Thermal design of a non-isothermal microfluidic channel for measuring thermophoresis

IF 5 2区 工程技术 Q1 ENGINEERING, MECHANICAL International Journal of Heat and Mass Transfer Pub Date : 2024-07-03 DOI:10.1016/j.ijheatmasstransfer.2024.125871
Namkyu Lee , Simone Wiegand
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Abstract

Thermophoresis describes mass transport in a non-isothermal temperature field and thus provides a fundamental understanding of the behavior of colloidal particles. Various methods have been proposed for measuring the Soret coefficient, a representative value of thermophoresis. In particular, microscopic channels are an emerging method as they shorten the equilibrium time and allow direct observation of the particles. However, little emphasis has been placed on the simultaneous consideration of fluid dynamics, heat transfer, and mass transfer characteristics within the microfluidic channel, despite the simultaneous presence of natural convection and thermodiffusion phenomena. In this study, we present a novel approach to address this gap by introducing a figure of merit, which incorporates essential parameters to accurately characterize a specific cell configuration. This figure of merit allows for the identification of a reliable measurement range in a microfluidic channel with a temperature gradient, while accounting for fluid dynamics, heat transfer, and mass transfer characteristics. The proposed approach is validated through rigorous simulations and experiments, enabling an evaluation of the impact of figure of merit-derived parameters on the measurement channel. The findings from our study demonstrate that the figure of merit serves as a representative measure for stable thermophoretic measurements in a microfluidic channel. Moreover, we propose a threshold value that signifies the transition from a diffusion-dominant to a convection-dominant field.

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用于测量热泳的非等温微流体通道的热设计
热泳描述了在非等温温度场中的质量传输,从而提供了对胶体粒子行为的基本理解。人们提出了各种测量索雷特系数的方法,索雷特系数是热泳的代表值。其中,微观通道是一种新兴的方法,因为它缩短了平衡时间,并允许直接观察颗粒。然而,尽管同时存在自然对流和热扩散现象,但很少有人强调同时考虑微流体通道内的流体动力学、传热和传质特性。在本研究中,我们提出了一种新颖的方法来弥补这一不足,即引入优点系数,将基本参数纳入其中,以准确描述特定细胞配置的特征。该优点系数可确定具有温度梯度的微流体通道中的可靠测量范围,同时考虑流体动力学、传热和传质特性。我们通过严格的模拟和实验对所提出的方法进行了验证,从而评估了优点系数衍生参数对测量通道的影响。我们的研究结果表明,功勋值是在微流体通道中进行稳定热传导测量的代表性指标。此外,我们还提出了一个阈值,它标志着从扩散主导场到对流主导场的过渡。
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来源期刊
CiteScore
10.30
自引率
13.50%
发文量
1319
审稿时长
41 days
期刊介绍: International Journal of Heat and Mass Transfer is the vehicle for the exchange of basic ideas in heat and mass transfer between research workers and engineers throughout the world. It focuses on both analytical and experimental research, with an emphasis on contributions which increase the basic understanding of transfer processes and their application to engineering problems. Topics include: -New methods of measuring and/or correlating transport-property data -Energy engineering -Environmental applications of heat and/or mass transfer
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