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Akhilesh Arora
Akhilesh Arora
Professor (Mechanical Engineering), DTU
Verified email at dce.ac.in
Title
Cited by
Cited by
Year
Energy and exergy analysis of single effect and series flow double effect water–lithium bromide absorption refrigeration systems
SC Kaushik, A Arora
International journal of Refrigeration 32 (6), 1247-1258, 2009
3292009
Theoretical analysis of a vapour compression refrigeration system with R502, R404A and R507A
A Arora, SC Kaushik
International journal of refrigeration 31 (6), 998-1005, 2008
2802008
Theoretical analysis of LiBr/H2O absorption refrigeration systems
A Arora, SC Kaushik
International Journal of Energy Research 33 (15), 1321-1340, 2009
1392009
Thermodynamic and thermoeconomic analyses of two stage hybrid absorption compression refrigeration system
M Dixit, A Arora, SC Kaushik
Applied Thermal Engineering 113, 120-131, 2017
532017
Exergy analysis of a vapour compression refrigeration system with R-22, R-407C and R-410A
A Arora, BB Arora, BD Pathak, HL Sachdev
International journal of Exergy 4 (4), 441, 2007
452007
Thermodynamic analysis of R422 series refrigerants as alternative refrigerants to HCFC22 in a vapour compression refrigeration system
A Arora, HL Sachdev
International journal of energy research 33 (8), 753-765, 2009
352009
Energy and exergy analysis of a combined transcritical CO2 compression refrigeration and single effect H2O-LiBr vapour absorption system
A Arora, NK Singh, S Monga, O Kumar
International Journal of Exergy 9 (4), 453-471, 2011
292011
Energy and exergy analysis of solar driven recuperated organic Rankine cycle using glazed reverse absorber conventional compound parabolic concentrator (GRACCPC) system
D Tiwari, AF Sherwani, D Atheaya, A Arora
Solar Energy 155, 1431-1442, 2017
282017
Energy and exergy analyses of a two‐stage vapour compression refrigeration system
A Arora, SC Kaushik
International Journal of Energy Research 34 (10), 907-923, 2010
252010
Energy and exergy analysis of vapor compression–triple effect absorption cascade refrigeration system
S Agarwal, A Arora, BB Arora
Engineering Science and Technology, an International Journal 23 (3), 625-641, 2020
212020
Computation of optimum parameters of a half effect water lithium bromide vapour absorption refrigeration system
A Arora, M Dixit, SC Kaushik
Journal of Thermal Engineering 2 (2), 683-692, 2016
212016
Thermodynamic analysis of GAX and hybrid GAX aqua-ammonia vapor absorption refrigeration systems
SCK Manoj Dixit, Akhilesh Arora
International Journal of Hydrogen Energy 40 (46), 16256-16265, 2015
202015
Energy and Exergy Analysis of a Double Effect Parallel Flow LiBr/H2O Absorption Refrigeration System
AA Manoj Dixit, S.C. Kaushik
Journal of Thermal Engineering 2 (Issue: 1, (JAN 2016),), 541-549, 2016
192016
Energy, exergy, environment and economic analyses and optimization of two-stage absorption–compression combined refrigeration system
M Dixit, A Arora, SC Kaushik
Clean Technologies and Environmental Policy 19 (9), 2215-2229, 2017
172017
Energy and exergy analysis of absorption-compression cascade refrigeration system
M Dixit, SC Kaushik, A Arora
Journal of Thermal Engineering 3 (5), 1466-1477, 2017
172017
Energy and exergy analysis of a waste heat driven cycle for triple effect refrigeration
M Dixit, A Arora, SC Kaushik
Journal of Thermal Engineering 2 (5), 954-961, 2016
132016
Grey relational analysis coupled with principal component analysis for optimization of the cyclic parameters of a solar-driven organic Rankine cycle
D Tiwari, AF Sherwani, M Asjad, A Arora
Grey Systems: Theory and Application, 2017
122017
Enviro-energy-exergo-economic analysis of ETC augmented double slope solar still with ‘N’parallel tubes under forced mode: environmental and economic feasibility
A Dubey, S Kumar, A Arora
Journal of Cleaner Production 279, 123859, 2021
102021
Exergy analysis of dedicated mechanically subcooled vapour compression refrigeration cycle using HFC-R134a, HFO-R1234ze and R1234yf
S Agarwal, A Arora, BB Arora
Advances in Energy and Built Environment, 23-42, 2020
102020
Energy and exergy analyses of compression, absorption and combined cycle cooling systems
A Arora
IIT Delhi, 2010
92010
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