Zobrazeno 1 - 10
of 162
pro vyhledávání: '"Ehud Yariv"'
Autor:
Ehud Yariv, Peng, Gunnar G.
Publikováno v:
Journal of Fluid Mechanics; 6/10/2024, Vol. 988, p1-17, 17p
Autor:
Ehud Yariv, Ory Schnitzer
Publikováno v:
Journal of Fluid Mechanics. 961
We revisit the classical problem of calculating the pancake-like shape of a sessile drop at large Bond numbers. Starting from a formulation where drop volume and contact angle are prescribed, we develop an asymptotic scheme which systematically produ
Autor:
Ehud Yariv
Publikováno v:
Physical Review Fluids. 8
Autor:
Ehud Yariv, Toby Kirk
Publikováno v:
IMA Journal of Applied Mathematics. 86:490-501
A common realization of superhydrophobic surfaces comprises of a periodic array of cylindrical bubbles which are trapped in a periodically grooved solid substrate. We consider the thermocapillary animation of liquid motion by a macroscopic temperatur
Autor:
Ehud Yariv
Publikováno v:
European Journal of Applied Mathematics. 32:226-241
As a result of field fringing, the capacitance of a parallel-plate capacitor differs from that predicted by the textbook formula. Using singular perturbations and conformal mapping techniques, we calculate the leading-order correction to the capacita
Autor:
Anthony M. J. Davis, Ehud Yariv
Publikováno v:
Journal of Engineering Mathematics. 133
Autor:
Ehud Yariv
Publikováno v:
Langmuir. 36:6903-6915
We consider the self-diffusiophoresis of axisymmetric particles using a continuum description where the interfacial chemical reaction is modeled by first-order kinetics with a prescribed axisymmetric distribution of rate-constant magnitude. We employ
Autor:
Ehud Yariv
Publikováno v:
European Journal of Applied Mathematics. 31:763-781
We consider two-dimensional mass transport to a finite absorbing strip in a uniform shear flow as a model of surface-based biosensors. The quantity of interest is the Sherwood number Sh, namely the dimensionless net flux onto the strip. Considering e
Autor:
Ehud Yariv, Darren Crowdy
Publikováno v:
Journal of Fluid Mechanics. 871:775-798
We consider the thermocapillary motion of a liquid layer which is bounded between two superhydrophobic surfaces, each made up of a periodic array of highly conducting solid slats, with flat bubbles trapped in the grooves between them. Following the r
We consider the inertia-free motion of an isotropic chemically active particle which is exposed to a weak uniform force field. This problem is characterised by two velocity scales, a ‘chemical’ scale associated with diffusio-osmosis and a ‘mech
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::2012e6e7dd2f611ba6973d06b53517ec
http://hdl.handle.net/10044/1/89197
http://hdl.handle.net/10044/1/89197