Zobrazeno 1 - 7
of 7
pro vyhledávání: '"Yousef Shafiei"'
Publikováno v:
Chemical Engineering Research and Design. 160:216-223
s In this work, sessile drop and low-bond axisymmetric drop shape analysis methods were coupled to provide some new aspects on stick-slip behavior as well as stick time of a drop on calcite surfaces. Slightly hydrophobic calcite surfaces typified wit
Publikováno v:
The Canadian Journal of Chemical Engineering. 97:1386-1398
Publikováno v:
Colloid and Polymer Science. 296:1097-1108
A significant challenge of foam injection is the stability of the foam in formations. In this study, the modeling of liquid drainage and the impact of some parameters (i.e., concentration of surfactants, nano-particles, and monovalent ions) on the li
Autor:
Yousef Shafiei, Mohammad Azadi Tabar, Mohammad Hossein Ghazanfari, Mohammad Shayesteh, Abolfazl Dehghan Monfared
Publikováno v:
Journal of Natural Gas Science and Engineering. 83:103613
Wettability alteration analysis form gas-repellent to gas-wet with the aid of chemical agents has been subjected of numerous studies. However, fundamental understanding of the effect of surface tension of liquid on repellency strength, the change in
Publikováno v:
ICPS 2013: International Conference on Photonics Solutions.
In this work we have studied the interaction of a laser pulse with single-walled metallic carbon nanotubes. We have discussed the Rabi oscillations in zigzag carbon nanotubes based on the two-band model. We have shown the interband coupling coefficie
Publikováno v:
ICPS 2013: International Conference on Photonics Solutions.
The silicon carbide layer was deposited on Si substrate by Plasma Enhanced Chemical Vapor Deposition method and it was shown its RFTIR spectrum is periodic in near and medium IR range by using this property refractive index of thin film was calculate
Publikováno v:
2012 IEEE 3rd International Conference on Photonics.
Dispersion properties of air-clad and silica-coated silicon photonic wires for nonlinear applications are investigated with exact solutions of Maxwell's equations. We show that the GVD of silicon nanowires can be tailored for different wavelengths in