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从倾斜落入粘性流体中的棒到由梯度磁场驱动且与磁力向量成任意角度的悬浮磁性珠链的运动:Stokes 流研究。

From an obliquely falling rod in a viscous fluid to the motion of suspended magnetic bead chains that are driven by a gradient magnetic field and that make an arbitrary angle with the magnetic force vector: A Stokes flow study.

机构信息

Department of Physics, Case Western Reserve University, Cleveland, Ohio, United States of America.

出版信息

PLoS One. 2024 Apr 16;19(4):e0301852. doi: 10.1371/journal.pone.0301852. eCollection 2024.

Abstract

In view of the growing role of magnetic particles under magnetic field influence in medical and other applications, and perforce the bead chaining, it is important to understand more generally the chain dynamics. As is well known, in the presence of a magnetic field, magnetic beads tend to form chains that are aligned with the magnetic field vector. In addition, if there is a magnetic field gradient, there will be a magnetic force acting on this chain. The main goal of the present research is to study the motion of a magnetic bead chain that makes an arbitrary angle with the magnetic force vector in the Stokes flow limit, that is, in the limit of zero Reynolds number. We used the public-domain computer program HYDRO++ to calculate the mobility matrix, which relates the magnetic force acting on the chain to the velocity of the chain, for a chain of N beads making an arbitrary angle with the magnetic force vector. Because of the presence of off-diagonal elements of the mobility matrix, as the chain is drawn in the direction of the magnetic force, it is also deflected to the side. We derived analytic solutions for this motion. Also, for bead chains moving in directions both parallel and perpendicular to their lengths, we fit three-parameter functions to solutions from HYDRO++. We found the fits to be excellent. Combining these results with the analytic solutions, we obtained expressions for the velocity components for the bead chains that provide excellent fits to HYDRO++ solutions for arbitrary angles. Finally, we apply the methodology used for the bead chain studies to the study of an obliquely falling rod in a viscous fluid and derive analytic solutions for the velocity components of the obliquely falling rod.

摘要

鉴于磁性粒子在磁场影响下在医学和其他应用中的作用越来越大,并且必然会出现珠链,因此更全面地了解链动力学变得尤为重要。众所周知,在磁场存在的情况下,磁性珠粒倾向于形成与磁场矢量对齐的链。此外,如果存在磁场梯度,那么将有一个磁力作用于这个链上。本研究的主要目的是研究在 Stokes 流极限(即零雷诺数极限)下,与磁力矢量成任意角度的磁性珠链的运动。我们使用公共域计算机程序 HYDRO++来计算移动矩阵,该矩阵将作用在链上的磁力与链的速度相关联,用于与磁力矢量成任意角度的 N 个珠的链。由于移动矩阵的非对角元素的存在,当链沿着磁力的方向被拉动时,它也会向侧面偏斜。我们推导出了这种运动的解析解。此外,对于沿其长度平行和垂直移动的珠链,我们拟合了 HYDRO++解的三参数函数。我们发现拟合非常出色。将这些结果与解析解结合起来,我们得到了珠链速度分量的表达式,这些表达式为珠链提供了对任意角度的 HYDRO++解的出色拟合。最后,我们将用于珠链研究的方法应用于研究粘性流体中倾斜下降的杆,并推导出倾斜下降杆的速度分量的解析解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9aac/11020374/29b1678513a3/pone.0301852.g001.jpg

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