Qian Wenjie, Zhou Zhou, Wang Qing, Shi Wei, Xu Manman, Sun Daoheng
School of Mechanical and Automotive Engineering, Anhui Polytechnic University, Wuhu 241000, China.
Wuhu HIT Robot Industry Research Institute Co., Ltd., Wuhu 241000, China.
Micromachines (Basel). 2024 Aug 15;15(8):1038. doi: 10.3390/mi15081038.
Passive fluid control has mostly been used for valves, pumps, and mixers in microfluidic systems. The basic principle is to generate localized losses in special channel structures, such as branches, grooves, or spirals. The flow field in two-dimensional space can be easily calculated using the typical Stokes formula, but it is challenging in three-dimensional space. Moreover, the flow field with periodic variable cross-sections channeled of polyhedral units has been neglected in this research field due to previous limitations in manufacturing technology. With the continuous progress of 3D printing technology, the field of microfluidic devices ushered in a new era of manufacturing three-dimensional irregular channels. In this study, we present finite analysis results for a periodic nodular-like channel. The experiments involve variations in the Reynold number (Re), periodic frequency, and comparative analyses with conventional structures. The findings indicate that this variable 3D cross-section structure can readily achieve performance comparable to other passive fluid control methods in valve applications. A 3D model of the periodic tetrahedron channel was fabricated using 3D printing to validate these conclusions. This research has the potential to significantly enhance the performance of passive fluid control units that have long been constrained by manufacturing dimensions.
被动流体控制主要应用于微流体系统中的阀门、泵和混合器。其基本原理是在特殊的通道结构(如分支、凹槽或螺旋结构)中产生局部损失。二维空间中的流场可以使用典型的斯托克斯公式轻松计算,但在三维空间中却具有挑战性。此外,由于先前制造技术的限制,该研究领域一直忽略了具有多面体单元的周期性可变横截面通道的流场。随着3D打印技术的不断进步,微流体设备领域迎来了制造三维不规则通道的新时代。在本研究中,我们展示了周期性结节状通道的有限分析结果。实验涉及雷诺数(Re)、周期频率的变化以及与传统结构的对比分析。研究结果表明,这种可变的三维横截面结构在阀门应用中能够轻松实现与其他被动流体控制方法相当的性能。使用3D打印制作了周期性四面体通道的三维模型以验证这些结论。这项研究有可能显著提高长期以来受制造尺寸限制的被动流体控制单元的性能。