<?xml version="1.0" encoding="UTF-8"?>



<records>

  <record>
    <language>eng</language>
          <publisher>Oriental Scientific Publishing Company</publisher>
        <journalTitle>Biosciences Biotechnology Research Asia</journalTitle>
          <issn>0973-1245</issn>
            <publicationDate>2016-06-22</publicationDate>
    
        <volume>12</volume>
        <issue>Spl.Edn.2</issue>

 
    <startPage>719</startPage>
    <endPage>724</endPage>

	 
      <doi>10.13005/bbra/2252</doi>
        <publisherRecordId>13643</publisherRecordId>
    <documentType>article</documentType>
    <title language="eng">Numerical Studies into Hydrodynamics and Heat Exchange in Heat Exchangers Using Helical Square and Oval Tubes</title>

    <authors>
	 


      <author>
       <name>Rinat Shaukatovich Misbakhov</name>

 
		
	<affiliationId>1</affiliationId>
      </author>
    

	 


      <author>
       <name>Viktor Mihaylovich Gureev</name>


		
	<affiliationId>2</affiliationId>

      </author>
    

	 


      <author>
       <name>Nikolai Ivanovich Moskalenko</name>

		
	<affiliationId>1</affiliationId>
      </author>
    

	 


      <author>
       <name>Andrey Mihaylovich Ermakov</name>

		
	<affiliationId>2</affiliationId>
      </author>
    


	 


      <author>
       <name>Ilyas Zul’fatovich Bagautdinov</name>

		
	<affiliationId>1</affiliationId>
      </author>
    


	
    </authors>
    
	    <affiliationsList>
	    
		
		<affiliationName affiliationId="1">Kazan State Power Engineering University , Russia, 420066, Kazan, ul. Krasnoselskaya., 51.</affiliationName>
    

		
		<affiliationName affiliationId="2">Kazan National Research Technical University Named After A.N. Tupolev, Russia, 420111, Kazan, ul. Marksa, 10</affiliationName>
    
		
		
		
		
	  </affiliationsList>






    <abstract language="eng">Increase in efficiency of heat exchangers is an urgent task which facilitates
development of compact heat exchangers for various industries. The efficiency can be
increased by various methods: superficial intensification, use of insertion made of twisted
tapes, use of membranes in intra-tube space, flow whirl etc.. One of the approaches to
flow whirl is the use of helical tubes of various cross sections. This work investigates into
heat exchange and hydrodynamics of heat exchanger with helical tubes of square and
oval cross sections. The range of studies of flow modes has been selected involving the
most widely applied in practice Re numbers from 3000 to 20000. Numerical studies have
been aided with ANSYS CFX solver technology and the calculated Menter’s Shear Stress
Transport Turbulence Model. As a consequence, the hydraulic resistance and heat efficiency
of helical tubes of square and oval cross sections have been obtained as a function of flow
mode. The use of helical tubes of square cross section makes it possible to increase heat
transfer from 80 % at lower Re = 3000 to 40 % at Re = 20000. More promising is the
application of oval tubes, for which the heat transfer increases by 90-100 % in all studied
range of Re numbers. Analysis of heat thermal-hydraulic efficiency demonstrates
dominancy of oval helical tubes at higher Re numbers (from 10000), at lower Re numbers
(3000-7500) square helical tubes provide higher thermal-hydraulic efficiency. In addition,
the flow structure has been determined in tubes and in intra-tube space. Analysis of
liquid flow structure in intra-tube space demonstrates better miscibility upon application
of helical tubes of oval cross section, which permits to increase heat transfer by 90 %. The
flow structure with helical tubes of square cross section is close to flow around of plain
tubes.</abstract>

    <fullTextUrl format="html">https://www.biotech-asia.org/vol12_nospl_edn2/numerical-studies-into-hydrodynamics-and-heat-exchange-in-heat-exchangers-using-helical-square-and-oval-tubes/</fullTextUrl>



      <keywords language="eng">
        <keyword>Helical tubes; oval tubes; square tubes; heat exchange; simulation; heat transfer; flow structure</keyword>
      </keywords>

  </record>
</records>