Bulletin of the American Physical Society
77th Annual Meeting of the Division of Fluid Dynamics
Sunday–Tuesday, November 24–26, 2024; Salt Lake City, Utah
Session ZC18: Microscale and Nanoscale Flows: Particles, Drops, Bubbles II
12:50 PM–2:47 PM,
Tuesday, November 26, 2024
Room: 250 B
Chair: Francisco Goio Castro, ESPCI
Abstract: ZC18.00002 : High-Speed Droplet Generation in 3D Gas-Liquid Droplet Microfluidic Systems
1:03 PM–1:16 PM
Presenter:
Sri Harsha Maddila
(Northeastern University)
Authors:
Sri Harsha Maddila
(Northeastern University)
Carlos H Hidrovo
(Northeastern University)
Zihao Meng
(Northeastern University)
Collaboration:
Multiscale Thermal Fluids Laboratory (MTFL)
Here, we explore and characterize non-planar, ‘three-dimensional’ gas-liquid droplet microfluidic devices to overcome some of the problems that quasi two-dimensional structures have. By ensuring that the carrier phase (liquid) is enveloped by the continuous phase (gas), additional contact of the carrier phase with the flow channel walls is avoided, enhancing throughput performance and system robustness. We use standard 2D planar soft lithography techniques to create 3D architectures instead of custom assemblies needed for each 3D microfluidic device using concentric capillaries. This allows for easier customizability of the flow-focusing geometries to determine optimal architectures.
We have experimentally visualized and comprehensively mapped the flow regime of various 3D gas-liquid droplet microfluidic chip designs via a high-speed camera. We compare the results of the work on quasi-2D chips and discuss how 3D gas-liquid droplet microfluidic systems obtain a higher droplet generation throughput; via a faster transition to the jetting regime by avoiding liquid-wall collisions that delay said transition. Finally, we test the effects of geometry on the flow regime and discuss further optimization to maximize droplet generation.
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