DocumentCode :
1955146
Title :
Computer modeling of electric potential distribution of ion transport in rectangular Nanofluidic Channel
Author :
Liu, Kun ; Ba, De-Chun ; Du, Guang-Yu ; Wu, Zhi-yong ; Fang, Fang
Author_Institution :
Mech. Eng. & Autom. Sch., Northeastern Univ., Shenyang, China
Volume :
3
fYear :
2010
fDate :
9-11 July 2010
Firstpage :
601
Lastpage :
604
Abstract :
Based on continuity assumption of fluid, we established a mathematical model of ion transport in the rectangular Nanofluidic Channel with Poisson-Boltzmann equation and modified N-S equations. Through equation derivation, the electric potential distribution function was solved. Next we analyzed how the distribution of the ion electric potential distribution was charged by the solution concentration, the surface charge density and the channel height. Thus we have got the curves between Electric potential distribution and these parameters. Therefore, the main influential factors of the electric potential are the electrolyte concentration, the surface charge density and the channel height. By adjusting the electrolyte concentration, the surface charge density and the nanofluidic channel height, we can control the electric potential.
Keywords :
Boltzmann equation; Navier-Stokes equations; Poisson equation; electric potential; electrohydrodynamics; microchannel flow; nanofluidics; numerical analysis; N-S equation; Poisson-Boltzmann equation; computer modeling; electric potential control; electric potential distribution function; electrolyte concentration; ion electric potential distribution; ion transport; mathematical model; rectangular nanofluidic channel; surface charge density; Electric potential; Nanofluidics; electric double layer; electric potential distribution; ion transport;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Computer Science and Information Technology (ICCSIT), 2010 3rd IEEE International Conference on
Conference_Location :
Chengdu
Print_ISBN :
978-1-4244-5537-9
Type :
conf
DOI :
10.1109/ICCSIT.2010.5564890
Filename :
5564890
Link To Document :
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