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Dinesh Kumar Chandraker
Dinesh Kumar Chandraker
Verified email at barc.gov.in
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Cited by
Year
Experimental investigation on dominant waves in upward air-water two-phase flow in churn and annular regime
A Dasgupta, DK Chandraker, S Kshirasagar, BR Reddy, R Rajalakshmi, ...
Experimental Thermal and Fluid Science 81, 147-163, 2017
722017
Phenomenological modeling of critical heat flux: The GRAMP code and its validation
M Ahmad, DK Chandraker, GF Hewitt, PK Vijayan, SP Walker
Nuclear engineering and design 254, 280-290, 2013
292013
A new methodology for estimation of initial entrainment fraction in annular flow for improved dryout prediction
A Dasgupta, DK Chandraker, AK Vishnoi, PK Vijayan
Annals of Nuclear Energy 75, 323-330, 2015
282015
Understanding dry-out mechanism in rod bundles of boiling water reactor
LD Silvi, DK Chandraker, S Ghosh, AK Das
International Journal of Heat and Mass Transfer 177, 121534, 2021
152021
Experimental and analytical investigations on core flow distribution and pressure distribution in the outlet header of a PHWR
DK Chandraker, NK Maheshwari, D Saha, VV Raj
Experimental thermal and fluid science 27 (1), 11-24, 2002
152002
Effect of spacer on the dryout of BWR fuel rod assemblies
DK Chandraker, AK Nayak, PK Vijayan
Nuclear Engineering and Design 294, 262-273, 2015
142015
Phenomenological prediction of CHF under boiling water reactor (BWR) conditions
DK Chandraker, PK Vijayan, RK Sinha, M Aritomi
Progress in Nuclear Energy 53 (7), 874-880, 2011
142011
Numerical analysis of pre-dryout sequences through the route of interfacial evolution in annular gas-liquid two-phase flow with phase change
LD Silvi, A Saha, DK Chandraker, S Ghosh, AK Das
Chemical Engineering Science 212, 115356, 2020
132020
Investigation on the characteristic of CHF in various flow pattern regimes based on look-up table data
DK Chandraker, PK Vijayan, D Saha, RK Sinha
Nuclear engineering and design 238 (1), 170-177, 2008
122008
SCADOP: Phenomenological modeling of dryout in nuclear fuel rod bundles
A Dasgupta, DK Chandraker, PK Vijayan
Nuclear Engineering and Design 293, 127-137, 2015
112015
Experimental investigation of effect of spacer on single phase turbulent mixing rate on simulated subchannel of Advanced Heavy Water Reactor
SK Verma, SL Sinha, DK Chandraker
Annals of Nuclear Energy 110, 186-195, 2017
102017
Quenching of a heated rod: Physical phenomena, heat transfer, and effect of nanofluids
A Dasgupta, AS Chinchole, PP Kulkarni, DK Chandraker, AK Nayak
Journal of Heat Transfer 138 (12), 122401, 2016
102016
Prediction of vapor film thickness below a Leidenfrost drop
A Dasgupta, DK Chandraker, AK Nayak, PK Vijayan
Journal of Heat Transfer 137 (12), 124501, 2015
102015
Exploring the use of alumina nanofluid as emergency coolant for nuclear fuel bundle
AS Chinchole, A Dasgupta, PP Kulkarni, DK Chandraker, AK Nayak
Journal of Thermal Science and Engineering Applications 11 (2), 021007, 2019
82019
Reactor physics and thermal hydraulic Analysis of annular fuel rod cluster for Advanced Heavy Water Reactor
AP Deokule, AK Vishnoi, K Umasankari, DK Chandraker, PK Vijayan
Energy Procedia 71, 52-61, 2015
82015
Design of 33 pin annular fuel rod cluster for Advanced Heavy Water Reactor
AP Deokule, AK Vishnoi, K Umasankari, DK Chandraker, PK Vijayan, ...
Nuclear Engineering and Design 256, 94-101, 2013
72013
A mechanistic model based on film depletion for prediction of dryout power in tubular geometry
A Dasgupta, DK Chandraker, PK Vijayan, D Saha
72009
Experimental investigation on critical heat flux and assessment of look-up table approach
DK Chandraker, AK Vishnoi, PK Vijayan, D Saha
19th National & 8th ISHMT-ASME, Heat and Mass Transfer Conference, Hyderabad …, 2008
72008
Demonstration of adequacy of passive in-bundle ECC injection of AHWR
A Dasgupta, DK Chandraker, AK Nayak, PP Kulkarni, A Chinchole, ...
Annals of Nuclear Energy 102, 11-22, 2017
62017
A Comprehensive Review of the Spacer Effect on Performance of Nuclear Fuel Bundle using Computational Fluid Dynamics Methodology
SK Verma, SL Sinha, DK Chandraker
Materials Today: Proceedings 4 (9), 10030-10034, 2017
62017
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