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January 25, 2026Physics of Fluids0 citations

Self-propelling Leidenfrost ratchet boats

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IVIvan U. VakarelskiFKFarrukh KamoliddinovTTTadd Truscott

Key Points

  • This research aims to explore the dynamics of self-propulsion in boats utilizing asymmetric ratchet configurations on heated surfaces.
  • Constructed macroscopic alumina boats with asymmetric ratchets floating in volatile perfluorocarbon liquid.
  • Heated boats to 280 °C and measured self-propulsion speeds and distances traveled.
  • Analyzed impact of ratchet geometry on propulsion efficiency and drag during towing tests.
  • Boats reached speeds of several centimeters per second, traveling over one meter.
  • Efficiency differed based on ratchet geometry, with small pitches enhancing propulsion.
  • Herringbone-patterned ratchets provided further gains, and drag was reduced by ∼10% with proper orientation.

Abstract

A small liquid droplet placed on an asymmetric ratchet surface heated above the Leidenfrost temperature is known to self-propel. Here, we examine an alternative configuration: a heated macroscopic alumina boat (14 cm long) decorated with asymmetric ratchets and floated in volatile perfluorocarbon liquid. Boats with 1 mm pitch ratchets, heated to 280 °C, showed robust self-propulsion in the expected direction, reaching several centimeters per second and traveling more than one meter. An impulse–momentum balance scaling, derived from Leidenfrost droplet propulsion, predicts boat velocities of the same order but somewhat below experiments, suggesting enhanced efficiency of vapor flow in contact with bulk liquid. Propulsion efficiency depends strongly on ratchet geometry: for small pitches, bottom and sidewall ratchets act synergistically, while at larger pitches, sidewall ratchets reduce thrust by redirecting vapor. Herringbone-patterned ratchets further enhanced propulsion. Towing tests confirmed reduced drag when boats moved with their ratchet orientation, with ∼10% lower drag coefficients compared to smooth boats.

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Cite This Study

Vakarelski et al. (2026) studied this question.

synapsesocial.com/papers/6975b229feba4585c2d6da6chttps://doi.org/10.1063/5.0304551
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