1.
Shalin, R.E., Polymer Matrix Composites. Springer, p. 440, 1995. ISBN 0412613301. doi: [Crossref] 2.
Gohardani, O., The infl uence of erosion and wear on the accretion and adhesion of ice for nano reinforced polymeric composites used in aeronautics. Ph.D. Thesis, Cranfi eld University, United Kingdom, 2011.
3.
Gohardani, O., Impact of erosion testing aspects on current and future fl ight conditions. Progress in Aerospace Sciences, 47(4), Elsevier, pp. 280–303, 2011. [Crossref] 4.
Gohardani, O., Williamson, D.M. & Hammond, D.W., Multiple liquid impacts on polymeric matrix composites reinforced with carbon nanotubes. Wear, 294–295, pp. 336–346, 2012. doi: http://dx.doi.org/10.1016/j.wear.2012.07.007 [Crossref] 5.
Gohardani O. & Hammond, D.W., Droplet interaction and dynamic wettability of advanced materials used in aeronautics. Presented at the 6th Subrata Chakrabarti International Conference on Fluid Structure Interaction, Fluid Structure Interaction May 9–11, 2011, Orlando, Florida, U.S.A.
6.
Gohardani, A.S., Doulgeris, G. & Singh, R., Challenges of future aircraft propulsion: a review of distributed propulsion technology and its potential application for the all electric commercial aircraft. Progress in Aerospace Sciences, 47(5), Elsevier, pp. 369–391, 2011. doi: http://dx.doi.org/10.1016/j.paerosci.2010.09.001 [Crossref] 7.
Gohardani, A.S., A synergistic glance at the prospects of distributed propulsion technology and the electric aircraft concept for future unmanned air vehicles and commercial/military aviation. Progress in Aerospace Sciences, 2012. [Crossref] 8.
Gohardani A.S. & Gohardani O. Ceramic engine considerations for future aerospace propulsion. Aircraft Engineering and Aerospace Technology, 84(2), pp. 75–86, 2012. doi: http://dx.doi.org/10.1108/00022661211207884 [Crossref] 9.
Gohardani, O. & Hammond, D.W., Droplet interaction and dynamic wettability of advanced materials used in aeronautics. Advances in Fluid Mechanics IX, WIT Transactions on Engineering Sciences. ISBN 978-1-84564-600-4, pp. 175–185, 2012.
10.
Hammond, D.W., Luxford, G. & Ivey P., The Cranfi eld University Icing Tunnel. In: 41st AIAA Aerospace Sciences Meeting & Exhibit. 6–9 Jan 2003, Reno, U.S.A.
11.
Young, T., An essay on the cohesion of fl uids. Philosophical Transactions of The Royal Society London, 95, pp. 65–87, 1805. doi: [Crossref] 12.
Tadmor, R., Line energy and the relation between advancing, receding, and young contact angles. Langmuir, 20(18), pp. 7659 –7664, 2004. doi: [Crossref] 13.
Ide, R.F., Comparison of Liquid Water Content measurement techniques in an icing wind tunnel. ASA/TM-1999-209643, 1999.
14.
Rein, M., Phenomena of liquid drop impact on solid and liquid surfaces. Fluid Dynamics Research, 12(2), pp. 61–93, 1993. doi: [Crossref] 15.
Gonzalez, R.C., Woods, R.E. & Eddins, S.L., Digital Image Processing Using MATLAB, 2nd edn., Gatesmark Publishing, 2009. ISBN 9780982085400.
16.
Schlichting, H. & Gersten, K., Boundary-Layer Theory. Springer, 2000. ISBN 3-540-66270-7.
17.
Pasandideh-Fard, M., Qiao, Y.M., Chandra, S. & Mostaghimi, J., Capillary effects during droplet impact on a solid surface. Physics of Fluids, 8(3), pp. 650–659, 1996. doi: [Crossref] 18.
Aziz, S.D. & Chandra, S., Impact, recoil and splashing of molten metal droplets. International Journal of Heat Mass Transfer, 43, pp. 2841–2857, 2000. doi: [Crossref] 19.
Allen, R.F. The role of surface tension in splashing. Journal of Colloid and Interface Science, 51, pp. 350–351, 1975. doi: [Crossref] 20.
Gohardani, O., Experimental investigation of Rayleigh-Taylor instability using a paramagnetic liquid combination. M.Sc. Thesis, University of Arizona, U.S.A., 2008.
21.
Gohardani, O., Oemke, R. & Jacobs, J.W., PLIF fl ow visualization of magnetically stabilized Rayleigh-Taylor instability. American Physical Society, 59th Annual Meeting of the APS Division of Fluid Dynamics, November 19–21, 2006, Tampa Bay, Florida, U.S.A.
22.
Gohardani, O., Oemke, R. & Jacobs, J.W., Experimental study of Rayleigh-Taylor Instability utilizing a paramagnetic liquid combination. American Physical Society, 60th Annual Meeting of the APS Division of Fluid Dynamics, November 18–20, 2007. Salt Lake City, Utah, U.S.A.
23.
Gohardani, O. & Jacobs, J.W. Experimental investigation of the Rayleigh-Taylor Instability using a paramagnetic liquid combination. Proceedings of the 11th International Workshop on the Physics of Compressible Turbulent Mixing (IWPCTM), July 13–18, 2008, Santa Fe, New Mexico, U.S.A.
24.
Gohardani, O., The Exploration of Icephobic Materials and Their Future Prospects in Aircraft Icing Applications. J Aeronaut Aerospace Eng, 1, p. e116, 2012. [Crossref]