We theoretically investigate the behavior of Leidenfrost drops on a flat substrate submitted to a horizontal thermal gradient and highlight that they are able to self-propel in a preferential direction. Namely, they are found to travel towards the colder parts of the substrate, as if they were trying to maximize their lifetime. In particular, a centimetric water drop can reach velocities of the order of cm/s for thermal gradients of the order of a few K/mm. In general, the presented model, based upon the lubrication approximation in the vapor cushion as in the work of Sobac et al. [“Leidenfrost effect: Accurate drop shape modeling and new scaling laws,” Phys. Rev. E 90, 053011 (2014)] and here formulated for simplicity for a 2D drop, enable...
By sufficiently heating a solid, a sessile drop can be prevented from contacting the surface by floa...
This work focuses on the Leidenfrost effect. A water drop placed on a hot substrate levitates on a c...
An energy saving Leidenfrost levitation method is introduced to transport micro-droplets with virtua...
As discovered by Leidenfrost, liquids released over very hot solids levitate on a thin cushion of th...
When deposited on a hot bath, volatile drops are observed to stay in levitation: the so-called Leide...
It is well known that a liquid drop released over a very hot surface generally does not contact the ...
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...
In the Leidenfrost effect, drops levitate on a thin film of vapor generated by the evaporation of th...
International audienceWe show that a volatile liquid drop placed at the surface of a nonvolatile liq...
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 ...
The mobility of Leidenfrost drop has been exploited for the manipulation of drop motions. In the cla...
International audienceWe here present a simple fitting-parameter-free theory of the Leidenfrost effe...
A specific experimental set-up has been installed in a large centrifuge facility in order to study d...
By sufficiently heating a solid, a sessile drop can be prevented from contacting the surface by floa...
This work focuses on the Leidenfrost effect. A water drop placed on a hot substrate levitates on a c...
An energy saving Leidenfrost levitation method is introduced to transport micro-droplets with virtua...
As discovered by Leidenfrost, liquids released over very hot solids levitate on a thin cushion of th...
When deposited on a hot bath, volatile drops are observed to stay in levitation: the so-called Leide...
It is well known that a liquid drop released over a very hot surface generally does not contact the ...
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...
In the Leidenfrost effect, drops levitate on a thin film of vapor generated by the evaporation of th...
International audienceWe show that a volatile liquid drop placed at the surface of a nonvolatile liq...
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 ...
The mobility of Leidenfrost drop has been exploited for the manipulation of drop motions. In the cla...
International audienceWe here present a simple fitting-parameter-free theory of the Leidenfrost effe...
A specific experimental set-up has been installed in a large centrifuge facility in order to study d...
By sufficiently heating a solid, a sessile drop can be prevented from contacting the surface by floa...
This work focuses on the Leidenfrost effect. A water drop placed on a hot substrate levitates on a c...
An energy saving Leidenfrost levitation method is introduced to transport micro-droplets with virtua...