Improving the performance of refrigeration systems by using nanofluids: A comprehensive review A Bhattad, J Sarkar, P Ghosh Renewable and Sustainable Energy Reviews 82, 3656-3669, 2018 | 176 | 2018 |
Discrete phase numerical model and experimental study of hybrid nanofluid heat transfer and pressure drop in plate heat exchanger A Bhattad, J Sarkar, P Ghosh International Communications in Heat and Mass Transfer 91, 262-273, 2018 | 155 | 2018 |
Experimentation on effect of particle ratio on hydrothermal performance of plate heat exchanger using hybrid nanofluid A Bhattad, J Sarkar, P Ghosh Applied Thermal Engineering 162, 114309, 2019 | 102 | 2019 |
Energetic and exergetic performances of plate heat exchanger using brine-based hybrid nanofluid for milk chilling application A Bhattad, J Sarkar, P Ghosh Heat Transfer Engineering, 2020 | 58 | 2020 |
Hydrothermal performance of different alumina hybrid nanofluid types in plate heat exchanger: experimental study A Bhattad, J Sarkar, P Ghosh Journal of Thermal Analysis and Calorimetry 139 (6), 3777-3787, 2020 | 56 | 2020 |
Effects of nanoparticle shape and size on the thermohydraulic performance of plate evaporator using hybrid nanofluids A Bhattad, J Sarkar Journal of Thermal Analysis and Calorimetry 143 (1), 767-779, 2021 | 49 | 2021 |
Exergetic analysis of plate evaporator using hybrid nanofluids as secondary refrigerant for low-temperature applications A Bhattad, J Sarkar, P Ghosh International Journal of Exergy 24 (1), 1-20, 2017 | 29 | 2017 |
Heat transfer characteristics of plate heat exchanger using hybrid nanofluids: Effect of nanoparticle mixture ratio A Bhattad, J Sarkar, P Ghosh Heat and Mass Transfer 56 (8), 2457-2472, 2020 | 28 | 2020 |
Energy-economic analysis of plate evaporator using brine-based hybrid nanofluids as secondary refrigerant A Bhattad, J Sarkar, P Ghosh International Journal of Air-Conditioning and Refrigeration 26 (01), 1850003, 2018 | 27 | 2018 |
Hydrothermal performance of plate heat exchanger with an alumina–graphene hybrid nanofluid: experimental study A Bhattad, J Sarkar Journal of the Brazilian Society of Mechanical Sciences and Engineering 42 …, 2020 | 24 | 2020 |
Experimental investigation of Al2O3–MgO hot hybrid nanofluid in a plate heat exchanger A Bhattad Heat Transfer 49 (4), 2344-2354, 2020 | 23 | 2020 |
Review on mono and hybrid nanofluids: preparation, properties, investigation, and applications in IC engines and heat transfer A Bhattad, V Atgur, BN Rao, NR Banapurmath, TM Yunus Khan, ... Energies 16 (7), 3189, 2023 | 22 | 2023 |
Review on viscosity measurement: devices, methods and models A Bhattad Journal of Thermal Analysis and Calorimetry 148 (14), 6527-6543, 2023 | 13 | 2023 |
Exergy analysis of plate heat exchanger with graphene alumina hybrid nanofluid: Experimentation A Bhattad International journal of exergy, 2020 | 9 | 2020 |
Studies on evaluation of the thermal conductivity of alumina titania hybrid suspension nanofluids for enhanced heat transfer applications A Bhattad, BN Rao, V Atgur, NR Banapurmath, AM Sajjan, C Vadlamudi, ... ACS omega 8 (27), 24176-24184, 2023 | 8 | 2023 |
Thermal performance evaluation of plate-type heat exchanger with alumina–titania hybrid suspensions A Bhattad, BN Rao, V Atgur, I Veza, MFMA Zamri, IMR Fattah Fluids 8 (4), 120, 2023 | 8 | 2023 |
Thermal analysis of shell and tube type heat exchanger using hybrid nanofluid A Bhattad, SS Babu Trends in Sciences 19 (5), 2890-2890, 2022 | 4 | 2022 |
Performance analysis of diesel engine using Madhuca longifolia blended biodiesel with nano-additive for variable parameters A Bhattad, KS Patel International Journal of Ambient Energy 44 (1), 1214-1231, 2023 | 3 | 2023 |
Exergic performance of plate evaporator coated with nanoparticles for fish preservation A Bhattad Australian Journal of Mechanical Engineering, 1-10, 2023 | 3 | 2023 |
Better performance criteria for plate heat exchanger with hybrid nanofluid: flow rate or concentration A Bhattad Journal of Thermal Analysis and Calorimetry 148 (24), 14295-14304, 2023 | 2 | 2023 |