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首页> 外文期刊>Journal of Non-Newtonian Fluid Mechanics >Confinement effects on the rotational microflows of a viscoelastic fluid under electrical double layer phenomenon
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Confinement effects on the rotational microflows of a viscoelastic fluid under electrical double layer phenomenon

机译:电双层现象下粘弹性液体旋转微流量的限制效应

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The last decade has seen a rise in the use of microfluidics based portable diagnostic devices, especially on the rotational platform (lab on a compact disc). One of the intrinsic problems with such devices is that experimental measurement of the flow fields and flow rates is difficult, owing to high rotational speeds. Hence, there is a need to computationally explore the flow and mixing involved in such devices and identify the optimal parameters of operation with respect to bio-fluids, many of which exhibit viscoelastic behavior. We, therefore, study the startup electro-osmotic flow of a viscoelastic fluid in a rotating rectangular microfluidic channel described by the Oldroyd-B model. The combination of the elastic and viscous nature of viscoelastic fluids brings out novel flow physics in a rotating rectangular microchannel, which we explore in detail. In particular, we show that the development of secondary flow in the channel due to the Coriolis forcing starts forming the vortex structures in the field aided by the lateral confinement of the channel, which may be of useful towards an enhancement in mixing in microfluidic devices. (C) 2017 Elsevier B.V. All rights reserved.
机译:过去十年在使用基于微流体的便携式诊断装置的情况下,特别是在旋转平台上(光盘上的实验室)的使用。由于高旋转速度,这种装置的内在问题是这种装置的内在问题是流场和流速的实验测量。因此,需要计算这些装置中涉及的流动和混合,并识别关于生物流体的操作的最佳参数,其中许多具有粘弹性行为。因此,我们研究了求替换矩形微流体通道中的粘弹性流体的启动电渗透流量。粘弹性流体的弹性和粘性性质的组合在旋转的矩形微通道中提出了新的流量物理,我们详细探讨。特别地,我们表明,由于科里奥利的迫使沟通的通道中的二次流动的发展开始在辅助沟道的侧向围绕通道的侧向设施中形成涡流结构,这可能是在微流体装置中混合的增强中的有用。 (c)2017 Elsevier B.v.保留所有权利。

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