolakan diambil sebagai keadaan sekata. Penyelesaian dua paksi boleh digunakan dalam penyelesaian ini. Program digunakan untuk menganalisa perubahan suhu bagi jasad tersebut .Analisa tentang nusselt number dibuat  .Garisan suhu tetap bagi suhu 180 diperolehi untuk saiz bahan dan porosity. Nisbah Nu diperolehi bagi keadaan diatas .Segala keputusan dibandingkan dengan keputusan yang sedia ada.  
____________________________________________________________________________________________

This report analyzes free convection heat transfer in porous medium through finite element method. . Two dimensional plane problems are considered in this program. The restriction of boundary layer assumption is relaxed. Convection in a     enclosed porous medium and convection past a vertical wall embedded in a porous medium is analyzed using two-dimensional modal for quasi steady state. The effect of aspect ratio on Nusselt number is studied. A transient model developed for the plane problem and used to study the variation of Nusselt number with time in a confined porous enclosure until steady state is reached. The isotherms and streamlines are obtained at the different porosity and particle size. Results are verified with those available in literature.  </description>
               <pubDate>Mon, 02 Nov 2020 11:27:03 +0800</pubDate>
               <guid  isPermaLink="false">institutional_item_version_id:7307</guid>
          </item>
      </channel>
</rss>