Volume and rate measurement of slowly generated gas bubbles

被引:5
作者
Abid, Hassan Ali [1 ]
Ong, Jian Wern [1 ]
Lin, Eric Shen [1 ]
Liew, Oi Wah [2 ]
Ng, Tuck Wah [1 ]
机构
[1] Monash Univ Clayton, Dept Mech & Aerosp Engn, Lab Opt & Appl Mech, Clayton, Vic 3800, Australia
[2] Natl Univ Singapore, Natl Univ Hlth Syst, Ctr Translat Med, Cardiovasc Res Inst,Yong Loo Lin Sch Med, 14 Med Dr, Singapore 117599, Singapore
关键词
Gas; Bubble; Inverted burette; Ray tracing; Binarization; CAPTIVE BUBBLES; AIR BUBBLES;
D O I
10.1016/j.flowmeasinst.2020.101694
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
The use of an inverted burette arrangement that allowed volume and time-course tracking of bubble movement via camera imaging is shown here to improve on the classical inverted jar (or beaker) method for measuring gases generated in small volumes and at slow rates (below 1 mL/s). In tests involving discrete gas volume measurements delivered at 0.57 mL/s, comparison with pre-set air volume delivered by a syringe pump showed high correspondence, linearity, and repeatability. Tests with continuous gas flows at 0.2, 0.32 and 0.57 mL/s revealed average bubble count versus volume trends that displayed high linearity to indicate that the bubble volumes (at any flowrate) were constant. The average bubble count versus time also showed linear trends and repeatability indicating that the time intervals between the appearance of any two bubbles (at a particular flowrate) were uniform. The analytical and simulated results helped to explain why bubble size determination by high speed camera recording for measuring gas volume and flowrate is fraught with inherent problems. An analysis using light ray tracing showed that flowrate determination using such an approach would necessitate complicated image correction when two cameras are used for simultaneous recording due to distortion effects resulting from refraction. A virtual gate approach involving the binarization of images recorded with a standard camera is shown to be more feasible in establishing the flowrate using bubble counting or finding the time interval between bubbles.
引用
收藏
页数:8
相关论文
共 50 条
[41]   Surface remobilization of gas bubbles in polymer solutions containing surfactants [J].
Rodrigue, D ;
Blanchet, JF .
JOURNAL OF COLLOID AND INTERFACE SCIENCE, 2002, 256 (02) :249-255
[42]   Selective retrieval of microparticles in microchambers using electrolytically generated bubbles for cell array applications [J].
Kurakazu, Tomoaki ;
Kuribayashi-Shigetomi, Kaori ;
Matsunaga, Yukiko T. ;
Kimura, Hiroshi ;
Fujii, Teruo ;
Sakai, Yasuyuki ;
Takeuchi, Shoji .
SENSORS AND ACTUATORS B-CHEMICAL, 2011, 159 (01) :229-233
[43]   Observations on the behavior of bubbles generated by laser focusing in a piezo-driven inkjet head [J].
Sato, Tsuyoshi ;
Higuchi, Toshiro .
Seimitsu Kogaku Kaishi/Journal of the Japan Society for Precision Engineering, 2009, 75 (12) :1470-1475
[44]   Underwater Superaerophobic and Superaerophilic Nanoneedles-Structured Meshes for Water/Bubbles Separation: Removing or Collecting Gas Bubbles in Water [J].
Yong, Jiale ;
Chen, Feng ;
Li, Wentao ;
Huo, Jinglan ;
Fang, Yao ;
Yang, Qing ;
Bian, Hao ;
Hou, Xun .
GLOBAL CHALLENGES, 2018, 2 (04)
[45]   The use of an ultrasonic technique and neural networks for identification of the flow pattern and measurement of the gas volume fraction in multiphase flows [J].
Figueiredo, M. M. F. ;
Goncalves, J. L. ;
Nakashima, A. M. V. ;
Fileti, A. M. F. ;
Carvalho, R. D. M. .
EXPERIMENTAL THERMAL AND FLUID SCIENCE, 2016, 70 :29-50
[46]   Evaluating the Selection of the Physical Parameters of the Moisture Content of a Gas to Complement Standard Conditions for the Measurement of Flow Rate [J].
Kruk, I. S. .
MEASUREMENT TECHNIQUES, 2013, 56 (06) :635-640
[47]   Evaluating the Selection of the Physical Parameters of the Moisture Content of a Gas to Complement Standard Conditions for the Measurement of Flow Rate [J].
I. S. Kruk .
Measurement Techniques, 2013, 56 :635-640
[48]   Dynamics of bubbles rising in viscoelastic liquids and birefringence measurement in the presence of a surfactant [J].
Eribol, Pinar ;
Inanc, Arda ;
Sarioglu, Ebru ;
Senses, Erkan ;
Uguz, A. Kerem .
JOURNAL OF NON-NEWTONIAN FLUID MECHANICS, 2025, 344
[49]   Measurement of interfacial mass transfer of single bubbles rising in homogeneous turbulence [J].
Huang, Guangyuan ;
Lv, Xin ;
Chen, Wuguang ;
Song, Yuchen ;
Yin, Junlian ;
Wang, Dezhong .
CHEMICAL ENGINEERING SCIENCE, 2024, 288
[50]   Improving the water electrolysis performance by manipulating the generated nano/micro-bubbles using surfactants [J].
Houpeng Wang ;
Zhaoxiang Xu ;
Wei Lin ;
Xue Yang ;
Xianrui Gu ;
Wei Zhu ;
Zhongbin Zhuang .
Nano Research, 2023, 16 :420-426