Geometric flow control in lateral flow assays: Macroscopic single-phase modeling

被引:3
|
作者
Jamshidi, Farshid [1 ]
Kunz, Willfried [1 ]
Altschuh, Patrick [1 ,2 ]
Bremerich, Marcel [3 ]
Przybylla, Robert [2 ]
Selzer, Michael [1 ,2 ]
Nestler, Britta [1 ,2 ]
机构
[1] Karlsruhe Univ Appl Sci, Inst Digital Mat Res, Moltkestr 30, D-76133 Karlsruhe, Germany
[2] Karlsruhe Inst Technol, Inst Appl Mat Microstruct Modelling & Simulat, Str Forum, D-76131 Karlsruhe, Germany
[3] Sartorius Stedim Biotech GmbH, August Spindler Str 11, D-37079 Gottingen, Germany
关键词
CAPILLARY-DRIVEN FLOWS; SPONTANEOUS IMBIBITION; LIQUIDS; LAW; DYNAMICS; KINETICS; WICKING; SCALE;
D O I
10.1063/5.0093316
中图分类号
O3 [力学];
学科分类号
08 ; 0801 ;
摘要
To describe the dynamics of fluid flow in Lateral Flow Assays (LFAs) and to understand the effect of geometry on the propagation speed of the fluid front, a single-phase model is developed. The model can predict wicking time for different geometries. Axisymmetric geometries with changes in their cross sections are studied to understand the wicking behavior. To validate the modeling results, imaging experiments that capture the fluid front are conducted on all geometries. In all cases, convincing agreement between modeling results and experimental data has been observed. Using data-driven information and knowledge about structure-property correlations, it is possible to control wicking processes to establish a desired velocity at a specific position in LFAs. The proposed approach serves as a basis for the creation of a design tool for application-oriented membranes. Published under an exclusive license by AIP Publishing.
引用
收藏
页数:10
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