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Contact information
Visiting Assistant Professor
Department of Mathematics & Statistics
Memorial University of Newfoundland
St. John's, NL
CANADA
Tel. +1 (709) 864 3471
Email: Mun Gmail Hotmail
Web: http://www.math.mun.ca/~tksheel

Contents
Refereed Journal Publications
Conference Proceedings
Conference Presentations
Invited Talk
PhD Thesis
Master Thesis


Refereed journal
  1. T. K. Sheel (2011), Formulation of a Fast Vortex Method using MDGRAPE-2 International Journal of Engineering Simulation, Vol. 2, No. 3, 2011.
  2. T. K. Sheel (2011), Acceleration Techniques for Vortex Method Calculations: Part I, SUST Studies, Sylhet, Bangladesh, Vol. 14, No. 4, pp. 1-8, 2011.
  3. T. K. Sheel (2011), Acceleration of vortex method calculation using FMM and MDGRAPE-3, Progress In Electromagnetics Research B, Vol. 27, 327-348, 2011. http://www.jpier.org/pierb/pier.php?paper=10091804.
  4. T. K. Sheel (2010), Fundamentals of vortex method to flow around bluff body, Daffodil International University Journal of Science & Technology, Vol. 5, No. 2, pp. 56-62.
  5. T. K. Sheel (2010), Acceleration Techniques for Vortex Method Calculations: Part II, SUST Studies, Vol. 12, No. 1, pp. 7-14.
  6. T. K. Sheel (2010), Acceleration of bluff body calculation using MDGRAPE-2, International Journal of Engineering, Vol. 13, No. 2, pp. 169-176, 2010
  7. T. K. Sheel, S. Obi (2010), High Performance Computing Techniques for vortex method calculations, International Journal of Theoretical and Computational Fluid Dynamics, 24, 175-179, Springer Verleg, doi:10.1007/s00162-009-0149-y.
  8. T. K. Sheel (2009), Acceleration of Vortex Methods Calculation using MDGRAPE-2 and MDGRAPE-3: A Comparative Study, Daffodil International University Journal of Science & Technology, 4, 23-27 [pdf]
  9. T. K. Sheel (2009), A New Technique for the Calculation of Colliding Vortex Rings, International Journal of Engineering, 22, 205-212 [pdf].
  10. T. K. Sheel, R. Yokota, K. Yasuoka, S. Obi (2008), The study of colliding vortex rings using a special-purpose computer and FMM, Transaction of the Japan Society for Computational Engineering and Science, 2008, 20080003 [pdf].
  11. R. Yokota, T. K. Sheel, K. Yasuoka, S. Obi (2007), Calculation of isotropic turbulence using pure lagrangian vortex method, Journal of Computational Physics, 226, 1589-1606 [pdf]
  12. T. K. Sheel, K. Yasuoka, S. Obi (2007), Fast vortex method calculation using a special-purpose computer, Computers and Fluids, 36, 1319-1326 [pdf]
  13. T. K. Sheel, A. Halder (2002), Application of Pade Approximation to Problems of Fluid Dynamics, SUST Studies, 4, 26-33 [pdf]

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Conference proceedings
  1. T. K. Sheel (2017). Optimization Techniques of FMM for Vortex Method Calculations. The IV AMMCS International Conference (AMMCS 2017) , Aug. 21-25, 2017, Waterloo, Canada. [abstract]
  2. T. K. Sheel (2016). High Performance Computing Techniques for Multidisciplinary Problems. 10th International Conference on Scientific Computing and Applications (ICSA 2016) , June 6-10, 2016, Toronto, Canada. [abstract]
  3. T. K. Sheel, G. Nasif, R. Balachandar, R. Barron (2015). FLow alteration around a wall-mounted bluff body using a front splitter plate. AMMS-CAIMS-CFDSC-2015 , June 7-10, 2015, Waterloo, Canada. [abstract]
  4. T. K. Sheel, G. Nasif, R. Balachandar, R. Barron (2014). Breakdown of the horseshoe vortex around a wall-mounted bluff body using a front splitter plate.CFDSC-CSME-2014 , June 1-4 2014, Toronto, Canada. [abstract]
  5. T. K. Sheel (2011). An Efficient and Sophisticated Parallel Mesh Adaptation Algorithm. Proceedings of 17th International Mathematics Conference of Bangladesh Mathematical Sciety, Savar, Dhaka, Bangladesh, December 22 - 24, CD-ROM. [abstract]
  6. T. K. Sheel (2009). Optimization and accuracy of fast multipole method for vortex method calculation. Proceedings of 16th International Mathematics Conference of Bangladesh Mathematical Sciety, BUET, Dhaka, Bangladesh, December 17-19, CD-ROM. [abstract]
  7. T. K. Sheel (2008). High performance computing techniques for fluid flow simulation. CD-ROM, 9th APRU Doctoral Students Conference, Far Eastern National University, Vladevostok, Russia, July 14-18. [abstract]
  8. T. K. Sheel, R. Yokota, K. Yasuoka, S. Obi (2008). Calculation of the decay of colliding turbulent vortex rings. Proceedings of the 4th International Conference on Vortex Flows & Vortex Models (ICVFM2008), Daejeon, South Korea, April 21-23, pp. 212-219. [abstract]
  9. T. K. Sheel (2007). A fast method for the calculation of computational fluid dynamics problems. CD-ROM, 8th APRU Doctoral Students Conference, Keio University, Japan, July 30-August 3. [abstract]
  10. T. K. Sheel, K. Yasuoka, S. Obi (2007). Acceleration of Vortex Method Calculation using a special-purpose computer and FMM. CD-ROM, International Conference on Computational Methods (ICCM2007), Hiroshima, Japan, April 4-6. [ abstract]
  11. T. K. Sheel, K. Yasuoka, S. Obi (2005). Acceleration of Vortex Method Calculation using MDGRAPE-2: A special-purpose computer. Proceedings of the 3rd International Conference on Vortex Flows & Vortex Models (ICVFM2005), Yokohama, Japan, pp. 137-142. [abstract]
  12. T. K. Sheel, A. Halder (2002). Application of Pade approximants and u-transform on Fluid Dynamics. Proceedings of International Conference on Applied Mathematics & Mathematical Physics (ICAMMP2002), SUST, Sylhet, Bangladesh, pp. 173-178. [abstract]
  13. T. K. Sheel, A. Halder (2000). Rational approximants using the Pade approximants and the Levin u-transform : a comparative study. Proceedings of International Conference on Applied Mathematics & Mathematical Physics(ICAMMP2000), SUST, Sylhet, Bangladesh, pp. 13-20. [abstract]
  14. T. K. Sheel, A. Halder (1998). On acceleration of convergence of series and its application to fluid dynamics. Proceedings of Mini-Workshop on Applied Mathematics, SUST, Sylhet, Bangladesh, pp. 139-146. [abstract]

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Conference presentations
  1. T. K. Sheel (2017). Optimization Techniques of FMM for Vortex Method Calculations. The IV AMMCS International Conference (AMMCS 2017) , Aug. 21-25, 2017, Waterloo, Canada. [abstract]
  2. T. K. Sheel. High Performance Computing Techniques for Multidisciplinary Problem. 10th International Conference on Scientific Computing and Applications (ICSCA 2016), June 6 - 10, 2016, Fields Institute, Toronto, Canada. [abstract]
  3. T. K. Sheel G. Nasif, R. Balachandar, and R.M. Barron. Flow alteration around a wall-mounted bluff body using a front splitter plate. AMMS-CAIMS-CFDSC-2015, June 7-10, 2015, Waterloo, Canada. [abstract]
  4. T. K. Sheel G. Nasif, R. Balachandar, and R.M. Barron. Breakdown of the horseshoe vortex around a wall-mounted bluff body using a front splitter plate, CFDSC-CSME-2014, June 1-4, 2014, Toronto, Canada. [abstract]
  5. J.-F. Remacle, G. Compère, E. Marchandise, T. K. Sheel. Anisotropic mesh adaptivity for FSI applications with large deformations. IV European Conference on Computational Mechanics (ECCM 2010), Paris, France, May 16 - 21, 2010. [abstract]
  6. T. K. Sheel. HPCA for Multidisciplinary Applications of Complex Fluid Flow. 10th US National Congress on Computational Mechanics (USNCCM-10), Columbus, Ohio, USA, July 16 - 19, 2009. [abstract]
  7. T. K. Sheel. High performance computing techniques for vortex method calculations. IUTAM Symposium, 150 Years of Vortex Dynamics, Copenhagen, Denmark, October 12-16, 2008. [abstract]
  8. J. Ghosh, T. K. Sheel, A. Halder. On stability of numerical solution of a system of differential equation: multisteps adaptive approach. 11th International Mathematics Conference of Bangladesh Mathematical Sciety, Chittagong, Bangladesh, December 11-13, 1999. [abstract]

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Invited talk
  1. T. K. Sheel (2009). Fast vortex methods for fluid flow simulations, Courant Institute of Mathematical Sciences, New York University , New York, USA.
  2. T. K. Sheel (2008). Development of fast vortex methods for fluid flow simulations using special-purpose computers, Faculty of Mathematics, Kyushu University, Fukuoka, Japan.


PhD thesis
  1. T. K. Sheel (2008). Development of a Fast Vortex Method for Fluid Flow Simulations using Special-Purpose Computers. Advisor Prof. Shinnosuke Obi, Keio University, Japan. [pdf] [Presentation]


Master thesis
  1. T. K. Sheel (1997). Rational Approximants Generated by Pade Approximation and u-transform. Advisor Prof. Amal Krishna Halder, University of Dhaka, Bangladesh. [pdf]

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