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随Zeta电位变化的微通道中Casson流体电渗流的解析解 被引量:1
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作者 A.SRIVALLY m.reza 《Journal of Central South University》 SCIE EI CAS CSCD 2023年第8期2627-2641,共15页
本文提出了Casson流体在非均匀带电微通道中电渗透流动的解析解。目标是确定微通道剪切和非剪切区域速度和体积流量的解析表达,并描述这些区域的压力和温度分布。利用渐近逼近法将Casson流体流动的控制方程简化为无量纲形式,然后对其进... 本文提出了Casson流体在非均匀带电微通道中电渗透流动的解析解。目标是确定微通道剪切和非剪切区域速度和体积流量的解析表达,并描述这些区域的压力和温度分布。利用渐近逼近法将Casson流体流动的控制方程简化为无量纲形式,然后对其进行解析求解。使用余弦函数解析表达了剪切和非剪切区域的速度和体积流量。用图形表示了剪切和非剪切区域的压力、速度、流量和温度分布。结果表明,由于压力梯度和体积流量与其他参数的响应相反,随着压力梯度的上升,体积流量发生变化。此外,图示了壁形振幅和焦耳加热下的温度分布。本文结果对使用Casson流体微流控装置的各种应用中的设计和优化具有重要意义。 展开更多
关键词 Casson流体 电渗 电双层 剪切区域 非剪切区域
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MHD effect of mixed convection boundary-layer flow of Powell-Eyring fluid past nonlinear stretching surface
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作者 S.PANIGRAHI m.reza A.K.MISHRA 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI 2014年第12期1525-1540,共16页
Sufficient conditions are found for the existence of similar solutions of the mixed convection flow of a Powell-Eyring fluid over a nonlinear stretching permeable sur- face in the presence of magnetic field. To achiev... Sufficient conditions are found for the existence of similar solutions of the mixed convection flow of a Powell-Eyring fluid over a nonlinear stretching permeable sur- face in the presence of magnetic field. To achieve this, one parameter linear group trans- formation is applied. The governing momentum and energy equations are transformed to nonlinear ordinary differential equations by use of a similarity transformation. These equations are solved by the homotopy analysis method (HAM) to obtain the approximate solutions. The effects of magnetic field, suction, and buoyancy on the Powell-Eyring fluid flow with heat transfer inside the boundary layer are analyzed. The effects of the non- Newtonian fluid (Powell-Eyring model) parameters ε and δon the skin friction and local heat transfer coefficients for the cases of aiding and opposite flows are investigated and discussed. It is observed that the momentum boundary layer thickness increases and the thermal boundary layer thickness decreases with the increase in ε whereas the momentum boundary layer thickness decreases and thermal boundary layer thickness increases with the increase in δ for both the aiding and opposing mixed convection flows. 展开更多
关键词 stretching surface non-Newtonian fluid mixed convection
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