BITS Pilani

  • Page last updated on Saturday, January 01, 2022

Publications

banner
Publications

Publications

1) Goel V, Kumar R, Bhattacharyya S , Tyagi VV, Abusorrah AM. A comprehensive parametric investigation of hemispherical cavities on thermal performance and flow - dynamics in the triangular - duct solar - assisted air - heater. Renew able Energy. 2021; Vol. 173, pp. 896 - 912. Impact Factor: 8.001 , Quartile: Q1 .
 
2) Aghaei A, Bhattacharyya S , Dezfulizadeh A, Goldanlou AS, Rostami S, Sharifpur M. Heat transfer and fluid flow analysis using nanofluids in diamond - shaped cavitie s with novel obstacles. Engineering Applications of Computational Fluid Mechanics. 2021;15:1034 56. https://doi.org/10.1080/19942060.2021.1930170. Impact Factor: 8. 391 , Quartile: Q1 .
 
3) Souayeh B, Bhattacharyya S , Hdhiri N, Hammami F. Numerical investigation on heat transfer augmentation in a triangular solar air heater tube fitted with angular - cut varied - length twisted tape. The European Physical Journal Plus . 2021; 136 (6), pp. 1 - 32 . Impact Factor: 3.911 , Quartile: Q1 .
 
4) Kumar S, Kumar R, Goel V, Bhattacharyya S, Issakhov A. Exergetic performance estimation for roughened triangular duct used in solar air heaters. Journal of Thermal Analysis and Calorimetry . 2021; Online Published. pp. 1 - 12. https://doi.org/10.1007/s10973 - 021 - 10852 - w. Impact Factor: 4.626 , Quart ile: Q1 .
 
5) Kumar R, Goel V, Bhattacharyya S , Tyagi V V., Abusorrah AM. Experimental investigation for heat and flow characteristics of solar air heater having symmetrical gaps in multiple - arc rib pattern as roughness elements. Experimental Heat Transfer. 202 1; Online Published. pp. 1 - 18. https://doi.org/10.1080/08916152.2021.1905752. Impact Factor: 4.058 , Quartile: Q1 .
 
6) Afzal A, Saleel CA, Prashantha K, Bhattacharyya S , Sadhikh M. Parallel finite volume method - based fluid flow computations using OpenMP and CUDA applying different schemes. J Therm Anal Calorim. 2021; Online Published. pp. 1 - 19. https://doi.org/10.1007/s10973 - 021 - 10637 - 1 . Impact Factor: 4.626 , Quartile: Q1 .
 
7) Bhattacharyya S, Vishwakarma DK, Goel V, Chamoli S, Issakhov A, Meyer JP. Thermodynami cs and heat transfer study of a circular tube embedded with novel perforated angular - cut alternate segmental baffles. J Therm Anal Calorim. 2021;Online Published. pp. 1 - 23. https://doi.org/10.1007/s10973 - 021 - 10718 - 1. Impact Factor: 4.626 , Quartile: Q1 .
 
8) Bhattacharyya S , Benim AC, Bennacer R, Dey K. Influence of Broken Twisted Tape on Heat Transfer Performance in Novel Axial Corrugated Tubes: Experimental a nd Numerical Study. Heat Transfer Eng ineering . 2021; Online Publisshed. pp. 1 - 25. https://doi.org/10.1080/01457632.2021.1875168. Impact Factor: 2.172 , Quartile: Q2 .
 
9) Das SG, Bhattacharyya S , Chattopadhyay H, Benim AC. Transport Phenomenon of Simultaneously Developing Flow and Heat Transfer in Twisted Sinusoidal Wavy Microchannel under Pu lsating Inlet Flow Condition. Heat Transfer Engineering. 2021; Online Publisshed. pp. 1 - 14. https://doi.org/10.1080/01457632.2021.1875166. Impact Factor: 2.172 , Quartile: Q2 .
 
10) Souayeh B, Bhattacharyya S , Hdhiri N, Alam MW. Heat And Fluid Flow Analysis and A NN - Based Prediction of a Novel Spring Corrugated Tape . Sustain ability . 2021;13 , pp.3023 . Impact Factor: 3.251 , Quartile: Q2 .
 
11) Bhattacharyya S , Sarkar D, Roy R, Chakraborty S, Goel V, Almatrafi E. Application of New Artificial Neural Network to Predict Heat Transfer and Thermal Performance of a Solar Air - Heater Tube . Sustainability. 2021;13, pp.7477. Impact Factor: 3.251 , Quartile: Q2 .
 
12) Bhattacharyya S , Vishwakarma DK, Chakraborty S, Roy R, Issakhov A, Sharifpur M. Turbulent Flow Heat Transfer through a Circul ar Tube with Novel Hybrid Grooved Tape Inserts: Thermohydraulic Analysis and Prediction by Applying Machine Learning Model. Sustainability. 2021;13, pp.3068. Impact Factor: 3.251 , Quartile: Q2 .
 
13) Paul AR, Bhattacharyya S . Analysis and Design for Hydraulic Pipeline Carrying Capsule Train. J Pipeline Syst Eng Pract. 2021;12, pp. 04021003. Impact Factor: 1.952 , Quartile: Q3 .
 
14) Hasan MI, Khafeef MJ, Mohammadi O, Bhattacharyya S , Issakhov A. Investigation of counterflow microcha nnel heat exchanger with hybrid nanoparticles and pcm suspension as a coolant. Math Probl Eng. 2021;Vol. 2021. pp. 1 - 12. Impact Factor: 1.305 , Quartile: Q3 .
 
15) Ibrahim N.H M, Udayakumar M, Suresh S, Bhattacharyya S , Sharifpur M. Coupling LES with soot model for the study of soot volume fraction in a turbulent diffusion jet flames at various Reynolds number configurations. International Journal of Numerical Methods for Heat & Fluid Flow . 202 1 ; Vol. 31 No. 7, pp. 2246 - 2278 . https://doi.org/10.1108/HFF - 07 - 2020 - 0458 . Impact Factor: 4.17 , Quartile: Q1 .
 
16) Bhattacharyya S, Sarkar D, Mahabaleshwar US, Soni MK, Mohanraj M. Experimental study of thermohydraulic characteristics and irreversibility analysis of novel axial corrugated tube with spring tape inserts. The European Physical Journal Applied Physics . 2020. Vol. 92 (3), pp. 30901 . Impact Factor: 1.00 , Quartile: Q4.
 
17) Bhattacharyya S, Das SG, Chattopadhyay H. Thermohydraulic characteristics and entropy analysis of a novel clockwise and anti - clockwise twisted sinuso idal wavy micro - channel under pulsating inlet condition. The European Physical Journal Applied Physics . 2020. Vol. 92 (2 ), pp.30903 . Impact Factor: 1.00 , Quartile: Q4 .
 
18) Murmu SC, Bhattacharyya S, Chattopadhyay H, Biswas R. Analysis of heat transfer around bluff bodies with variable inlet turbulent intensity: A numerical simulation. International Communications in Heat and Mass Transfer . 2020; Vol. 117, pp. 104779. https://doi.org/10.1016/j.icheat masstransfer.2020.104779 . Impact Factor: 5.683 , Quartile: Q1 .
 
19) Everts M, Bhattacharyya S, Bashir AI, Meyer JP. Heat transfer characteristics of assisting and opposing laminar flow through a vertical circular tube at low Reynolds numbers. Appl ied Therm al Eng ineering. 2020. Vol. 179, pp. 115696. https://doi.org/10.1016/j.applthermaleng.2020.115696 . Impact Factor: 5.295 , Quartile: Q1 .
 
20) Bhattacharyya S, Pathak M, Sharifpur M, Chamoli S, Ewim DRE. Heat Transfer a nd Exergy Analysis o f Solar Air Heater Tube With Helical Corrugation a nd Perforated Circular Disc Inserts . J Therm Anal Calorim . 2020; Online Published. pp. 1 - 16. https://doi.org/10.1007/s10973 - 020 - 10215 - x . Impact Factor: 4.626 , Quartile: Q1 .
 
21) Soni MK, Tamar N, Bhattacharyya S . Numerical simulation and parametric analysis of latent heat thermal energy storage system. J Therm Anal Calorim . 2020. Vol.141, pp. 2511 26. https://doi.org/10.1007/s10973 - 020 - 10175 - 2 . Impact Factor: 4.626 , Quartile: Q1 .
 
22) Bhattacharyya S, B HR, Paul AR. T he effect of circular hole spring tape on the turbulent heat transfer and entropy analysis in a heat exchanger tube: an experimental study. Exp erimental Heat Transf er . 2020; pp. 1 20. doi.org/10.1080/08916152.2020.1787560 . Impact Factor: 4.058 , Quartile: Q1 .
 
23) Bhattacharyya S, Bashir AI, Dey K, Sarkar R. Effect of novel short - length wavy - tape turbulators on fluid flow and heat transfer: experimental study. Experimental Heat Transfer. 2020. Vol. 33, pp. 335 54. https://doi.org/10.1080/08916152.201 9.1639847 . Impact Factor: 4.058 , Quartile: Q1 .
 
24) Singh SK, Bhattacharyya S, Paul AR, Sharifpur M, Meyer JP. Augmentation of heat transfer in a microtube and a wavy microchannel using hybrid nanofluid: A numerical investigation. Math Methods Appl Sci. 2020. Online Published. https://doi.org/10.1002/mma.6849 . Impact Factor: 2.321 , Quartile: Q1 .
 
25) Bhattacharyya S, Souayeh B, Banerjee A, Sarkar R, Rahimi - Gorji M, Minh Nguyen H. Numerical analysis of micro - pin - fin heat sink cooling in the mainboard chip of a CPU. T he European Physical Journal Plus . 2020. Vol. 135, pp. 1 10. https://doi.org/10.1140/epjp/s13360 - 020 - 00359 - y . Impact Factor: 3.911 , Quartile: Q1 .
 
26) Alam MW, Bhattacharyya S, Souayeh B, Dey K, Hammami F, Rahimi - Gorji M, et al. CPU heat sink cooling by triangu lar shape micro - pin - fin: Numerical study. Int Commun Heat Mass Transf . 2020. Vol. 112, pp. 104455. https://doi.org/10.1016/j.icheatmasstransfer.2019.104455 . Impact Factor: 5.683 , Quartile: Q1 .
 
27) Bhattacharyya S. Fluid Flow and Heat Transfer in a Heat Exchanger Channel with Short - Length Twisted Tape Turbulator Inserts. Iran J Sci Technol - Trans Mech Eng.; 2020; Vol. 44, pp. 217 27. Impact Factor: 1.596 , Quartile: Q3 .
 
28) Bhattacharyya S, Chattopadhyay H, Biswas R, Ew im DRE, Huan Z. Influence of Inlet Turbulence Intensity on Transport Phenomenon of Modified Diamond Cylinder: A Numerical Study. Arab J Sci Eng . 2020. Vol. 45(2), pp. 1051 8. https://doi.org/10.1007/s13369 - 019 - 04231 - 9 . Impact Factor: 2.334 , Quartile: Q3 .
 
29) Bhattacharyya S, Benim AC, Pathak M, Chamoli S, Gupta A. Thermohydraulic characteristics of inline and staggered angular cut baffle inserts in the turbulent flow regime. J Therm Anal Calorim . 202 0. Vol. 140, pp. 1519 36. https://doi.org/10.1007/s10973 - 019 - 09094 - 8 . Impact Factor: 4.626 , Quartile: Q1 .
 
30) Bhattacharyya S. The effects of short length and full length swirl generators on heat transfer and flow fields in a solar air heater tube. J Therm Anal Calorim . 2020. Vol. 140, pp. 1355 69. https://doi.org/10.1007/s10973 - 019 - 08764 - x . Impact Factor: 4.626 , Quartile: Q1 .
 
31) Biswas R, Das MC, Bhattacharyya S, Kuar AS, Mitra S. Selection of Nd:YAG laser beam micro - drilling parameters using multi - criteria decision ma king methods. Opt Laser Technol. 2 019. Vol. 119, pp. 105596. https://doi.org/10.1016/j.optlastec.2019.105596 . Impact Factor: 3.867 , Quartile: Q1 .
 
32) Bhattacharyya S, Benim AC, Chattopadhyay H, Banerjee A. Experimental investigation of heat transfer performance of corrugated tube with spring t ape inserts. Exp Heat Transf . 2019. Vol. 32, pp. 411 25. https://doi.org/10.1080/08916152.2018.1531955 . Impact Factor: 4.058 , Quartile: Q1 .
 
33) Bhattacharyya S, Benim AC, Chattopadhyay H, Banerjee A. Experimental and numerical analysis of forced convection in a twisted tube. Therm Sci. 2019. Vol. 23 (4), pp. 1043 - 1052 . Impact Factor: 1.625 , Quartile: Q3 .
 
34) Bhattacharyya S, Chattopadhyay H, Guin A, Benim AC. Investigation of Inclined Turbulators for Heat Transfer Enhancement in a Solar Air Heater. Heat Transf Eng . 2019. Vol. 40, pp. 1451 60. https://doi.org/10.1080/01457632.2018.1474593 . Impact Factor: 2.223 , Quartile: Q 2 .
 
35) Bhattacharyya S, Chattopadhyay H, Haldar A. Design of twisted tape turbulator at different entrance angle for heat transfer enhancement in a sol ar heater. Beni - Suef Univ J Basic Appl Sci. 2018. Vol. 7, pp. 118 26. https://doi.org/10.1016/j.bjbas.2017.08.003 . Impact Factor: 0.7 , Quartile: Q 3 .
 
36) Bhattacharyya S, Chattopadhyay H, Benim AC. Computational investigation of heat transfer enhancement by alternating inclined ribs in tubular heat exchang er. Prog Comput Fluid Dyn. 2017. Vol. 17 (6), pp. 390 - 396 . https://doi.org/10.1504/PCFD.2017.088818 . Impact Factor: 1.048 , Quartile: Q 3 .
 
37) Bhattacharyya S, Chattopadhyay H, Benim AC. Simulation of heat transfe r enhancement in tube flow with twisted tape insert. Prog Comput Fluid Dyn. 2017 . Vol. 17 (3), pp. 193 7. https://doi.org/10.1504/PCFD.2017.084356 . Impact Factor: 1.048 , Quartile: Q 3 .
 
38) Bhattacharyya S, Saha S, Saha SK. Laminar flow heat transfer enhancement in a circular tube having integral transverse rib roughness and fitted with centre - cleared twisted - tape. Exp Therm Fluid Sci. 2013. Vol. 44, pp. 727 35. http://dx.doi.org/10.1016/j.expthermflusci.201 2.09.016 . Impact Factor: 3.232 , Quartile: Q 1 .
 
39) Bhattacharyya S, Saha SK. Thermohydraulics of laminar flow through a circular tube having integral helical rib roughness and fitted with centre - cleared twisted - tape. E xp Therm Fluid Sci. 2012. Vol. 42, pp. 154 62. http://dx.doi.org/10.1016/j.expthermflusci.2012.05.002 . Impact Factor: 3.232 , Quartile: Q 1 .
 
40) Saha SK, Bhattacharyya S, Pal PK. Thermohydraulics of laminar flow of viscous oil through a circular tube having integral axial rib roughness and fitted with center - cleared twisted - tape. Exp Therm Fluid Sci. 2012. Vol. 41, pp. 121 - 129 . https://doi.org/10.1016/j.expthermflusci.2012.04.004 . Impact Factor: 3.232 , Quartile: Q 1 .
 
41) Saha S , Bhattacharyya S, Dayanidhi GL. Enhancement of heat transfer of laminar flow of viscous oil through a circular tube having integral axial rib roughness and fitted with helical screw - tape inserts . Heat Transfer Research . 2012. Vol. 43 (3) , pp. 207 - 227. DOI: 10.1615/HeatTransRes.20120042 68 . Impact Factor: 2.443 , Quartile: Q 2 .

Quick Links

    An Institution Deemed to be University estd. vide Sec.3 of the UGC Act,1956 under notification # F.12-23/63.U-2 of Jun 18,1964

    © 2024 Centre for Software Development,SDET Unit, BITS-Pilani, India.

    Designed and developed by fractal | ink design studios