A Finned Tube Heat Exchanger Coupled to Parabolic Trough Solar Collector for Drying Application

被引:3
|
作者
Chaanaoui, Meriem [1 ,2 ]
Ettahi, Khadija [1 ,2 ]
Vaudreuil, Sebastien [1 ]
Bounahmidi, Tijani [1 ,2 ]
机构
[1] Euro Mediterranean Univ Fes UEMF, Euromed Res Inst, EcoCampus,Route Meknes,Route Moulay, Yacoub, Morocco
[2] Univ Mohammed 5, Ecole Mohammadia Ingenieurs EMI, Lab Anal & Synth Proc Ind LASPI, Ave Ibn Sina,BP 765, Rabat, Morocco
关键词
D O I
10.1063/1.5117657
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
This paper presents the design and performance analysis of a finned tube heat exchanger used to transfer thermal energy from a 20 kW parabolic trough solar loop to a rotary dryer. This heat exchanger is designed to absorb the energy provided by the solar system and transfer it to an air stream. A detailed thermal modeling for the finned tube heat exchanger based on logarithmic mean temperature difference method (LMTD) was carried out. Using the Engineering Equation Solver (EES) software, a simulation code was developed to study the effect of HTF fluid velocity and fluid type on the heat transfer surface area and pumping power. These two parameters were selected as they significantly affect the operating and the investment costs. The simulation code accept changes in the number of longitudinal and transversal tubes, as well as their size, to account for any space limitation in the heat exchanger installation. Four different geometries were simulated, leading to varying results for the heat exchanger configuration. Geometry C1, while having the smallest heat transfer area, provides the best performances when compared to the others. This can be explained by the high compactness of Geometry C1 which promote a better energy transfer to the airside. The choice of HTF fluids also affects the heat exchanger design. Simulation results show that the use of Therminol VP1 and Syltherm XLT yield respectively the minimum surface area and minimum pumping power. An optimal fluid velocity inside the exchanger tubes was found to be in the 0.43 - 0.57 m/s range for the studied heat exchanger geometries.
引用
收藏
页数:9
相关论文
共 50 条
  • [1] Heat transfer analysis of internally pin-finned solar parabolic trough collector
    Pi, Jun
    Pu, Yushu
    Liu, Guangcai
    Li, Zhangping
    [J]. Taiyangneng Xuebao/Acta Energiae Solaris Sinica, 2020, 41 (09): : 227 - 232
  • [2] Comparative analysis between optimum configurations of finned tube heat exchanger: Application for solar drying
    Chaanaoui, Meriem
    Ettahi, Khadija
    Abderafi, Souad
    Vaudreuil, Sebastien
    Bounahmidi, Tijani
    [J]. CASE STUDIES IN THERMAL ENGINEERING, 2020, 22
  • [3] New Evacuated Tube Solar Collector with Parabolic Trough Collector and Helical Coil Heat Exchanger for Usage in Domestic Water Heating
    Said, Sana
    Mellouli, Sofiene
    Alqahtani, Talal
    Algarni, Salem
    Ajjel, Ridha
    [J]. SUSTAINABILITY, 2023, 15 (15)
  • [4] Numerical study on coupled fluid flow and heat transfer process in parabolic trough solar collector tube
    Tao, Y. B.
    He, Y. L.
    [J]. SOLAR ENERGY, 2010, 84 (10) : 1863 - 1872
  • [5] A review of parabolic collector with shell and tube heat exchanger
    Selvanayagam, Benjamin Franklin
    Krishnamoorthy, S.
    Gowtham, S.
    Balaji, N.
    [J]. MATERIALS TODAY-PROCEEDINGS, 2022, 66 : 1382 - 1388
  • [6] Experimental Study of a Tubular Solar Distillation System with Heat Exchanger Using a Parabolic Trough Collector
    Amin, Muhammad
    Umar, Hamdani
    Amir, Fazri
    Ginting, Suma Fachruri
    Sudarsana, Putu Brahmanda
    Septiadi, Wayan Nata
    [J]. SUSTAINABILITY, 2022, 14 (21)
  • [7] Performance analysis of a parabolic trough collector using a heat pipe exchanger
    Boukhalfa, Mohammed
    Merzouk, Mustapha
    Merzouk, Nachida Kasbadji
    Feidt, Michel
    Blet, Nicolas
    [J]. ENVIRONMENTAL PROGRESS & SUSTAINABLE ENERGY, 2022, 41 (06)
  • [8] Investigation and simulation of parabolic trough collector with the presence of hybrid nanofluid in the finned receiver tube
    Javidan, M.
    Gorji-Bandpy, M.
    Al-Araji, A.
    [J]. THEORETICAL AND APPLIED MECHANICS LETTERS, 2023, 13 (06)
  • [9] Experimental evaluation of solar still coupled with parabolic trough collector
    Ranjan, Anil
    Dewang, Yogesh
    Raghuwanshi, Jitendra
    Sharma, Vipin
    [J]. MATERIALS TODAY-PROCEEDINGS, 2022, 60 : 935 - 938
  • [10] Performance analyses of a novel finned parabolic trough receiver with inner tube for solar cascade heat collection
    LIU Peng
    REN TingTing
    GE YanLin
    LIU Wei
    CHEN LinGen
    [J]. Science China Technological Sciences, 2023, (05) : 1417 - 1434