arXiv · 2609.31196
Zero-Mean Oscillations Drive Recirculations in Potential Flows at Vanishing Reynolds Number
Abstract
Recirculating flows are central to transport phenomena, but their generation in potential flows requires additional physical mechanisms. We show experimentally that recirculation at vanishing Reynolds number can be produced at prescribed locations by coupling oscillations of a Hele-Shaw cell ceiling with an off-center passive obstacle. The net drift is well described by a potential flow model with no adjustable parameters. The resulting flows are localized around the obstacles and can be combined to generate programmable flow patterns at the microscale.
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Alexandre S. Avaro, Leon V. Gebhard, Gabriel Amselem, Charles N. Baroud. 2026-09-25. Zero-Mean Oscillations Drive Recirculations in Potential Flows at Vanishing Reynolds Number. https://arxiv.org/abs/2609.31196
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