Amaresh Dalal
Indian Institute of Technology Guwahati, Indian Institute of Technology Kanpur, Purdue University, Jalpaiguri Government Engineering College
About
Amaresh Dalal is currently a Professor in the Department of Mechanical Engineering at Indian Institute of Technology Guwahati. He received his Ph.D. degree from Indian Institute of Technology Kanpur in 2009. He was also Post-doctoral Research Associate at Purdue University from Sep 2008 - Dec 2009. His research interests are Computational Fluid Dynamics and Heat Transfer, Finite Volume Methods and Unstructured Grid Techniques, Natural and Mixed Convection Flows, Electrochemical Energy Conversion and Storage.
Employment
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Indian Institute of Technology Guwahati Professor2010 - Present
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Indian Institute of Technology Kanpur Senior Project Engineer2010 - 2010
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Purdue University Post-Doctoral Research Associate2008 - 2009
Education
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Indian Institute of Technology Kanpur Ph.D.2003 - 2008
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Indian Institute of Technology Guwahati M.Tech.2001 - 2003
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Jalpaiguri Government Engineering College B.E.1996 - 2000
Projects & Funding
Projects & funding information is unavailable.
Publications (102)
- Effect of shear-thinning fluid and position of curved rectangular winglet vortex generators on the performance of finned-tube heat exchanger Save
- Coalescence dynamics of drops in the presence of electric field Save
- Non-coalescence phenomenon in leaky-dielectric emulsions: Formation of drop chains Save
- Performance and sustainability studies on solar tunnel and cabinet dryer for mango and jackfruit drying Save
- Computational investigation of heat transfer and frictional loss of fin-tube heat exchanger with delta winglet and shear-thinning fluid Save
- A computational model for studying drug release by drug carrier flowing through constricted channel Save
- Deformation dynamics of viscoelastic double emulsion compound drop in Newtonian and viscoelastic shear flows Save
- Impact of viscoelastic drop on a deep viscoelastic liquid pool Save
- A computational model for complete separation of circulating tumor cells inside grooved microchannel under the effect of dielectrophoretic forces Save
- Bridge Radius Evolution during Coalescence of Ferrofluid Droplets Suspended in a Nonmagnetic Outer Fluid Save