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Numerical analysis of surface potential change on electroosmotic flow in a microchannel with using density-based WCSPH | ||
Challenges in Nano and Micro Scale Science and Technology | ||
دوره 9، شماره 2، بهمن 2021، صفحه 89-99 اصل مقاله (1.14 M) | ||
نوع مقاله: Original Research Paper | ||
شناسه دیجیتال (DOI): 10.22111/cnmst.2021.38333.1207 | ||
نویسندگان | ||
mohammad sefid* 1؛ mojtaba dehghanzadeh bafghi1؛ Rahim Shamsoddin2؛ seyd amir masoud Salehizadeh3 | ||
1Energy Conversion Department, Mechanical Engineering Faculty, Yazd University, Yazd, Iran | ||
2Energy Conversion Department, Mechanical Engineering Faculty, Sirjan University, Sirjan, Iran | ||
3Applied Design Department, Mechanical Engineering Faculty, Yazd University, Yazd, Iran | ||
چکیده | ||
We investigate the phenomenon of electrokinetics in microchannels. Electroosmotic is one of the four electrokinetic effects. Electroosmotic flow (EOF) is caused by the application of an electric field to an aqueous solution. The characteristics of the EOF depend on the nature of the surface potential distribution. EOF in microfluidic systems is limited to low Reynolds. As a result, species mixing in EOF systems is primarily due to diffusion. The surface heterogeneous of the microchannel walls causes the production of micro vortexes in the liquid. In this study, A two-dimensional microchannel is used to study the electroosmotic/pressure driven in Newtonian fluids. The equations governing the fluid flow in a rectangular microchannel are obtained based on the Lagrangian approach and using the density-based weakly compressible smoothed particle hydrodynamics (WCSPH) method. We have analyzed the vortexes due to surface potential heterogeneity and investigated increasing the surface potential on the flow. The results show that increasing the surface potential causes the vortexes to grow and strengthens the velocity and mixing fields more. | ||
کلیدواژهها | ||
Electroosmotic flow؛ Smooth particle hydrodynamics؛ Rectangular microchannels | ||
آمار تعداد مشاهده مقاله: 187 تعداد دریافت فایل اصل مقاله: 139 |