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利用粒子扩散测定法在简单剪切流存在的情况下对布朗运动进行量化。

Quantifying Brownian motion in the presence of simple shear flow with particle diffusometry.

作者信息

Lee Dong Hoon, Clayton Katherine N, Kinzer-Ursem Tamara L, Linnes Jacqueline C, Wereley Steven T

机构信息

School of Mechanical Engineering, Purdue University, West Lafayette, IN USA.

OmniVis Inc., South San Francisco, CA USA.

出版信息

Exp Fluids. 2023;64(2):26. doi: 10.1007/s00348-022-03566-8. Epub 2023 Jan 24.

Abstract

Particle diffusometry, a technology derived from particle image velocimetry, quantifies the Brownian motion of particles suspended in a quiescent solution by computing the diffusion coefficient. Particle diffusometry has been used for pathogen detection by measuring the change in solution viscosity due to amplified DNA from a specific gene target. However, particle diffusometry fails to calculate accurate measurements at elevated temperatures and fluid flow. Therefore, these two current limitations hinder the potential application where particle diffusometry can further be used. In this work, we expanded the usability of particle diffusometry to be applied to fluid samples with simple shear flow and at various temperatures. A range of diffusion coefficient videos is created to simulate the Brownian motion of particles under flow and temperature conditions. Our updated particle diffusometry analysis forms a correction equation under three different polynomial degrees of shear flow with varying flow rates and temperatures between 25 and 65 °C. An experiment in a channel with a rectangular cross section using a syringe pump to generate a constant flow is done to analyze the modified algorithm. In simulation analysis, the modified algorithm successfully computes the diffusion coefficients with  10% error for an average flow rate of up to 8 on all three flow types. Complementary experiments confirm the simulation results.

摘要

粒子扩散测量技术是一种源自粒子图像测速技术的方法,它通过计算扩散系数来量化悬浮在静态溶液中的粒子的布朗运动。粒子扩散测量技术已被用于病原体检测,其原理是通过测量特定基因靶点的扩增DNA导致的溶液粘度变化来实现。然而,粒子扩散测量技术在高温和流体流动条件下无法计算出准确的测量结果。因此,这两个当前存在的局限性阻碍了粒子扩散测量技术进一步潜在应用的可能性。在这项工作中,我们扩展了粒子扩散测量技术的可用性,使其能够应用于具有简单剪切流且处于不同温度的流体样本。我们创建了一系列扩散系数视频,以模拟粒子在流动和温度条件下的布朗运动。我们更新后的粒子扩散测量分析在三种不同多项式次数的剪切流下形成了一个校正方程,这些剪切流具有不同的流速,温度范围在25至65°C之间。我们进行了一项在具有矩形横截面的通道中使用注射泵产生恒定流的实验,以分析改进后的算法。在模拟分析中,改进后的算法在所有三种流型上,对于平均流速高达8时,成功计算出扩散系数,误差在10%以内。补充实验证实了模拟结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/963d/9871426/dcd64d424271/348_2022_3566_Fig1_HTML.jpg

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