Crossflow polymeric hollow fiber heat exchanger: fiber tension effects on heat transfer and airside pressure drop

被引:0
|
作者
Kroulikova, Tereza [1 ]
Mraz, Krystof [1 ]
Hvozda, Jiri [1 ]
Bohacek, Jan [1 ]
机构
[1] Brno Univ Technol, Fac Mech Engn, Heat Transfer & Fluid Flow Lab, Tech 2896-2, Brno 61669, Czech Republic
关键词
Fiber tension; Flow-induced vibration; Heat exchanger; Heat transfer; Polymeric hollow fibers; Pressure drop; VIBRATIONS;
D O I
10.1007/s10973-024-12956-5
中图分类号
O414.1 [热力学];
学科分类号
摘要
In various applications, a polymeric hollow fiber heat exchanger (PHFHE) is a competitive alternative to a conventional heat exchanger (HE). Standard empirical models for predicting the crossflow tube HE characteristics are defined for devices with rigid tubes with relatively large diameters compared to the polymeric hollow fibers with an outer diameter of around 1 mm. This study examines the impact of tension force on airside heat transfer rate and pressure drop in a crossflow PHFHE. The tension force influences the stiffness of the flexible polymeric fibers and their response to applied airflow. Two liquid-gas PHFHEs were designed and manufactured to ensure uniformity of the fibers' arrangement (inline and staggered). An experimental stand enabling the application of defined tension force in the range of 0-9000 N was designed, manufactured and placed into the calorimetric tunnel, where heat transfer rate and pressure drop measurement were performed with varying air velocity between 2 and 8 ms-1 (corresponding to Reynolds number of 240-970). Among our key findings was that the elongation of the fibers due to thermal expansion or stress relaxation has a considerable impact on the fibers' arrangement and resulting fluid flow. Moreover, the application of tension force yielded no substantial change in air pressure drop; however, it led to a notable enhancement in heat transfer rate. Specifically, under a maximal tension force of 9000 N, the heat transfer rate increased by around 11% compared to the unloaded state.
引用
收藏
页码:3155 / 3164
页数:10
相关论文
共 50 条
  • [1] Crossflow polymeric hollow fiber heat exchanger: fiber tension effects on heat transfer and airside pressure drop
    Tereza Kroulikova
    Krystof Mraz
    Jiri Hvozda
    Jan Bohacek
    Journal of Thermal Analysis and Calorimetry, 2024, 149 : 3155 - 3164
  • [2] Polymeric hollow fiber heat transfer surface for heat exchanger
    Sirkova, Brigita Kolcavova
    Jezik, Karol
    Sanetrnik, Filip
    Bartuli, Erik
    Hvozda, Jiri
    Raudensky, Miroslav
    APPLIED THERMAL ENGINEERING, 2023, 233
  • [3] PRESSURE DROP STUDY OF POLYMERIC HOLLOW FIBER HEAT EXCHANGERS
    Kroulikova, T.
    Astrouski, I
    Kudelova, T.
    ENGINEERING MECHANICS 2020 (IM2020), 2020, : 314 - 317
  • [4] Effects of biofouling on airside heat transfer and pressure drop for fin-and-tube heat exchanger
    Pu, Hui
    Ding, Guo-Liang
    Ma, Xiao-Kui
    Gao, Yi-Feng
    Shanghai Jiaotong Daxue Xuebao/Journal of Shanghai Jiaotong University, 2008, 42 (03): : 404 - 408
  • [5] Transient experimental investigation of airside heat transfer in a crossflow heat exchanger
    Askar, Serena
    Fotowat, Shahram
    Fartaj, Amir
    APPLIED THERMAL ENGINEERING, 2021, 199
  • [6] THE INFLUENCE OF HOLLOW FIBERS ORIENTATION INSIDE THE POLYMERIC HOLLOW FIBER HEAT EXCHANGER ON THE HEAT TRANSFER INTENSITY
    Bartuli, E.
    Brozova, T.
    Raudensky, M.
    ENGINEERING MECHANICS 2018 PROCEEDINGS, VOL 24, 2018, : 61 - 64
  • [7] Polymeric hollow fiber heat exchanger as an automotive radiator
    Krasny, Ivo
    Astrouski, Ilya
    Raudensky, Miroslav
    APPLIED THERMAL ENGINEERING, 2016, 108 : 798 - 803
  • [8] Fouling of Polymeric Hollow Fiber Heat Exchanger by Wastewater
    Astrouski, Ilya
    Raudensky, Miroslav
    Dohnal, Mirko
    PRES15: PROCESS INTEGRATION, MODELLING AND OPTIMISATION FOR ENERGY SAVING AND POLLUTION REDUCTION, 2015, 45 : 949 - 954
  • [9] Intensification of heat transfer of polymeric hollow fiber heat exchangers by chaotisation
    Raudensky, Miroslav
    Astrouski, Ilya
    Dohnal, Miroslav
    APPLIED THERMAL ENGINEERING, 2017, 113 : 632 - 638
  • [10] Heat transfer study of PVDF hollow fiber heat exchanger for desalination process
    Song, Shasha
    Shan, Huiting
    Liu, Jun
    Li, Baoan
    DESALINATION, 2018, 446 : 1 - 11