Recent Publications

Gupta, N. R., Haj-Hariri, H., and Borhan, A., “Thermocapillary flow in double-layer fluid structures: An effective single-layer model,” J. Colloid Interface Sci. 293, 158-171, 2005.

 

Chan, K. Y. and Borhan, A., “Surfactant-assisted spreading of a liquid drop on a smooth solid surface,” J. Colloid & Interface Sci. 287, 233-248, 2005.

 

Badding, J. V., Sazio, P.J. A., Amezcua Correa, A., Scheidemantel, T. J., Finlayson, C. E., Baril, N. F., Won, D-J., Fang, H., Jackson, B., Borhan, A., and Gopalan, V., “Fabrication of Extreme Aspect Ratio Wires within Photonic Crystal Fibers,” Proc. SPIE 6005, 60050I, 2005.

 

Fick, A., and Borhan, A., “Numerical Simulation of the Spontaneous Rise of Liquids in Cylindrical Capillaries,” Ann. N.Y. Acad, Sci. 1077, 426-442, 2006.

 

Almatroushi E. and Borhan, A., "Interaction and Coalescence of Drops and Bubbles Rising through a Tube," Ind. Eng. Chem. Res. 45(1), 398-406, 2006.

 

Gupta, N. R., Haj-Hariri, H., and Borhan, A., “Thermocapillary flow in double-layer fluid structures with a free surface at the top,” Ann. N.Y. Acad, Sci. 1077, 395-414, 2006.

 

Madasu, S., Borhan, A., and Ultman, J. S., “An Axisymmetric Single Path Model for Gas Transport in the Conducting Airways,” J. Biomech. Eng. 128(1), 69-75, 2006.

 

Almatroushi, E. and Borhan, A., “Coalescence of Drops and Bubbles in Tube Flow,” Ann. N.Y. Acad. Sci. 1077, 508-526, 2006.

 

Chan, K. Y. and Borhan, A., “Spontaneous spreading of surfactant-bearing drops drops in the sorption-controlled limit,” J. Colloid & Interface Sci. 302, 374-377, 2006.

Nadim, A. and Borhan, A., "Confined motion of a long bubble through a power-law fluid," Applied Mathematics Research express, vol. 2006, Article ID 36283, 1-11, 2006. doi:10.1155/AMRX/2006/36283.

Taylor, A., Borhan, A., and Ultman, J. S., “Three-Dimensional Simulations of Gas Uptake in Single Airway Bifurcations: Effect of Gas Flow,” Ann. Biomed. Eng. 35(2), 235-249, 2007.

 

Madasu, S., Borhan, A., and Ultman, J. S., “Gas uptake in a three-generation model geometry during steady expiration: comparison of axisymmetric and three-dimensional models,” Inhalation Toxicology, 19 (3), 199-210, 2007.

 

Gupta, N. R., Haj-Hariri, H., and Borhan, A., “Thermocapillary convection in double-layer fluid structures within an open cavity,” J. Colloid Interface Sci. 315(1), 237-247, 2007.

 

Madasu, S., Borhan, A., and Ultman, J. S., “Gas uptake in a three-generation model geometry with a flat inlet velocity during steady inspiration: comparison of axisymmetric and three-dimensional models,” Inhalation Toxicology 19(6/7), 495-503, 2007.

 

Madasu, S., Borhan, A., and Ultman, J. S., “Comparison of axisymmetric and three-dimensional models for gas uptake in a single airway bifurcation during steady expiration,” J. Biomech. Eng., to appear.

 

Madasu, S. and Borhan, A., “Spreading of a clean drop on a rigid solid: a two-dimensional finite element model,” Proceedings of the 15th Annual Conference of the CFD Society of Canada, Toronto, Canada, May 2007.

 

You, R., Borhan, A., and Haj-Hariri, H., “A finite volume formulation for simulating drop motion in a viscoelastic two-phase system,” J. Non-Newtonian Fluid Mech., to appear

 

You, R., Haj-Hariri, H., and Borhan, A., “Confined drop motion in viscoelastic two-phase systems,” Phys. Fluids, in review.

 
 

 

 

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Link to Penn State