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首页> 外文期刊>Journal of Molecular Liquids >Thermal radiation effects on electroosmosis modulated peristaltic transport of ionic nanoliquids in biomicrofluidics channel
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Thermal radiation effects on electroosmosis modulated peristaltic transport of ionic nanoliquids in biomicrofluidics channel

机译:生物学微血管通道离子纳米喹氢喹硫吡啶电外渗的热辐射效应

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AbstractThe flow characteristics of nanofluids flow driven by combined effects of electroosmosis and peristalsis are very important for designing bio-mimetic pumping systems at the micro scale of interest in physiological treatment e.g. ocular drug delivery systems. The flow characteristics of thermally developed nanofluids flow are investigated in presence of peristalsis and electroosmosis phenomena. Thermal radiation effect is also introduced. Tapered asymmetric microchannels are imposed at the walls to mimic sophisticated peristaltic wave propagation scenarios. The nanofluid is employed as the working fluid, and the analytical solution for electro-osmotic flow is obtained by virtue of the Debye–Hückel linearization. The dimensional conservation equations are linearized under lubrication theory approximations. The effects of emerging physical parameters namely Grashof numbers, Brownian motion parameter, thermophoresis parameter, Helmholtz-Smoluchowski velocity, Debye length and thermal radiation on flow characteristics, heat transfer characteristics, and pumping characteristics are computed. Furthermore, an inherent phenomenon of peristaltic pumping known as trapping is also presented graphically under the influence of pertinent parameters and discussed in brief. Validation of present model is also presented. This model is mainly applicable to study cell responses, blood analysis, biomimetic capillary designs, and blood vessel tissue culture systems.
机译:<![cdata [ 抽象 通过电渗和蠕动效应驱动的纳米流体流动的流动特性对于设计生物模拟泵浦非常重要在生理治疗的微观兴趣中的系统,例如眼药递送系统。在蠕动和电渗现象存在下,研究了热发育的纳米流体流动的流动特性。还引入了热辐射效应。锥形不对称微通道在壁上施加以模仿复杂的蠕动波传播场景。纳米流体用作工作流体,并且通过DEBY-Hückel线性化获得电渗透流的分析溶液。尺寸保护方程在润滑理论近似下线性化。计算出新的物理参数的影响即Grashof数,布朗运动参数,热托,热助剂,Helmholtz-Smoluchowski速度,德义长度和流动特性,传热特性和泵送特性的热辐射。此外,在相关参数的影响下,也在图形上以图形方式呈现称为捕获的蠕动泵的固有现象并简要讨论。还提出了对现有模型的验证。该模型主要适用于研究细胞应答,血液分析,仿生毛细管设计和血管组织培养系统。

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