Dr. Kiran Devade
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Dr. Kiran Devade

Associate Professor
Dr. D.Y. Patil College of Engineering, India


Highest Degree
Ph.D. in Mechanical from Dr. D. Y. Patil University, India

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Area of Interest:

Engineering
100%
Heat Transfer
62%
Computational Fluid Dynamics
90%
Energy
75%
Thermal Engineering
55%

Research Publications in Numbers

Books
0
Chapters
0
Articles
26
Abstracts
13

Selected Publications

  1. Jadhav, S.S. and K.D. Devade, 2018. Experimental investigation of multi nozzle vortex tube. Int. J. Theor. Applied Res. Mech. Eng., 7: 16-21.
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  2. Devade, K.D. and A.T. Pise, 2018. Issues and prospects of energy separation in vortex tubes: Review. Heat Transfer Asian Res., 47: 461-491.
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  3. Devade, K. and A. Pise, 2018. Parametric analysis of thermal performance of ranque-hilsch vortex tube. J. Ther. Eng., 4: 2333-2354.
  4. Devade, K.D., A.T. Pise and A.R. Urade, 2017. Numerical analysis of flow behavior in vortex tube for different gases. Mech. Eng. Res., 7: 18-39.
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  5. Devade, K.D. and A.T. Pise, 2017. Exergy analysis of a counter flow Ranque–Hilsch vortex tube for different cold orifice diameters, L/D ratios and exit valve angles. Heat Mass Transfer, 53: 2017-2029.
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  6. Devade, K.D. and A.T. Pise, 2017. Effect of mach number, valve angle and length to diameter ratio on thermal performance in flow of air through ranque hilsch vortex tube. Heat Mass Transfer, 53: 161-168.
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  7. Devade, K.D. and A. Pise, 2017. Parametric review of ranque-hilsch vortex tube. Columbia Int. Publishing Am. J. Heat Mass Transfer, 4: 115-145.
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  8. Kathari, R.V., K.D. Devade and V.M. Kale, 2016. An experimental study on the effect of parametric variation on cold mass fraction of diverging vortex tube. Int. J. Adv. Res. Comput. Sci. Manage., 2: 78-82.
  9. Devade, K.D. and A.T. Pise, 2016. Optimization of thermal performance of ranque hilsch vortex tube: MADM techniques. IOP Conf. Ser. Earth Environ. Sci., .
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  10. Waghmode, S.B. and K.V. Devade, 2015. An experimental study on the effect of area ratio, divergence angle and mach number on thermal performance of vortex tube. Int. J. Eng. Tech. Res., 4: 693-697.
  11. Wadekar, P.M., R.D. Bajaj and K. Devade, 2015. Novateur publications international journal of innovations in engineering research and technology [ijiert] effect of high molecular weight surface active agent on heat transfer in pool boiling. Int. J. Innov. Eng. Res. Technol., 2: 1-11.
  12. Wadekar, P.M., R.D. Bajaj and K. Devade, 2015. Enhancement of pool boiling heat transfer in water with sodium dodecyl sulphate surfactant. Int. J. Sci. Adv. Res. Technol., 1: 197-204.
  13. Patil, S.D. and K.D. Devade, 2015. Review on thermoelectric refrigeration: Applications and technology. Int. J. Mod. Trend Eng. Res., 2: 119-129.
  14. Patil, S.D. and D.K. Devade, 2015. Increasing energy efficiency of domestic refrigerator using single thermoelectric module & water cooling of condenser. Int. J. Latest Trend Eng. Technol., 5: 254-262.
  15. Devade, P.K. and S. Patil, 2015. Novateur publications international journal of innovations in engineering research and technology [IJIERT] energy savings in domestic refrigerator using two thermoelectric modules& water cooling of condenser. Int. J. Innov. Eng. Res. Technol., 2: 1-9.
  16. Devade, K.D., S.Y.S.M. Murthy and A.T. Pise, 2015. An experimental study on the effect of area ratio and mach number on thermal performance of diverging vortex tube. Int. J. Innov. Res. Adv. Eng., 2: 114-120.
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  17. Babar, S.S. and K.D. Devade, 2015. Heat transfer enhancement in double tube heat exchanger with multiple tangential entries along the length. Int. J. Sci. Adv. Res. Technol., 1: 22-26.
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  18. Devade, K. and A. Pise, 2014. Effect of cold orifice diameter and geometry of hot end valves on performance of converging type Ranque Hilsch vortex tube. Energy Procedia, 54: 642-653.
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  19. Devade, K.D. and A.T. Pise, 2012. Investigation of refrigeration effect using short divergent vortex tube. Int. J. Earth Sci. Eng., 5: 378-384.
  20. Devade, K. and A. Patil, 2011. Effect of variation of jet impingement distances on cooling of horizontal plate with square fins. Int. J. Mach. Eng., 1: 108-113.