Pages that link to "Item:Q3594865"
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The following pages link to An analysis of the distortion and breakup mechanisms of high speed liquid drops (Q3594865):
Displaying 17 items.
- Dynamics of separation of a single drop in air (Q477231) (← links)
- Criteria of high-pressure shockless drop breakup by soliton-type gasdynamic impulses (Q1402804) (← links)
- A robust interface method for drop formation and breakup simulation at high density ratio using an extrapolated liquid velocity (Q1647046) (← links)
- On the development of spray submodels based on droplet size moments. (Q1868575) (← links)
- Transformation features of liquid massifs and jets falling in gas environment (Q2800855) (← links)
- A new breakup regime of liquid drops identified in a continuous and uniform air jet flow (Q3532099) (← links)
- Secondary breakup of axisymmetric liquid drops. II. Impulsive acceleration (Q3555498) (← links)
- An experimental study of drop deformation and breakup in extensional flow at high capillary number (Q3555500) (← links)
- Droplet breakup in a stagnation-point flow (Q4970613) (← links)
- Prediction of the droplet size distribution in aerodynamic droplet breakup (Q5068981) (← links)
- Numerical simulation of the aerobreakup of a water droplet (Q5226120) (← links)
- Liquid jet primary breakup in a turbulent cross-airflow at low Weber number (Q5235750) (← links)
- Transient deformation and drag of decelerating drops in axisymmetric flows (Q5303606) (← links)
- An experimental study of the effect of gas density on the distortion and breakup mechanism of drops in high speed gas stream (Q5454447) (← links)
- Most unstable waves of a stagnant planar liquid film blown by a high speed viscous gas with a Blasius velocity profile (Q5946961) (← links)
- Detailed numerical investigation of the drop aerobreakup in the bag breakup regime (Q6081644) (← links)
- Exploration of shock-droplet interaction based on high-fidelity simulation and improved theoretical model (Q6590311) (← links)