Non-Isothermal Hydrodynamic Characteristics of a Nanofluid in a Fin-Attached Rotating Tube Bundle

被引:34
作者
Alazwari, Mashhour A. [1 ]
Safaei, Mohammad Reza [1 ,2 ,3 ]
机构
[1] King Abdulaziz Univ, Fac Engn, Mech Engn Dept, Jeddah 21589, Saudi Arabia
[2] China Med Univ, China Med Univ Hosp, Dept Med Res, Taichung 40402, Taiwan
[3] Florida Int Univ, Dept Civil & Environm Engn, Miami, FL 33174 USA
关键词
tube bundle; mixture model; nanofluid; finned rotating tube; pressure drop; HEAT-TRANSFER ENHANCEMENT; MIXED CONVECTION; THERMODYNAMICAL FORMULATION; TRANSFER PERFORMANCE; PRESSURE-DROP; FLOW; CAVITY; WATER; TEMPERATURE; EFFICIENCY;
D O I
10.3390/math9101153
中图分类号
O1 [数学];
学科分类号
0701 ; 070101 ;
摘要
In the present study, a novel configuration of a rotating tube bundle was simulated under non-isothermal hydrodynamic conditions using a mixture model. Eight fins were considered in this study, which targeted the hydrodynamics of the system. An aqueous copper nanofluid was used as the heat transfer fluid. Various operating factors, such as rotation speed (up to 500 rad/s), Reynolds number (10-80), and concentration of the nanofluid (0.0-4.0%) were applied, and the performance of the microchannel heat exchanger was assessed. It was found that the heat transfer coefficient of the system could be enhanced by increasing the Reynolds number, the concentration of the nanofluid, and the rotation speed. The maximum enhancement in the heat transfer coefficient (HTC) was 258% after adding a 4% volumetric nanoparticle concentration to the base fluid and increasing Re from 10 to 80 and omega from 0 to 500 rad/s. Furthermore, at Re = 80 and omega = 500 rad/s, the HTC values measured for the nanofluid were 42.3% higher than those calculated for water, showing the nanoparticles' positive impact on the heat transfer paradigm. Moreover, it was identified that copper nanoparticles' presence had no significant effect on the system's pressure drop. This was attributed to the interaction of the fluid flow and circulated flow around the tubes. Finally, the heat transfer coefficient and pressure drop had no considerable changes when augmenting the rotation speed at high Reynolds numbers.
引用
收藏
页数:24
相关论文
共 69 条
  • [1] Performance characteristics of low concentrations of CuO/water nanofluids flowing through horizontal tube for energy efficiency purposes; an experimental study and ANN modeling
    Abdollahi-Moghaddam, Mohammad
    Motahari, Kazem
    Rezaei, Ali
    [J]. JOURNAL OF MOLECULAR LIQUIDS, 2018, 271 : 342 - 352
  • [2] Turbulent heat transfer and nanofluid flow in an annular cylinder with sudden reduction
    Abdulrazzaq, Tuqa
    Togun, Hussein
    Goodarzi, Marjan
    Kazi, S. N.
    Ariffin, M. K. A.
    Adam, N. M.
    Hooman, Kamel
    [J]. JOURNAL OF THERMAL ANALYSIS AND CALORIMETRY, 2020, 141 (01) : 373 - 385
  • [3] A THERMODYNAMICALLY CONSISTENT RATE-DEPENDENT MODEL FOR TURBULENT 2-PHASE FLOWS
    ABUZAID, S
    AHMADI, G
    [J]. INTERNATIONAL JOURNAL OF NON-LINEAR MECHANICS, 1995, 30 (04) : 509 - 529
  • [4] A THERMODYNAMICAL FORMULATION FOR DISPERSED MULTIPHASE TURBULENT FLOWS .1. BASIC THEORY
    AHMADI, G
    MA, D
    [J]. INTERNATIONAL JOURNAL OF MULTIPHASE FLOW, 1990, 16 (02) : 323 - 340
  • [5] ON THE MECHANICS OF INCOMPRESSIBLE MULTIPHASE SUSPENSIONS
    AHMADI, G
    [J]. ADVANCES IN WATER RESOURCES, 1987, 10 (01) : 32 - 43
  • [6] ON MECHANICS OF SATURATED GRANULAR-MATERIALS
    AHMADI, G
    [J]. INTERNATIONAL JOURNAL OF NON-LINEAR MECHANICS, 1980, 15 (03) : 251 - 262
  • [7] A thermodynamical formulation for chemically active multiphase turbulent flows
    Ahmadi, Goodarz
    Cao, Jianfa
    Schneider, Lukas
    Sadiki, Amsini
    [J]. INTERNATIONAL JOURNAL OF ENGINEERING SCIENCE, 2006, 44 (11-12) : 699 - 720
  • [8] Investigation of volume fraction of nanoparticles effect and aspect ratio of the twisted tape in the tube
    Akbari, Omid Ali
    Afrouzi, Hamid Hassanzadeh
    Marzban, Ali
    Toghraie, Davood
    Malekzade, Hossein
    Arabpour, Abedin
    [J]. JOURNAL OF THERMAL ANALYSIS AND CALORIMETRY, 2017, 129 (03) : 1911 - 1922
  • [9] A modified two-phase mixture model of nanofluid flow and heat transfer in a 3-D curved microtube
    Akbari, Omid Ali
    Safaei, Mohammad Reza
    Goodarzi, Marjan
    Akbar, Noreen Sher
    Zarringhalam, Majid
    Shabani, Gholamreza Ahmadi Sheikh
    Dahari, Mahidzal
    [J]. ADVANCED POWDER TECHNOLOGY, 2016, 27 (05) : 2175 - 2185
  • [10] [Anonymous], 2014, Heat Transfer Physics