Study of Fluid Flow in Micro-channel based Devices

被引:1
|
作者
Saxena, Renuka [1 ]
Kumar, Shaliesh [1 ]
Gupta, Amita [1 ]
机构
[1] Solid State Phys Lab, Delhi 110054, India
关键词
Micro-channels; Fluid Flow; Reynolds number; friction factor;
D O I
10.1007/978-3-319-03002-9_101
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
Microfluidic technology has contributed significantly to the advancement of Bio-MEMS, flow sensors, micromixers and heat sinks for chip cooling. Micro-channels play an important role in development of small scale fluid flow devices and are one of the essential parts of micromachined fluid systems. In addition to connecting different devices, micro-channels and micro-chambers are used in many other fields including biochemical, genetics, physics and industrial applications. In order to design micro-channel, it is very important to understand the mechanism and fundamental differences involved at micro scale fluid flow. This paper presents an analytical study of flow mechanism in micro channels, with a focus on effect of geometric dimensions and flow rate on the various micro-hydrodynamics parameters of trapezoidal shaped micro-channel. Pressure drop, friction-factor and Reynold number calculations for microchannel of different geometrical dimensions are presented. The channel width are in the range of 100 mu m to 1000 mu m, where as the depth of the channel is taken as 50 microns.Water is used as the working fluid. The study of entrance and exit effects on pressure drop across micro-channel has also been considered. The study provides vital information for design and analysis of micro-channel devices, and is helpful in selection of the possible channel configuration for a specific application.
引用
收藏
页码:405 / 407
页数:3
相关论文
共 50 条
  • [41] Numerical simulation of flow field in a rectangular micro-channel
    Huang W.
    Liu D.
    Guo W.
    Jin J.
    Jin, Jie (862759861@qq.com), 2018, Computer Society of the Republic of China (29) : 277 - 283
  • [42] Research on diffusion in micro-channel flow driven by electroosmosis
    Kai Zhang
    Jian-zhong Lin
    Zhi-hua Li
    Applied Mathematics and Mechanics, 2006, 27 : 575 - 582
  • [43] The developing heat transfer and fluid flow in micro-channel heat sink with viscous heating effect
    Lelea, Dorin
    Cioabla, Adrian Eugen
    HEAT AND MASS TRANSFER, 2011, 47 (07) : 751 - 758
  • [44] EXPERIMENTAL INVESTIGATIONS OF TURBULENT GAS FLOW IN A MICRO-CHANNEL
    Matsushita, Shinichi
    Hong, Chungpyo
    Asako, Yutaka
    Ueno, Ichiro
    PROCEEDINGS OF THE ASME INTERNATIONAL MECHANICAL ENGINEERING CONGRESS AND EXPOSITION, 2011, VOL 6, PTS A AND B, 2012, : 1077 - 1081
  • [45] Flow pattern of boiling in micro-channel by numerical simulation
    Zhuan, Rui
    Wang, Wen
    INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, 2012, 55 (5-6) : 1741 - 1753
  • [46] Flow Boiling in a Micro-Channel Coated With Carbon Nanotubes
    Khanikar, Vikash
    Mudawar, Issam
    Fisher, Timothy S.
    IEEE TRANSACTIONS ON COMPONENTS AND PACKAGING TECHNOLOGIES, 2009, 32 (03): : 639 - 649
  • [47] Numerical model for micro-channel parallel flow evaporator
    Liang, Yuan-Yuan
    Zhao, Yu
    Chen, Jiang-Ping
    Shanghai Jiaotong Daxue Xuebao/Journal of Shanghai Jiaotong University, 2013, 47 (03): : 413 - 416
  • [48] The developing heat transfer and fluid flow in micro-channel heat sink with viscous heating effect
    Dorin Lelea
    Adrian Eugen Cioabla
    Heat and Mass Transfer, 2011, 47 : 751 - 758
  • [49] Micro-channel flow Analyzers for visualization of micro-fluidic simulations
    Minamitani, T
    Hayashi, T
    Hasegawa, K
    Kikuchi, Y
    PROCEEDINGS OF THE 26TH ANNUAL INTERNATIONAL CONFERENCE OF THE IEEE ENGINEERING IN MEDICINE AND BIOLOGY SOCIETY, VOLS 1-7, 2004, 26 : 2038 - 2040
  • [50] Experimental study on the flow boiling oscillation characteristics in a rectangular multiple micro-channel
    Jiang, Zhangrui
    Ma, Zaiyong
    Yan, Rungang
    Zhang, Luteng
    Sun, Wan
    Bu, Shanshan
    Pan, Liangming
    EXPERIMENTAL THERMAL AND FLUID SCIENCE, 2019, 109