Energy efficiency and performance of bubble generating systems

被引:18
|
作者
Ansari, Manizheh [1 ]
Bokhari, Hussain Haider [1 ]
Turney, Damon Economy [1 ]
机构
[1] CUNY City Coll, Dept Chem Engn, New York, NY 10031 USA
关键词
Bubble generation; Microbubble; Flotation; Gas-liquid transfer; Aeration; Intensification; MASS-TRANSFER CHARACTERISTICS; FLOW-INDUCED COALESCENCE; GAS-LIQUID SYSTEMS; SURFACE-TENSION; HYDRODYNAMIC CHARACTERISTICS; MICROBUBBLE GENERATION; EJECTOR CONFIGURATION; SIZE DISTRIBUTION; OXYGEN-TRANSFER; WATER;
D O I
10.1016/j.cep.2017.12.019
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
The energy efficiency of bubble generating systems of gas-liquid contacting reactors is reviewed and analyzed quantitatively. The key metrics that emerge from a new theoretical analysis are: i) gas fraction of the output dispersion (epsilon(gen)), ii) interfacial area density of the output dispersion (a(gen)) iii) the energy necessary to create interfacial area (xi), and iv) cost and maintenance. These metrics are then used to create a literature review of the performance of existing technologies for bubble generation. thus producing a conceptual framework for process intensification and future designs for bubble generating systems. A novel micro-ejector device is then studied within this framework, and is found to have desirable performance, hypothetically because it limits fluid shear to be located on at the gas injection site, on micron size scales. A physical model of the gas entrainment and bubble creation mechanisms in the micro-ejector is described and validated with empirical data.
引用
收藏
页码:44 / 55
页数:12
相关论文
共 50 条
  • [1] Environmental applications of fine bubble generating apparatus with low energy and high treatment efficiency
    Jung, Yong-Jun
    Jung, Jae-Ouk
    Kamimoto, Yuki
    Gil, Kyungik
    Kim, Dong-Hyun
    [J]. DESALINATION AND WATER TREATMENT, 2020, 200 : 304 - 309
  • [2] Energy Efficiency Performance of Distributed Antenna Systems
    Serugunda, Jonathan
    Armour, Simon
    Beach, Mark
    [J]. 2014 LOUGHBOROUGH ANTENNAS AND PROPAGATION CONFERENCE (LAPC), 2014, : 187 - 191
  • [3] Performance Assessment System for Energy Efficiency in Wastewater Systems
    Jorge, Catarina
    Almeida, Maria do Ceu
    Covas, Didia
    [J]. WATER, 2021, 13 (13)
  • [4] ENERGY-GENERATING SYSTEMS
    GRISOLIA, S
    [J]. ANNALS OF THE NEW YORK ACADEMY OF SCIENCES, 1959, 72 (12) : 462 - 465
  • [5] Improve I/O Performance and Energy Efficiency in Hadoop Systems
    Auburn University
    [J].
  • [6] High efficiency and high performance motor for energy saving in systems
    Sakai, K
    Hattori, T
    Takahashi, N
    Arata, M
    [J]. 2001 IEEE POWER ENGINEERING SOCIETY WINTER MEETING, CONFERENCE PROCEEDINGS, VOLS 1-3, 2001, : 1413 - 1418
  • [7] Improving the Performance and Energy Efficiency of Phase Change Memory Systems
    Wang, Qi
    Li, Jia-Rui
    Wang, Dong-Hui
    [J]. JOURNAL OF COMPUTER SCIENCE AND TECHNOLOGY, 2015, 30 (01) : 110 - 120
  • [8] Improving the Performance and Energy Efficiency of Phase Change Memory Systems
    Qi Wang
    Jia-Rui Li
    Dong-Hui Wang
    [J]. Journal of Computer Science and Technology, 2015, 30 : 110 - 120
  • [9] ENERGY EFFICIENCY OF ELECTROSTATIC TYPE SMALL BUBBLE GENERATOR
    TAN, K
    OGATA, S
    [J]. JOURNAL OF CHEMICAL ENGINEERING OF JAPAN, 1984, 17 (04) : 449 - 451
  • [10] Scoring the Generating Principles of Performance Systems
    Hansen, Pil
    House, Christopher
    [J]. PERFORMANCE RESEARCH, 2015, 20 (06) : 65 - 73