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#bubbledynamics — Public Fediverse posts

Live and recent posts from across the Fediverse tagged #bubbledynamics, aggregated by home.social.

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  1. How do suspended particles affect the tiny jets formed by bursting bubbles?

    This study shows that nanoparticle- and microparticle-laden liquids behave very differently, revealing complex couplings between viscosity, surface tension, and interfacial stresses.

    🔗 doi.org/10.1063/5.0315998

    #FluidMechanics #BubbleDynamics #InterfacialFlows #Capillarity #aerosols

  2. From industrial foams to volcanic systems, frothy fluids combine gas and liquid in surprisingly complex ways. This study introduces a streamlined model to better understand how these bubbly materials flow and evolve.

    🔗 pubs.aip.org/aip/pof/article/3

    #BubbleDynamics #FluidPhysics #Foams #Rheology #Science

  3. From industrial foams to volcanic systems, frothy fluids combine gas and liquid in surprisingly complex ways. This study introduces a streamlined model to better understand how these bubbly materials flow and evolve.

    🔗 pubs.aip.org/aip/pof/article/3

    #BubbleDynamics #FluidPhysics #Foams #Rheology #Science

  4. Tiny pressure oscillations can strongly affect #BubbleDynamics during #boiling.

    Understanding these instabilities is key to predicting transitions toward #Leidenfrost states and improving #HeatTransfer control in extreme thermal conditions.

    🔗 pubs.aip.org/aip/pof/article/3

    #FluidDynamics

  5. When two cavitation bubbles of different sizes collapse, they form distinct jet patterns that affect local pressure and energy distribution.

    Understanding these dynamics helps predict damage in hydraulic systems.

    🔗 doi.org/10.1063/5.0319732

    #cavitation #bubbledynamics #fluidmechanics #EnergyTransfer #hydraulics

  6. Energy redistribution between bubbles depends on initial size and pressure.

    Understanding these mechanisms helps improve models of bubble clouds in fluids, relevant from naval to biomedical applications.

    🔗 doi.org/10.1063/5.0300783

    #bubblyliquids #fluiddynamics #bubbledynamics #EnergyTransfer #cavitation

  7. Bubble-laden turbulence challenges Kolmogorov scaling: high-res simulations show gas phase deviates while liquid phase mostly follows classical turbulence.
    Energy transfer is altered at small scales by interfacial dynamics.

    🔗 journals.aps.org/prfluids/abst

    #Turbulence #MultiphaseFlow #KolmogorovScaling #EnergyTransfer #BubbleDynamics