Augmentation of peristaltic microflows through electro-osmotic mechanisms

被引:133
作者
Chakraborty, Suman [1 ]
机构
[1] Indian Inst Technol, Dept Mech Engn, Kharagpur 721302, W Bengal, India
关键词
D O I
10.1088/0022-3727/39/24/037
中图分类号
O59 [应用物理学];
学科分类号
摘要
The present work aims to theoretically establish that the employment of an axial electric field can substantially augment the rate of microfluidic transport occurring in peristaltic microtubes. For theoretical analysis, shape evolution of the tube is taken to be arbitrary, except for the fact that the characteristic wavelength is assumed to be significantly greater than the average radius of cross section. First, expressions for the velocity profile within the tube are derived and are subsequently utilized to obtain variations in the net flow rate across the same, as a function of the pertinent system parameters. Subsequently, the modes of interaction between the electro-osmotic and peristaltic mechanisms are established through the variations in the time-averaged flow rates for zero pressure rise and the pressure rise for zero time-averaged flow rates, as expressed in terms of the occlusion number, characteristic electro-osmotic velocity and the peristaltic wave speed. From the simulation predictions, it is suggested that a judicious combination of peristalsis and an axial electrokinetic body force can drastically enhance the time-averaged flow rate, provided that the occlusion number is relatively small.
引用
收藏
页码:5356 / 5363
页数:8
相关论文
共 19 条
[1]   Long-wave peristaltic transport of a compressible viscous fluid in a finite pipe subject to a time-dependent pressure drop [J].
Antanovskii, LK ;
Ramkissoon, H .
FLUID DYNAMICS RESEARCH, 1997, 19 (02) :115-123
[2]   Finite element simulation of an electroosmotic-driven flow division at a T-junction of microscale dimensions [J].
Bianchi, F ;
Ferrigno, A ;
Girault, HH .
ANALYTICAL CHEMISTRY, 2000, 72 (09) :1987-1993
[3]   Lubrication theory for electro-osmotic flow in a microfluidic channel of slowly varying cross-section and wall charge [J].
Ghosal, S .
JOURNAL OF FLUID MECHANICS, 2002, 459 :103-128
[4]   MICROMACHINING A MINIATURIZED CAPILLARY ELECTROPHORESIS-BASED CHEMICAL-ANALYSIS SYSTEM ON A CHIP [J].
HARRISON, DJ ;
FLURI, K ;
SEILER, K ;
FAN, ZH ;
EFFENHAUSER, CS ;
MANZ, A .
SCIENCE, 1993, 261 (5123) :895-897
[5]  
Hunter R. J., 1988, Zeta Potential in Colloid Science, Principles and Applications, VThird
[6]   Novel actuation of an integrated peristaltic micropump [J].
Husband, B ;
Bu, M ;
Apostolopoulos, V ;
Melvin, T ;
Evans, AGR .
MICROELECTRONIC ENGINEERING, 2004, 73-4 :858-863
[7]  
Knight M, 2004, MICROSYST TECHNOL, V10, P426, DOI [10.1007/s00542-004-0427-y, 10.1007/s00542-004-0427-Y]
[8]   A STUDY OF PERISTALTIC FLOW [J].
POZRIKIDIS, C .
JOURNAL OF FLUID MECHANICS, 1987, 180 :515-527
[9]   A THEORETICAL-STUDY OF VISCOUS EFFECTS IN PERISTALTIC PUMPING [J].
PROVOST, AM ;
SCHWARZ, WH .
JOURNAL OF FLUID MECHANICS, 1994, 279 :177-195
[10]   ELECTROKINETIC FLOW IN A NARROW CYLINDRICAL CAPILLARY [J].
RICE, CL ;
WHITEHEAD, R .
JOURNAL OF PHYSICAL CHEMISTRY, 1965, 69 (11) :4017-+