Size Control of Sessile Microbubbles for Reproducibly Driven Acoustic Streaming

作者:Volk Andreas*; Kaehler Christian J
来源:Physical Review Applied, 2018, 9(5): 054015.
DOI:10.1103/PhysRevApplied.9.054015

摘要

Acoustically actuated bubbles are receiving growing interest in microfluidic applications, as they induce a streaming field that can be used for particle sorting and fluid mixing. An essential but often unspoken challenge in such applications is to maintain a constant bubble size to achieve reproducible conditions. We present an automatized system for the size control of a cylindrical bubble that is formed at a blind side pit of a polydimethylsiloxane microchannel. Using a pressure control system, we adapt the protrusion depth of the bubble into the microchannel to a precision of approximately 0.5 mu m on a timescale of seconds. By comparing the streaming field generated by bubbles of width 80 mu m with a protrusion depth between -12 and 60 mu m, we find that the mean velocity of the induced streaming fields varies by more than a factor of 4. We also find a qualitative change of the topology of the streaming field. Both observations confirm the importance of the bubble size control system in order to achieve reproducible and reliable bubble-driven streaming experiments.

  • 出版日期2018-5-10