A pair of water drops on a superhydrophobic substrate evaporates slower than a lone drop due to vapor shielding, and a diffusion-plus-cooling-plus-convection model approximates the heated case.
All-Optical Rapid Formation, Transport, and Sustenance of a Sessile Droplet in a Two-Dimensional Slit with Few-Micrometer Separation
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Evaporation of sessile drops on a heated superhydrophobic substrate
A pair of water drops on a superhydrophobic substrate evaporates slower than a lone drop due to vapor shielding, and a diffusion-plus-cooling-plus-convection model approximates the heated case.