Journal articles · Conferences · Theses

Publications

Research contributions across particle mechanics, lunar engineering, microwave-assisted excavation, fuel mixing, and energy systems.

Verified additions & theses

Selected publications and degree research with links to publisher or institutional records. These entries extend the original website’s bibliography.

  1. 2016 · Journal articleThe influence of microwave irradiation on rocks for microwave-assisted underground excavationHassani, F., Nekoovaght, P. M., & Gharib, N.Journal of Rock Mechanics and Geotechnical Engineering, 8(1), 1–15.Publication record ↗ (opens in a new tab)
  2. 2015 · Conference proceedingsMicrowave Assisted Rock Breakage for Space MiningNekoovaght, P., Gharib, N., & Hassani, F.Earth and Space 2014, pp. 414–423. Proceedings published in 2015.Publication record ↗ (opens in a new tab)
  3. 2014 · PhD thesisInvestigating regolith induced wear and dust mitigationGharib, N.McGill University. Supervisor: Peter Radziszewski.Publication record ↗ (opens in a new tab)
  4. 2008 · MASc thesisFlammable mixture formation in a transient gaseous fuel injection processGharib, N.University of Windsor.Publication record ↗ (opens in a new tab)

Complete original bibliography

All 23 entries from the original Publications page are retained below, covering journal articles, conference contributions, and a technical report. Minor typographical errors have been corrected.

  1. Nekoovaght, P., Gharib, N., and Hassani, F., 2014. Numerical simulation and experimental investigation of the influence of microwave radiation on hard rock surface. In 8th Asian rock mechanics symposium, Sapporo, Japan, 2014.
  2. Boucher, D., Gharib, N., Leadbeater, T., and Waters, K., 2013. PEPT validation of CFD and DEM modeling of fine quartz particles (55 μm) behaviour in stirred water. In 15th China Mining Conference and Exhibition.
  3. Biron, V., Boucher, M., Bergeron, A., Onge, F., Gharib, N., Cyr, J., Potvin, M., Shu, L., and Radziszewski, P., 2013. Design of a lunar dust resistant connection interface using biomimetic strategies. Canadian Aeronautics and Space Journal.Author-hosted article PDF ↗ (opens in a new tab)
  4. Gharib, N. and Radziszewski, P., 2012a. Lunar dust mitigation by travelling electrostatic waves. In 13th ASCE Aerospace Division Conference on Engineering, Construction, and Operations in Challenging Environments.
  5. Gharib, N. and Radziszewski, P., 2012b. Investigating regolith infiltration and wear of sliding surfaces. In 13th ASCE Aerospace Division Conference on Engineering, Construction, and Operations in Challenging Environments.
  6. Gharib, N. and Radziszewski, P., 2011a. Lunar dust mitigation by travelling electrostatic waves. In 62nd International Astronautical Congress, South Africa, 2011a.
  7. Gharib, N., Briend, R., Moghaddam, N., and Radziszewski, P., 2011. The effect of electrical charge and gravity on angle of repose formation. In EDEM Conference.
  8. Gharib, N. and Radziszewski, P. Integration of simulation technology into engineering curricula. Technical report, University - Industry Workshop, Cornell University, Ithaca, New York, US., 2011b.
  9. Gharib, N. and Radziszewski, P., 2010a. Investigating regolith infiltration and wear of sliding surfaces. In 15th CASI Astronautics Conference ASTRO.
  10. Gharib, N. and Radziszewski, P., 2010b. Returning to the moon, problems and challenges. In 7th Interdisciplinary Graduate Student Research Symposium.
  11. Radziszewski, P., Martins, S., Faragalli, M., N.K.Moghaddam, Oyama, D., Briend, R., Gharib, N., Prahacs, C., Ouellette, S., Pasini, D., Thomson, V., Lowther, D., Farhat, M., and Jones., B., 2010a. iRings development of a wheel prototype concept for lunar mobility. Canadian Aeronautics and Space Journal.
  12. Radziszewski, P., Martins, S., Faragalli, M., N.K.Moghaddam, Oyama, D., Briend, R., Gharib, N., Prahacs,C., Ouellette, S., Pasini, D., Thomson, V., Lowther, D., Farhat, M., and Jones., B., 2010b. Development of a wheel prototype concept for a lunar mobility. In 15th CASI Astronautics Conference ASTRO.
  13. Gharib, N. and Sobiesiak, A., 2009. Flammable mixture formation in a transient gaseous fuel injection process. In The Combustion Institute Canadian Section (CICS).
  14. Zamani, N., Gharib, N., and Kaloni, P., 2009. Case studies of beam offset in FEA calculations. Journal of Mechanical Engineering Education.
  15. Gharib, N. and Sobiesiak, A., 2008a. Mixing rate of transient gaseous fuel jet with air in tumbling or swirling motion. In The Combustion Institute Canadian Section (CICS).
  16. Gharib, N. and Sobiesiak, A., 2008b. Flammable mixture formation and mixing rates of transient gaseous fuel jet with air in tumbling and swirling motion. In KONES, Poland.
  17. Zamani, N., Gharib, N., and Kaloni, P., 2007. The effect of beam offsetting in FEA calculations. In CANCAM.
  18. Abolhassani, N., Gharib, N., Moqtaderi, H., Hejabi, M., Amiri, M., Torabi, F., and Mosahebi, A., 2006. Prediction of state of charge on lead-acid battery characteristics using neural network parameter modifier. Journal of Power Sources, 158:932–935.
  19. Hejabi, M., Gharib, N., Oweisi, A., and Abedinpour, H., 2006. Modeling of kinetic behavior of the lead dioxide electrode in a lead-acid battery by means of electrochemical impedance spectroscopy. Journal of Power Sources, 158:944–948.
  20. Shokouhmand, H., Gharib, N., and Bahrami, H., 2006a. Semi empirical correlation for pulsating heat pipes by using genetic algorithm. In ESDA.
  21. Shokouhmand, H., Gharib, N., and Bahrami, H., 2006b. Modeling of closed loop pulsating heat pipes by using neural network. In WESSEX.
  22. Hejabi, M., Gharib, N., and Owesi, A., 2004a. Investigation of state-of-charge of positive electrode of lead-acid battery by means of ac impedance measurement. In Chemical Physics.
  23. Hejabi, M., Gharib, N., and Owesi, A., 2004b. Investigation of soc effects on positive electrode of lead-acid battery characteristics using ANN parameter modifier. In Chemical Physics.

Figures and research media from the original research archive (opens in a new tab). Research affiliations and project descriptions refer to the periods in which the work was undertaken.