4.8 Article

Collective Entrainment and Confinement Amplify Transport by Schooling Microswimmers

期刊

PHYSICAL REVIEW LETTERS
卷 127, 期 8, 页码 -

出版社

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevLett.127.088006

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资金

  1. Human Frontier Science Program [LT001670/2017]
  2. United States Department of Agriculture (USDA-NIFA AFRI) [2020-67017-30776, 2020-6701532330]
  3. BMBF/MPG MaxSynBio initiative
  4. DFG [SPP 1726]

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Microswimmers can serve as efficient cargo carriers that can move deep inside complex flow networks. When a school collectively entrains the surrounding fluid, their transport capacity can be significantly enhanced, even for dilute schools. The volume of liquid entrained can be much larger than the droplet itself, amplifying the effective cargo capacity over an order of magnitude.
Microswimmers can serve as cargo carriers that move deep inside complex flow networks. When a school collectively entrains the surrounding fluid, their transport capacity can be enhanced. This effect is quantified with good agreement between experiments with self-propelled droplets and a confined Brinkman squirmer model. The volume of liquid entrained can be much larger than the droplet itself, amplifying the effective cargo capacity over an order of magnitude, even for dilute schools. Hence, biological and engineered swimmers can efficiently transport materials into confined environments.

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