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#multiphaseflow — Public Fediverse posts

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  1. What makes an evaporating droplet suddenly break apart?

    This study links vapor bubble growth and collapse to different atomization regimes in microemulsion droplets, revealing how interfacial instabilities drive fragmentation.

    🔗 doi.org/10.1103/prbb-cbyr

    #FluidDynamics #Droplets #Atomization #MultiphaseFlow #physics

  2. What makes an evaporating droplet suddenly break apart?

    This study links vapor bubble growth and collapse to different atomization regimes in microemulsion droplets, revealing how interfacial instabilities drive fragmentation.

    🔗 doi.org/10.1103/prbb-cbyr

    #FluidDynamics #Droplets #Atomization #MultiphaseFlow #physics

  3. Reaction-controlled ripening can invert intuition: on patterned surfaces, bubble growth is not always “big wins, small loses”.

    Geometry and contact angle reshape the chemical potential landscape, enabling reversed volume exchange between bubbles.

    🔗 doi.org/10.1103/pynn-xgv9

    #FluidDynamics #MultiphaseFlow #SoftMatter #Interfaces #physics

  4. Reaction-controlled ripening can invert intuition: on patterned surfaces, bubble growth is not always “big wins, small loses”.

    Geometry and contact angle reshape the chemical potential landscape, enabling reversed volume exchange between bubbles.

    🔗 doi.org/10.1103/pynn-xgv9

    #FluidDynamics #MultiphaseFlow #SoftMatter #Interfaces #physics

  5. 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

  6. A key takeaway for LeidenForce: surface wettability radically reshapes the surface–bubble–flow coupling—smaller bubbles, higher detachment frequency, stronger vortical flows.

    🔗 journals.aps.org/prfluids/abst

    #FluidDynamics #MultiphaseFlow #InterfacialFlows #LeidenfrostEffect #wettability