Biography

Dr. Low-Hong Tong

Department of Mechanical Engineering, Department of Bioengineering

National University of Singapore, Singapore

Associate Professor


Email: [email protected]


Qualifications

1982 Ph.D., McGill University, Mechanical Engineering, Montreal, Canada

1980 M.E., McGill University, Mechanical Engineering, Montreal, Canada

1975 B.E., University of Sheffield, United Kingdom


Publications (selected)

  1. Hasheminejad, S. M., Mitsudharmadi, H., Winoto, S. H., et al. (2017). Development of streamwise counter-rotating vortices in flat plate boundary layer pre-set by leading edge patterns. Experimental Thermal and Fluid Science, 86, 168-179.
  2. Raman, K. A., Jaiman, R. K., Lee, T. S., & Low, H. T. (2017). Dynamics of simultaneously impinging drops on a dry surface: Role of impact velocity and air inertia. Journal of Colloid and Interface Science, 486, 265-276.
  3. Budiman, A. C., Mitsudharmadi, H., Bouremel, Y., et al. (2016). Effects of Wavy Channel Entrance Design on Streamwise Counter-rotating Vortices: a Visualization Study. Journal of Applied Fluid Mechanics, 9(5), 2161-2166.
  4. Raman, K. A., Jaiman, R. K., Sui, Y., et al. (2016). Rebound suppression of a droplet impacting on an oscillating horizontal surface. Physical Review E, 94(2), Article 023108.
  5. Hasheminejad, S. M., Mitsudharmadi, H., Winoto, S. H., et al. (2016). Streamwise counter-rotating vortices generated by triangular leading edge pattern in flat plate boundary layer. Journal of Visualization, 19(3), 359-367.
  6. Raman, K. A., Jaiman, R. K., Lee, T. S., & Low, H. T. (2016). A numerical study on electrowetting-induced jumping and transport of droplet. International Journal of Heat and Mass Transfer, 99, 805-821.
  7. Raman, K. A., Jaiman, R. K., Lee, T. S., & Low, H. T. (2016). Lattice Boltzmann study on the dynamics of successive droplets impact on a solid surface. Chemical Engineering Science, 145, 181-195.
  8. Raman, K. A., Jaiman, R. K., Lee, T. S., & Low, H. T. (2016). Lattice Boltzmann simulations of droplet impact onto surfaces with varying wettabilities. International Journal of Heat and Mass Transfer, 95, 336-354.
  9. Budiman, A. C., Mitsudharmadi, H., Bouremel, Y., et al. (2016). Development of pre-set counter-rotating streamwise vortices in wavy channel. Experimental Thermal and Fluid Science, 71, 77-85.
  10. Budiman, A. C., Mitsudharmadi, H., Bouremel, Y., et al. (2015). Visualization of pre-set vortices in boundary layer flow over wavy surface in rectangular channel. Journal of Visualization, 18(4), 669-677.
  11. Raman, K. A., Jaiman, R. K., Lee, T. S., & Low, H. T. (2015). On the dynamics of crown structure in simultaneous two droplets impact onto stationary and moving liquid film. Computers & Fluids, 107, 285-300.
  12. Ju, M., Ye, S. S., Namgung, B., et al. (2015). A review of numerical methods for red blood cell flow simulation. Computer Methods in Biomechanics and Biomedical Engineering, 18(2), 130-140.
  13. Bai, H. X., Yu, P., Zeng, Y., et al. (2014). MASS TRANSPORT FOR MIXED CO-CULTURE APPLICATIONS IN A PERFUSION BIOREACTOR PARTIALLY FILLED WITH A POROUS LAYER. Journal of Porous Media, 17(1), 17-30.
  14. Ju, M., Ye, S. S., Low, H. T., et al. (2013). Effect of deformability difference between two erythrocytes on their aggregation. Physical Biology, 10(3), Article 036001.
  15. Yu, P., Zeng, Y., Lee, T. S., et al. (2012). Numerical simulation on steady flow around and through a porous sphere. International Journal of Heat and Fluid Flow, 36, 142-152.
  16. Ju, M., Low, H. T., & Kim, S. (2012). Numerical simulation of blood flow with different red blood cell deformability. FASEB Journal, 26.
  17. Yu, P., Zeng, Y., Lee, T. S., et al. (2011). Steady flow around and through a permeable circular cylinder. Computers & Fluids, 42(1), 1-12.
  18. Chen, X. B., Sui, Y., Cheng, Y. P., et al. (2010). Mass transport in a microchannel enzyme reactor with a porous wall Hydrodynamic modeling and applications. Biochemical Engineering Journal, 52(2-3), 227-235.
  19. Chen, X. B., Sui, Y., Lee, H. P., et al. (2010). Mass Transport in a Microchannel Bioreactor With a Porous Wall. Journal of Biomechanical Engineering-Transactions of the ASME, 132(6), Article 061001.
  20. Yu, P., Zeng, Y., Lee, T. S., et al. (2010). Wake structure for flow past and through a porous square cylinder. International Journal of Heat and Fluid Flow, 31(2), 141-153.

Profile Details

https://blog.nus.edu.sg/citations/2009/03/30/dr-low-hong-tong-living-with-fluids-working-with-wikis/
https://www.researchgate.net/scientific-contributions/H-T-Low-39628606
https://www.linkedin.com/in/hong-tong-low-4a0335b/


WOS ResearchID: G-3094-2012

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