All Stories

  1. Hydrodynamics and propulsion of a hydrofoil undergoing leading-edge pitching and traveling wave-based surface undulation
  2. Measurements of flow-induced vibration of a flexible splitter plate mounted on a cylinder in free stream flow
  3. Propulsive performance of a two-dimensional elliptic foil undergoing interlinked pitching and heaving
  4. Isothermal and non-isothermal spreading of a viscous droplet on a solid surface in total wetting condition
  5. Assessing effectiveness and comfortability of a two-layer cloth mask with a high-efficiency particulate air (HEPA) insert to mitigate COVID-19 transmission
  6. Effect of shape of frontbody and afterbody on flow past a stationary cylinder at Re = 100
  7. Evaluating a transparent coating on a face shield for repelling airborne respiratory droplets
  8. How coronavirus survives for hours in aerosols
  9. Designing antiviral surfaces to suppress the spread of COVID-19
  10. Flow-induced vibrations of circular cylinder in tandem arrangement with D-section cylinder at low Reynolds number
  11. Bouncing droplets on an elastic, superhydrophobic cantilever beam
  12. Why coronavirus survives longer on impermeable than porous surfaces
  13. How coronavirus survives for days on surfaces
  14. Reducing chances of COVID-19 infection by a cough cloud in a closed space
  15. Harnessing flow-induced vibration of a D-section cylinder for convective heat transfer augmentation in laminar channel flow
  16. Tailoring surface wettability to reduce chances of infection of COVID-19 by a respiratory droplet and to improve the effectiveness of personal protection equipment
  17. Thrust generation by pitching and heaving of an elastic plate at low Reynolds number
  18. Likelihood of survival of coronavirus in a respiratory droplet deposited on a solid surface
  19. Vortex-induced vibration and galloping of a circular cylinder in presence of cross-flow thermal buoyancy
  20. Vortex-induced vibration of a cooled circular cylinder
  21. Erratum: “A sharp interface immersed boundary method for vortex-induced vibration in the presence of thermal buoyancy” [Phys. Fluids 30, 023603 (2018)]