CROSS-FLOW HEAT EXCHANGER EMBEDDED WITHIN A POROUS MEDIUM

被引:9
|
作者
Younis, L. B. [1 ]
机构
[1] SNC Lavalin Inc, Calgary, AB T2P 3H5, Canada
关键词
heat transfer; forced convection; porous medium; heat exchanger; cross-flow; ENHANCEMENT;
D O I
10.1615/JPorMedia.v13.i11.40
中图分类号
O414.1 [热力学];
学科分类号
摘要
The present work examines numerically the cross-flow and heat transfer from a bundle of staggered cylinders embedded in a porous medium. The effects of Reynolds number within the laminar flow regime, permeability, and thermal conductivity of the porous material on the fluid flow and heat transfer from the cylinders in the cross-flow are examined. Also, the results are compared with heat transfer from a cylinder embedded in a porous medium. Prandtl number is fixed to 1.0 for gases. It is found that the porous medium may enhance the rate of heat transfer if the permeability of the porous material is high, that is, the Darcy number is greater than 10(-3). Also, increasing the thermal conductivity of the porous material has a positive effect on enhancing the rate of heat transfer from the single column of cylinders or from the cylinders in the first column of a multicolumn heat exchanger. However, the porous medium may have a negative effect on the rate of heat transfer from downstream cylinders, where the temperature gradient decreases because of the enhanced rate of heat transfer from the upstream cylinders.
引用
收藏
页码:981 / 988
页数:8
相关论文
共 50 条
  • [31] Numerical analysis of a cross-flow compact heat exchanger for vehicle applications
    Carluccio, E
    Starace, G
    Ficarella, A
    Laforgia, D
    [J]. APPLIED THERMAL ENGINEERING, 2005, 25 (13) : 1995 - 2013
  • [32] The application of uncertainty analysis to cross-flow heat exchanger performance predictions
    James, CA
    Taylor, RP
    Hodge, BK
    [J]. HEAT TRANSFER ENGINEERING, 1995, 16 (04) : 50 - 62
  • [33] Stability of a Cross-Flow Heat-Exchanger Tube With Asymmetric Supports
    Balaji, Adireddi
    Thani, Aswanth
    Biswas, Saurabh
    Vyasarayani, C. P.
    [J]. JOURNAL OF COMPUTATIONAL AND NONLINEAR DYNAMICS, 2022, 17 (11):
  • [34] Second-law and experimental analysis of a cross-flow heat exchanger
    Ogulata, RT
    Doba, F
    Yilmaz, T
    [J]. HEAT TRANSFER ENGINEERING, 1999, 20 (02) : 20 - 27
  • [35] A NEW SIMPLIFIED FORMULA FOR CROSS-FLOW HEAT-EXCHANGER EFFECTIVENESS
    LI, CH
    [J]. JOURNAL OF HEAT TRANSFER-TRANSACTIONS OF THE ASME, 1987, 109 (02): : 521 - 522
  • [36] Stability of fluid flow in a porous medium with uniform cross-flow and velocity slip
    Kandavelu, Vasuki
    Tlau, Lalrinpuia
    [J]. CHINESE JOURNAL OF PHYSICS, 2024, 90 : 528 - 541
  • [37] Reciprocating turbulent flow heat transfer enhancement within a porous medium embedded in a circular tube
    Saberinejad, Hojjat
    Keshavarz, Ali
    [J]. APPLIED THERMAL ENGINEERING, 2016, 102 : 1355 - 1365
  • [38] Heat Transfer Enhancement in a Cross-Flow Heat Exchanger with Modified Air Angles of Attack
    Toolthaisong, Sarthit
    Kasayapanand, Nat
    [J]. JOURNAL OF ENERGY ENGINEERING, 2016, 142 (03)
  • [39] Numerical model of a cross-flow heat exchanger with non-uniform flow of media
    Hanuszkiewicz-Drapala, Malgorzata
    Bury, Tomasz
    Widziewicz, Katarzyna
    [J]. JOURNAL OF POWER TECHNOLOGIES, 2013, 93 (05): : 295 - 302
  • [40] The concept of a new approximate relation for exchanger heat transfer effectiveness for a cross-flow heat exchanger with unmixed fluids
    Laskowski, Rafal
    [J]. JOURNAL OF POWER TECHNOLOGIES, 2011, 91 (02): : 93 - 101