Numerical Simulations of Heat and Mass Transfer Process of a Direct Evaporative Cooler From a Porous Layer

被引:9
|
作者
Sellami, Karima [1 ]
Feddaoui, M'barek [2 ]
Labsi, Nabila [3 ]
Najim, Monssif [2 ]
Benkahla, Youb Khaled [3 ]
机构
[1] Univ Sci & Technol Houari Boumed, Transfer Phenomena Lab, BP 32 Bab Ezzouar, Algiers 16111, Algeria
[2] Univ Ibn Zohr, Natl Sch Appl Sci Agadir, LGEMS Lab, BP 1136, Agadir 80000, Morocco
[3] Univ Sci & Technol Houari Boumed, Transfer Phenomena Lab, FMGP, RSNE Team, BP 32 Bab Ezzouar, Algiers 16111, Algeria
来源
JOURNAL OF HEAT TRANSFER-TRANSACTIONS OF THE ASME | 2019年 / 141卷 / 07期
关键词
COOLING SYSTEM; PERFORMANCE ANALYSIS; MATHEMATICAL-MODEL; LIQUID-FILM; AIR COOLER; CHANNEL; DESIGN; HOT;
D O I
10.1115/1.4043302
中图分类号
O414.1 [热力学];
学科分类号
摘要
This paper deals with the numerical study of the combined heat and mass exchanges in the process of direct evaporative cooler, from a porous media of laminar air flow between two parallel insulated walls. The numerical model implements momentum, energy, and mass conservation equations of humid air and water flow incorporating non-Darcian model in the porous region. The finite volume method is used for the mathematical model resolution, and the velocity-pressure coupling is treated with the SIMPLE algorithm. The main objective of this study is to examine the influences of ambient conditions and the porous medium properties (porosity and porous layer thickness) on the direct evaporative cooling performance from a porous layer. The major results of this study demonstrate that the porous evaporative wall could, in a satisfying manner, reduce the bulk air temperature. The better cooling performance can be achieved for lower air mass flow at the entrance and relative humidity. Additionally, the evaporative cooler is more effective for a high porosity and a thick porous medium, with an improvement achieving 23% for high porosity.
引用
收藏
页数:10
相关论文
共 50 条
  • [1] Numerical investigation on the heat and mass transfer in a direct evaporative cooler
    Wu, J. M.
    Huang, X.
    Zhang, H.
    APPLIED THERMAL ENGINEERING, 2009, 29 (01) : 195 - 201
  • [2] Heat and mass transfer study in a direct evaporative cooler
    Kachhwaha, S. S.
    Prabhakar, Suhas
    JOURNAL OF SCIENTIFIC & INDUSTRIAL RESEARCH, 2010, 69 (09): : 705 - 710
  • [3] Theoretical analysis on heat and mass transfer in a direct evaporative cooler
    Wu, J. M.
    Huang, X.
    Zhang, H.
    APPLIED THERMAL ENGINEERING, 2009, 29 (5-6) : 980 - 984
  • [4] A simplified model for analysis of heat and mass transfer in a direct evaporative cooler
    Fouda, A.
    Melikyan, Z.
    APPLIED THERMAL ENGINEERING, 2011, 31 (05) : 932 - 936
  • [5] The heat and mass transfer process of the counter-flow dew point evaporative cooler
    Lin, Jie
    Wang, Ruzhu
    Chua, Kian Jon
    PROCEEDINGS OF THE 9TH INTERNATIONAL CONFERENCE ON APPLIED ENERGY, 2017, 142 : 3805 - 3811
  • [6] An Experimental Study on the Heat and Mass Transfer Characteristics of an Evaporative Cooler
    Zhang, Peikun
    Guo, Bingfa
    Wang, Li
    ENERGIES, 2023, 16 (21)
  • [7] The numerical model for direct evaporative cooler
    Kovacevic, Igor
    Sourbron, Maarten
    APPLIED THERMAL ENGINEERING, 2017, 113 : 8 - 19
  • [8] Theoretical and experimental study on heat and mass transfer of a porous ceramic tube type indirect evaporative cooler
    Sun, Tiezhu
    Huang, Xiang
    Qu, Yueying
    Wang, Fenghao
    Chen, Yi
    APPLIED THERMAL ENGINEERING, 2020, 173
  • [9] Numerical simulations of fin and tube air cooler and heat and mass transfer in cold storage
    Śmierciew K.
    Kołodziejczyk M.
    Gagan J.
    Butrymowicz D.J.
    Śmierciew, Kamil (k.smierciew@pb.edu.pl), 2018, Inderscience Publishers (18): : 325 - 332
  • [10] Numerical simulations of fin and tube air cooler and heat and mass transfer in cold storage
    Smierciew, Kamil
    Kolodziejczyk, Miroslawa
    Gagan, Jerzy
    Butrymowicz, Dariusz Jozef
    PROGRESS IN COMPUTATIONAL FLUID DYNAMICS, 2018, 18 (05): : 325 - 332