It is well known that a liquid drop released over a very hot surface generally does not contact the surface nor boils but rather levitates over a thin vapor film generated by its own evaporation (Leidenfrost effect). In particular, the case of a hot (and flat) solid substrate has been extensively studied in recent years. In contrast, we here focus on Leidenfrost drops over a superheated liquid bath, addressing the problem theoretically and comparing our predictions with experimental results, detailed in a separate talk. We predict the geometry of the drop and of the liquid bath, based on the hydrostatic Young-Laplace and lubrication equations. A good agreement is observed with the available experimental data concerning the deformation of th...
When a liquid droplet is placed on a very hot solid, it levitates on its own vapor layer, a phenomen...
The Leidenfrost effect, classically associated with drops levitating on their own vapor over hot sol...
International audienceThe Leidenfrost effect, classically associated with drops levitating on their ...
In the Leidenfrost effect, a liquid drop stands above a very hot substrate and levitates over a bed ...
The Leidenfrost effect is studied for drops on a superheated yet non-volatile liquid pool, and contr...
International audienceWe show that a volatile liquid drop placed at the surface of a nonvolatile liq...
International audienceWe show that a volatile liquid drop placed at the surface of a nonvolatile liq...
We show that a volatile liquid drop placed at the surface of a nonvolatile liquid pool warmer than t...
We here present a simple fitting-parameter-free theory of the Leidenfrost effect (droplet levitation...
Droplets can be levitated by their own vapour when placed onto a superheated plate (the Leidenfrost ...
International audienceWe here present a simple fitting-parameter-free theory of the Leidenfrost effe...
In the Leidenfrost effect, drops levitate on a thin film of vapor generated by the evaporation of th...
Temperature control is omnipresent in today’s life: from keeping your fridge cold, maintaining a roo...
Temperature control is omnipresent in today’s life: from keeping your fridge cold, maintaining a roo...
A Leidenfrost drop forms when a volatile liquid is brought in contact with a very hot solid. Then, a...
When a liquid droplet is placed on a very hot solid, it levitates on its own vapor layer, a phenomen...
The Leidenfrost effect, classically associated with drops levitating on their own vapor over hot sol...
International audienceThe Leidenfrost effect, classically associated with drops levitating on their ...
In the Leidenfrost effect, a liquid drop stands above a very hot substrate and levitates over a bed ...
The Leidenfrost effect is studied for drops on a superheated yet non-volatile liquid pool, and contr...
International audienceWe show that a volatile liquid drop placed at the surface of a nonvolatile liq...
International audienceWe show that a volatile liquid drop placed at the surface of a nonvolatile liq...
We show that a volatile liquid drop placed at the surface of a nonvolatile liquid pool warmer than t...
We here present a simple fitting-parameter-free theory of the Leidenfrost effect (droplet levitation...
Droplets can be levitated by their own vapour when placed onto a superheated plate (the Leidenfrost ...
International audienceWe here present a simple fitting-parameter-free theory of the Leidenfrost effe...
In the Leidenfrost effect, drops levitate on a thin film of vapor generated by the evaporation of th...
Temperature control is omnipresent in today’s life: from keeping your fridge cold, maintaining a roo...
Temperature control is omnipresent in today’s life: from keeping your fridge cold, maintaining a roo...
A Leidenfrost drop forms when a volatile liquid is brought in contact with a very hot solid. Then, a...
When a liquid droplet is placed on a very hot solid, it levitates on its own vapor layer, a phenomen...
The Leidenfrost effect, classically associated with drops levitating on their own vapor over hot sol...
International audienceThe Leidenfrost effect, classically associated with drops levitating on their ...