International audienceWe fully characterize the natural evaporation of human drops of blood from substrates and substrate-dependent behavior. The heat flux adsorbed by the drops for evaporation is measured by means of a heat flux meter. A side-view measurement enables access to the drop contact angle, wetting diameter, and initial height. A top-view camera allows for the monitoring of the drying regime (deposition, gelation, and fracturation). This directly measured heat flux is related to the evaporative mass flux obtained from the mass of the drop, and the two show good agreement. Both types of measurements indicate that regardless of the substrate type, there is first a linearly decreasing regime of evaporation when the drop is mostly li...
Early diagnosis and treatment are crucial issues in medicine. Disease leads to alterations in the pr...
International audienceThe wetting of solid surfaces using liquid droplets has been studied since the...
We numerically and experimentally investigate evaporation of a sessile droplet on a heated substrate...
International audienceWe fully characterize the natural evaporation of human drops of blood from sub...
We fully characterize the natural evaporation of human drops of blood from substrates and substrate-...
International audienceThe drying of a drop deposited on a solid substrate has been the subject of se...
This work contributes to expand the scientific knowledge on sessile drop evaporation by presenting e...
The drying of a drop of human blood exhibits coupled physical mechanisms, such as Marangoni flow, ev...
The characteristics of water droplet heating and evaporation on structured hydrophobic and hydrophil...
International audienceWe report an experimental investigation of the drying of a deposited drop of w...
The evaporation characteristics of sessile droplets on heated hydrophobic and hydrophilic surfaces a...
International audienceWe experimentally investigate the behavior of a pinned water droplet evaporati...
International audienceWe experimentally investigate the behavior of a pinned water droplet evaporati...
Evaporation of a heated sessile water drop was studied experimentally at a temperature difference be...
Evaporation of a heated sessile water drop was studied experimentally at a temperature difference be...
Early diagnosis and treatment are crucial issues in medicine. Disease leads to alterations in the pr...
International audienceThe wetting of solid surfaces using liquid droplets has been studied since the...
We numerically and experimentally investigate evaporation of a sessile droplet on a heated substrate...
International audienceWe fully characterize the natural evaporation of human drops of blood from sub...
We fully characterize the natural evaporation of human drops of blood from substrates and substrate-...
International audienceThe drying of a drop deposited on a solid substrate has been the subject of se...
This work contributes to expand the scientific knowledge on sessile drop evaporation by presenting e...
The drying of a drop of human blood exhibits coupled physical mechanisms, such as Marangoni flow, ev...
The characteristics of water droplet heating and evaporation on structured hydrophobic and hydrophil...
International audienceWe report an experimental investigation of the drying of a deposited drop of w...
The evaporation characteristics of sessile droplets on heated hydrophobic and hydrophilic surfaces a...
International audienceWe experimentally investigate the behavior of a pinned water droplet evaporati...
International audienceWe experimentally investigate the behavior of a pinned water droplet evaporati...
Evaporation of a heated sessile water drop was studied experimentally at a temperature difference be...
Evaporation of a heated sessile water drop was studied experimentally at a temperature difference be...
Early diagnosis and treatment are crucial issues in medicine. Disease leads to alterations in the pr...
International audienceThe wetting of solid surfaces using liquid droplets has been studied since the...
We numerically and experimentally investigate evaporation of a sessile droplet on a heated substrate...