Dr. Amaresh Dalal

+91-361-258-2677

amaresh@iitg.ac.in
amaresh.dalal@gmail.com
Dr. Amaresh Dalal
Current Opening
Seeking motivated PhD students/IPDFs with interests in experimental biomicrofluidics or in coding and parallelizing an in-house multiphysics CFD solver. Interested candidates may email me.

Publications

International Journals

  1. Kumar, D., and Dalal, A., 2026, “Effect of shear-thinning fluid and position of curved rectangular winglet vortex generators on the performance of finned-tube heat exchanger”, International Journal of Thermal Sciences, vol. 229, pp. 111128 (1-13).
  2. Singh, A. P., Das, S. K., and Dalal, A., 2026, “Coalescence dynamics of drops in the presence of electric field”, Sādhanā, vol. 51, pp. 144 (1-10).
  3. Das, S. K., Bangar, S. S., Dalal, A., and Tomar, G., 2026, “Effect of viscoelasticity on electrohydrodynamic drop deformation”, International Journal of Multiphase Flow, vol. 197, pp. 105633 (1-15).
  4. Das, S. K., Dalal, A., and Tomar, G., 2026, “Non-coalescence phenomenon in leaky-dielectric emulsions: Formation of drop chains”, Applied Physics Letters, vol. 128 (1), pp. 012702 (1-6).
  5. Prasad, N. K, Arora, A., Ghosh, S. S., and Dalal, A., 2025, “An advanced microfluidic platform for assessment of DOX uptake by MCF-7 cells inside microenvironment mimicking blood capillary networks”, Sensors and Actuators A Physical, vol. 395, pp. 117067 (1-12).
  6. Parida, A., Muthukumar, P., and Dalal, A., 2025, “Experimental evaluation of hydrogen transfer dynamics in a multistage metal hydride hydrogen compressor”, Journal of Alloys and Compounds, vol. 1045, pp. 184482 (1-15).
  7. Kalita, N., Lakshmi, D.V.N., Muthukumar, P., Dalal, A., and Shaik, S.R., 2025, “Performance and sustainability studies on solar tunnel and cabinet dryer for mango and jackfruit drying”, Solar Energy, vol. 300, pp. 113864 (1-11).
  8. Parida, A., Muthukumar, P., and Dalal, A., 2025, “Experimental investigation of Ti-Cr-Mn-based AB2 type metal hydride alloy for high-pressure hydrogen storage”, Journal of Energy Storage, vol. 134, pp. 118047 (1-16).
  9. Parida, A., Muthukumar, P., and Dalal, A., 2025, “An improved mathematical model and finite-element study of dynamically coupled metal-hydride reactors – Part 1: Model development”, International Journal of Hydrogen Energy, vol. 168, pp. 150692 (1-12).
  10. Parida, A., Muthukumar, P., and Dalal, A., 2025, “An improved mathematical model and finite-element study of dynamically coupled metal-hydride reactors – Part 2: Model application”, International Journal of Hydrogen Energy, vol. 167, pp. 150693 (1-12).
  11. Parida, A., Muthukumar, P., and Dalal, A., 2025, “A review on non-mechanical hydrogen compressors for hydrogen refuelling stations”, International Journal of Hydrogen Energy, vol. 145, pp. 292-321.
  12. Dand, P., and Dalal, A., 2025, “Deformation dynamics of viscoelastic double emulsion compound drop in Newtonian and viscoelastic shear flows”, Physics of Fluids, vol. 37(7), pp. 073124 (1-18).
  13. Srikara, V.S., Prasad, N.K., and Dalal, A., 2025, “A computational model for studying drug release by drug carrier flowing through constricted channel”, Physics of Fluids, vol. 37(7), pp. 073117 (1-18).
  14. Nivedha Sri, S.S., Deb, R., Das, S.K., and Dalal, A., 2025, “Impact of viscoelastic drop on a deep viscoelastic liquid pool”, Physics of Fluids, vol. 37(7), pp. 073113 (1-10).
  15. Neogi, A., Prasad, N.K., Ghosh, S. S., and Dalal, A., 2025, “A Computational Model for Complete Separation of Circulating Tumor Cells Inside Grooved Microchannel Under Effect Of Dielectrophoretic Forces”, Physics of Fluids, vol. 37(5), pp. 051901 (1-11).
  16. Kalita, N., Tavhare, S. D., Muthukumar, P. and Dalal, A., 2025, “Comparative Analysis of Biogas Hybrid Solar Dryer and Open Sun Drying: Phytochemical Properties in Medicinal Herbs”, Thermal Science and Engineering Progress, vol. 62, pp.103574 (1-12).
  17. Parida, A., Kumar, P., Muthukumar, P., Dalal, A., and Kumar, S., 2025, “Experimental Study and Performance Evaluation of a Large-Scale Multistage Metal Hydride-Based Hydrogen Compressor”, Applied Energy, vol. 390, pp. 125798(1-22).
  18. Gond., A. K., Dalal, A., Basu, D.N., 2025, “Novel designs and performance appraisal of non-uniformly heated annuli for heat transfer augmentation with supercritical carbon dioxide”, Annals of Nuclear Energy, vol. 218, pp. 111393 (1-20).
  19. Kumar, D., and Dalal, A., 2025, “Computational Investigation of heat transfer and frictional loss of fin-tube heat exchanger with delta winglet and shear-thinning fluid”, International Journal of heat and Fluid Flow, vol. 114, pp. 109800 (1-13).
  20. More, A., Parida, A., Muthukumar, P., Kalita, P., Dalal, A., 2025, “Comparative Performance Analysis of Finned and Metal Foam Metal Hydride Reactors for Efficient Heating and Cooling Operations”, Thermal Science and Engineering Progress, vol. 60, pp. 103473 (1-17).
  21. Deb, R., Singh, A., and Dalal, A., 2025, “Bridge Radius Evolution During Coalescence of Ferrofluid Droplets Suspended in a Nonmagnetic Outer Fluid”, Langmuir, vol. 41(1), pp. 403-419.
  22. Parida, A., Muthukumar, P., and Dalal, A., 2024, “Numerical Study of a Three-stage Metal Hydride Hydrogen Compressor Considering Ally Bed Deformation”, Energy Sources, Part A: Recovery, Utilization and Environmental Effects, vol. 46(1), pp. 12414–12434.
  23. Gond., A. K., Srivastava, T., Dalal, A., Basu, D.N., 2024, “Characterization and comparative appraisal of two novel annular channel designs with variable flow areas for supercritical heat transfer”, Nuclear Engineering Design, vol. 430, pp. 113679 (1-20).
  24. Parida, A., Kumar, A., Muthukumar, P., and Dalal, A., 2024, “Experimental and numerical investigations on synergistic coupling of metal hydride hydrogen storage systems with low-temperature proton exchange membrane fuel-cell”, Thermal Science and Engineering Progress, vol. 51, pp. 102620 (1-15).
  25. Kalita, N., Muthukumar, P. and Dalal, A., 2024, “Performance Investigation of a Hybrid Solar Dryer with Electric and Biogas Backup Air Heaters for Chilli Drying”, Thermal Science and Engineering Progress, vol. 52, pp. 102646 (1-13).
  26. Kumar, D., and Dalal, A., 2024, “A Numerical Study of the Thermal and Hydraulic Parameters of a Finned Tube Heat Exchanger Using Shear-thinning Fluid and Rectangular Winglet”, International Journal of Thermal Sciences, vol. 139, pp. 108653 (1-12).
  27. Parida, A., Prasad, J. S., Muthukumar, P., and Dalal, A., 2024, “A Dynamic Model for Predicting the Absorption and Desorption Behaviors of Metal Hydride Systems and Its Implementation for Screening of Alloys for Metal Hydride Hydrogen Compressor”, International Journal of Hydrogen Energy, vol. 51, pp. 454-472.
  28. Agnihotry, A., Prasad, N.K., and Dalal, A., 2023, “Numerical Study of Bubble Rise in a Three-Dimensional Sinusoidal Channel”, Physics of Fluids, vol. 35, pp. 092109 (1-11).
  29. Sarma, B., Dalal, A., and Basu, D.N., 2023, “Jetting Dynamics of Viscous Droplets on Superhydrophobic Surfaces”, Langmuir, vol. 39, pp. 14040–14052.
  30. Prasad, N.K., Ghosh, S.S., and Dalal, A., 2023, “Understanding Deformation and Breakup Tendency of Shear-Thinning Viscoelastic Drops in Constricted Microchannels”, Langmuir, vol. 39 (34), pp. 11975-11991.
  31. Deb, R., Sarma, B., and Dalal, A., 2023, “Magnetic-Field Mediated Active Propulsion of Ferrofluid Droplets on a Wire”, Langmuir, vol. 39(23), pp. 8244-8254.
  32. Gond, A. K., Dalal, A., and Basu, D. N., 2023, “Thermalhydraulic Characterization and Feasibility Assessment of Double-cooled Annular Channel Under Supercritical Heat Transfer”, International Journal of Thermal Sciences, vol. 193, pp. 108508(1-17).
  33. Deb, R., Sarma, B., and Dalal, A., 2022, “Magnetowetting Dynamics of Sessile Ferrofluid Droplets: A Review”, Soft Matter, vol. 18, pp. 2287 - 2324.
  34. Das, S. K, Dalal, A., Breuer, M., and Biswas, G., 2022, “Evolution of jets during drop impact on a deep liquid pool”, Physics of Fluids, vol. 34, pp. 022110 (1-10).
  35. Prasad, N.K., Shome, R., Biswas, G., Ghosh, S.S., and Dalal, A., 2022, “Transport behaviour of commercial anti-cancer drug protein-bound paclitaxel (Paclicad) in micron-sized channel”, Langmuir, vol. 38(6), pp. 2014-2025.
  36. Sarma, B., Dalal, A., and Basu, D.N., 2022, “Interfacial Dynamics of Viscous Droplets Impacting a Superhydrophobic Candle Soot Surface: Overview and Comparison”, Physics of Fluids, vol. 34, pp. 012121(1-16).
  37. Prasad, N.K., Shome, R., Biswas, G., Ghosh, S.S., and Dalal, A., 2021, “Discerning the self-healing, shear-thinning characteristics and therapeutic efficacy of hydrogel drug carriers migrating through constricted microchannel resembling blood microcapillary”, Colloids and Surfaces A: Physicochemical and Engineering Aspects, vol. 626, pp. 127070(1-11).
  38. Das, S., Dalal, A., and Tomar, G., 2021, “Electrohydrodynamics induced interactions between droplets”, Journal of Fluid Mechanics, vol. 915, A88(1-27).
  39. Mazumder, A., Garg, T., Dalal, A., and Sethi, S., 2021, “Development of a phase change solver for concentrated energy beam applications”, International Communications in Heat and Mass Transfer, vol. 126, pp. 105469 (1-7).
  40. Sarma, B., Kumar, S., Dalal, A., Basu, D. N., and Bandyopadhyay, D., 2021, “Electric-Discharge-Mediated Jetting, Crowning, Bursting, and Atomization of a Droplet”, Physical Review Applied, vol. 15, pp. 014005 (1-27).
  41. Kumar, A., Bhardwaj, S., Dalal, A., and Natarajan, G., 2021, “Numerical Analysis of Conjugate Heat Transfer in a Planar Sudden Expansion Flow”, Journal of The Institution of Engineers (India): Series C, vol. 102, pp. 981-993.
  42. Bhardwaj, S., and Dalal, A., 2021, “Numerical Investigation of Free Convection in a Porous Corrugated Cavity Filled With Silver (Ag) Dispersed Nano-Fluid”, Journal of Thermal Science and Engineering Applications, vol. 13 (4), pp. 041005 (1-15).
  43. Sarma, B., Shahapure, V., Dalal, A., and Basu, D. N., 2020, “Magnetowetting Dynamics of Sessile Ferrofluid Drops on Soft Surfaces”, Soft Matter, vol. 16, pp. 970-982.
  44. Pandey, V., Deka, H., Biswas, G., and Dalal, A., 2020, “Dynamics of Growth and Break-up of an Evaporating Pendant Drop”, ASME Journal of Heat Transfer, vol. 142 (2), pp. 021601 (1-8).
  45. Kotoky, S., Dalal, A., and Natarajan, G., 2020, “A Computational Analysis of the Role of Particle Diameter on the Fluidization Behavior in a Bubbling Gas-Solid Fluidized Bed”, Computational Particle Mechanics, vol. 7, pp. 555-565.
  46. Deka, M., Brahmachary, S., Thirumalaisamy, R., Dalal, A., and Natarajan, G., 2020, “A new Green-Gauss Reconstruction on Unstructured Meshes. Part I: Gradient Reconstruction”, Journal of Computational Physics, vol. 422, pp. 108325 (1-27).
  47. Dehury, P., Chaudhary R. K., Banerjee, T., and Dalal, A., 2019, “Evaluation of Thermophysical Properties of Menthol-Based Deep Eutectic Solvent as a Thermal Fluid: Forced Convection and Numerical Studies”, Industrial & Engineering Chemistry Research, vol. 58 (43), pp. 20125-20133.
  48. Thirumalaisamy, R., Natarajan, G., and Dalal, A., 2019, “Comment on a “Modifications to the Gradient Schemes on Unstructured Cell Centered Grids for the Accurate Determination of Gradients near Conductivity Changes”, Physics of Fluids, vol. 31, pp. 129101 (1-4).
  49. Nath, B., Bidkar, A. P., Kumar, V., Dalal, A., Jolly, M. K., Ghosh, S., and Biswas, G., 2019, “Deciphering Hydrodynamic and Drug-resistant Behaviors of Metastatic EMT Breast Cancer Cells Moving in a Constricted Microcapillary”, Journal of Clinical Medicine, vol. 8, pp. 1194(1-15).
  50. Sarma, B., Shahapure, V., Dalal, A., and Basu, D. N., 2019, “Experimental Characterization of the Growth Dynamics During Capillarity-Driven Generation”, Physical Review E, vol. 100, pp. 013106 (1-12).
  51. Nath, B., Biswas, G., and Dalal, A., 2019, “Influence of Electric Field on Deformation of a Drop in Shear Flow”, Physics of Fluids, vol. 31(4), pp. 042102(1-13).
  52. Deka, H., Tsai, P-H, Biswas, G., Dalal, A., Ray, B., and Wang, A-B., 2019, “Dynamics of Formation and Oscillation of Non-spherical Drops”, Chemical Engineering Science, vol. 201, pp. 413-423.
  53. Deka, H., Biswas, G., Sahu K.C., Kulkarni, Y., and Dalal, A., 2019, “Coalescence Dynamics of a Compound Drop on a Deep Liquid Pool”, Journal of Fluid Mechanics, vol. 866, pp. R2(1-11).
  54. Deka, H., Biswas, G., Chakraborty, S., and Dalal, A., 2019, “Coalescence Dynamics of Unequal Sized Drop”, Physics of Fluids, vol. 31, pp. 012105(1-17).
  55. Bhardwaj, S., Dalal, A., and Mukherjee, P. P., 2019, “Mesoscale Understanding of Capillarity Driven Two-phase Flow in a Packed Bed Architecture”, International Journal of Heat and Mass Transfer, vol. 136, pp. 116-127.
  56. Parmananda, M., Dalal, A., and Natarajan, G., 2019, “Numerical Appraisal of Three Low Mach Number Algorithms for Radiative-convective Flows in Enclosures”, Computers and Mathematics with Applications, vol. 77 (8), pp. 2162-2181.
  57. Manik, J., Dalal, A., and Natarajan, G., 2019, “A Parametric Study on the Droplet Detachment Process from the Ceiling Under the Effect of Gravity”, Engineering Computations, vol. 36(2), pp. 445-465.
  58. Randive, P., Dalal, A., and Mukherjee, P. P., 2019, “Probing the Influence of Confinement and Wettability on Droplet Displacement Behavior: A Mesoscale Analysis”, European Journal of Mechanics – B/Fluids, vol. 75, pp. 327-338.
  59. Nath, B., Raza, A., Sethi, V., Dalal, A., Ghosh, S., and Biswas, G., 2018, “Understanding Flow Dynamics, Viability and Metastatic Potency of Cervical Cancer (HeLa) Cells Through Constricted Microchannels”, Scientific Reports, vol. 8, pp. 17357(1-10).
  60. Bhardwaj, S., Dalal, A., Mukherjee, P. P., and Biswas, G., 2018, “Analysis of Droplet Dynamics in a Partially Obstructed Confinement in a Three-dimensional Channel”, Physics of Fluids, vol. 30, pp. 102102 (1-14).
  61. Pandey, V., Biswas, G., and Dalal, A., 2018, “Effect of Surface Wettability and Electric Field on Transition of Film Boiling to Nucleate Boiling”, Numerical Heat Transfer, Part A, vol. 74(3), pp. 1105-1120.
  62. Pandey, V., Biswas, G., Dalal, A., and Welch, S.W.J., 2018, “Bubble Lifecycle During Heterogeneous Nucleate Boiling”, ASME Journal of Heat Transfer, vol. 140(12), pp. 121503(1-17).
  63. Parmananda, M., Thirumalaisamy, R., Dalal, A., and Natarajan, G., 2018, “Investigations of Turbulence-radiation Interaction in Non-Oberbeck-Boussinesq Buoyancy-driven Flows”, International Journal of Thermal Sciences, vol. 134, pp. 298-316.
  64. Bhardwaj, S., and Dalal, A., 2018, “Sweeping of the Entrapped Fluid out of the Groove in a Three-dimensional Channel Using Lattice Boltzmann Method”, European Journal of Mechanics, B/Fluids, vol. 72, pp. 328-339.
  65. Kotoky, S., Dalal, A., and Natarajan, G., 2018, “Effects of specularity and particle-particle restitution coefficients on the recirculation characteristics of dispersed gas-particle flows through a sudden expansion”, Advanced Powder Technology, vol. 29(10), pp. 2463-2475.
  66. Borgohain, P., Arumughan, J., Dalal, A., and Natarajan, G., 2018, “Design and performance of a three-dimensional micromixer with curved ribs”, Chemical Engineering Research and Design, vol. 136, pp. 761-775.
  67. Parmananda, M., Dalal, A., and Natarajan, G., 2018, “Unified framework for buoyancy induced radiative-convective flow and heat transfer on hybrid unstructured meshes”, International Journal of Heat and Mass Transfer, vol. 126, Part B, pp. 908-925.
  68. Nath, B., Biswas, G., Dalal, A., and Sahu, K. C., 2018, “Cross-stream migration of drops suspended in Poiseuille flow in the presence of an electric field”, Physical Review E, vol. 97, pp. 063106 (1-13).
  69. Manik, J., Dalal, A., and Natarajan, G., 2018, “A Generic Algorithm for Three-dimensional Multi-phase Flows on Unstructured Meshes”, International Journal of Multiphase Flow, vol. 106, pp. 228-242.
  70. Thirumalaisamy, R., Natarajan, G., and Dalal, A., 2018, “Towards an Improved Conservative Approach for Simulating Electrohydrodynamic Two-phase Flows Using Volume-of-fluid”, Journal of Computational Physics, vol. 367 (5), pp. 391-398.
  71. Deka, H., Ray, B., Biswas, G., Dalal, A., 2018, “Dynamics of Tongue Shaped Cavity Generated During the Impact of High-speed Microdrops”, Physics of Fluids, vol. 30, pp. 042103(1-14).
  72. Randive, P., Dalal, A., and Mukherjee, P. P., 2018, “Mesoscopic Modeling of Capillarity-induced Two-phase Transport in a Microfluidic Porous Structure”, Transport in Porous Media, vol. 122(3), pp. 673-691.
  73. Kotoky, S., Dalal, A., and Natarajan, G., 2018, “A Parametric Study of Dispersed Laminar Gas-Particle Flows Through Vertical and Horizontal Channels”, Advanced Powder Technology, vol. 29(5), pp. 1072-1084.
  74. Kotoky, S., Dalal, A., and Natarajan, G., 2018, “Effects of Specularity and Particle-particle Restitution Coefficients on the Hydrodynamic Behavior of Dispersed Gas-particle Flows Through Horizontal Channels”, Advanced Powder Technology, vol. 29(4), pp. 874-889.
  75. Borgohain, P., Choudhary, D., Dalal, A., and Natarajan, G., 2018, “Numerical Investigation of Mixing Enhancement for Multi-species Flows in Wavy Channels”, Chemical Engineering & Processing: Process Intensification, vol. 127, pp. 191-205.
  76. Shubham, Saikia, A., Dalal, A., and Pati, S., 2018, “Thermo-hydraulic Transport Characteristics of Non-Newtonian Fluid Flows Through Corrugated Channels”, International Journal of Thermal Sciences, vol. 129, pp. 201-208.
  77. Parmananda, M., Dalal, A., and Natarajan, G., 2018, “The Influence of Partitions on Predicting Heat Transfer due to the Combined Effects of Convection and Thermal Radiation in Cubical Enclosures”, International Journal of Heat and Mass Transfer, vol. 121, pp. 1179-1200.
  78. Borgohain, P., Dalal, A., Natarajan, G., and Gadgil, H., 2018, “Numerical assessment of mixing performances in cross-T microchannel with curved ribs”, Microsystem Technologies, vol. 24, pp. 1949-1963.
  79. Bhadauriya, S., Kapadia, H., Dalal, A., and Sarkar, S., 2018, “Effect of channel confinement on wake dynamics and forced convective heat transfer past a blunt headed cylinder”, International Journal of Thermal Sciences, vol. 124, pp. 467-476.
  80. Bhardwaj, S., and Dalal, A., 2018, “Mesoscopic Analysis of Three-dimensional Droplet Displacement on Wetted Grooved Wall of a Rectangular Channel”, European Journal of Mechanics / B Fluids , vol. 67, pp. 35-53.
  81. Kapadia, H., Dalal, A., and Sarkar, S., 2017, “Forced Convective Flow and Heat Transfer Past an Unconfined Blunt Headed Cylinder”, Numerical Heat Transfer Part A, vol. 72(5), pp. 372-388.
  82. Deka, H., Ray, B., Biswas, G., Dalal, A., Tsai, P-H, and Wang, A-B., 2017, “The Regime of Large Bubble Entrapment During a Single Drop Impact on a Liquid Pool”, Physics of Fluids, vol. 29, pp. 092101(1-13).
  83. Bhardwaj, S., Randive, P., and Dalal, A., 2017, “Lattice Boltzmann Simulations of Coalescence of Two Droplets on a Rectangular Channel Wall Considering Wetting Effects”, Progress in Computational Fluid Dynamics, vol. 17(5), pp. 281-289.
  84. Nath, B., Biswas, G., Dalal, A., and Sahu, K. C., 2017, “Migration of a Droplet in a Cylindrical Tube in the Creeping Flow Regime”, Physical Review E, vol. 95, pp. 033110 (1-11).
  85. Kumar, S., Sarma, B., Dalal, A., Basu, D., Dasmahapatra, A. K., and Bandyopadhyay, D., 2017, “Field Induced Anomalous Spreading, Oscillation, Ejection, Spinning, and Breaking of Oil Droplets on Strongly Slipping Water Surface”, Faraday Discussions, vol. 199, pp. 115-128.
  86. Pandey, V., Biswas, G., and Dalal, A., 2017, “Saturated Film Boiling at Various Gravity Levels Under the Influence of Electrohydrodynamic Forces”, Physics of Fluids, vol. 29, pp. 032104 (1-13).
  87. Bhardwaj, S., and Dalal, A., 2017, “Mesoscopic Analysis of Dynamic Droplet Behavior on Wetted Flat and Grooved Surface for Low Viscosity Ratio”, ASME Journal of Heat Transfer, vol. 139, No. 5, pp. 052002 (1-11).
  88. Srivastava, H., Dalal, A., Sahu, K. C., and Biswas, G., 2017, “Temporal Linear Stability Analysis of an Entry Flow in a Channel with Viscous Heating”, International Journal of Heat and Mass Transfer, vol. 109, pp. 922-929.
  89. Parmananda, M., Khan, S., Dalal, A., and Natarajan, G., 2017, “Critical Assessment of Numerical Algorithms for Convective-Radiative Heat Transfer in Enclosures with Different Geometries”, International Journal of Heat and Mass Transfer, vol. 108(11), pp. 627-644.
  90. Meshram, P., Bhardwaj, S., Dalal, A., and Pati, S., 2016, “Effect of Inclination Angle on Natural Convection Heat Transfer and Entropy Generation in Square Porous Enclosure”, Numerical Heat Transfer Part A, vol. 70(11), pp. 1271-1296.
  91. Pandey, V., Biswas, G., and Dalal, A., 2016, “Effect of Superheat and Electric Field on Saturated Film Boiling”, Physics of Fluids, vol. 28, pp. 052102(1-19).
  92. Meshram, P., Bhardwaj, S., and Dalal, A., 2016, “Numerical Investigation of Two Dimensional Natural Convection and Entropy Generation inside a Porous Square Enclosure with Sinusoidally Heated Wall”, Progress in Computational Fluid Dynamics, vol. 16(2), pp. 88-101.
  93. Sathisha, H. M., and Dalal, A., 2016, “2-D Unsteady Simulation of All-Vanadium Redox Flow Battery”, ASME Journal of Thermal Science and Engineering Applications, vol. 8(1), pp. 011019 (1-14).
  94. Pandey, V., Dalal, A., Biswas, G., 2015, “Bubble Formation in Film Boiling Including Electrohydrodynamic Forces”, Procedia IUTAM, vol. 15, pp. 86-94.
  95. Randive, P., Dalal, A., Sahu, K. C., Biswas, G., and Mukherjee, P. P., 2015, “Wettability Effects on Contact Line Dynamics of Droplet Motion in an Inclined Channel”, Physical Review E, vol. 91, pp. 053006(1-16).
  96. Randive, P., and Dalal, A., 2015, “Influence of Geometry on Mobilization of Trapped Blob”, European Journal of Mechanics – B/Fluids, vol. 53, pp. 1-10.
  97. Varma, N., Dulhani, J. P., Dalal, A., Sarkar, S., and Ganguly, S., 2015, “Effect of Channel Confinement on Mixed Convective Flow Past an Equilateral Triangular Cylinder”, ASME Journal of Heat Transfer, vol. 137(12), pp. 121013(1-7).
  98. Bhardwaj, S., and Dalal, A., 2015, “Effect of Undulations on the Natural Convection Heat Transfer and Entropy Generation Inside Porous Right-angled Triangular Enclosure”, Numerical Heat Transfer: Part A, vol. 67(9), pp. 972-991.
  99. Randive, P., Dalal, A., and Mukherjee, P. P., 2015, “Mesoscopic Simulation of Blob Resonance in a Model Porous Pathway”, Microfluidics and Nanofluidics, vol. 18(2), pp. 215-232.
  100. Bhardwaj, S., Dalal, A., and Pati, S., 2015, “Influence of Wavy Wall and Non-uniform Heating on Natural Convection Heat Transfer and Entropy Generation Inside Porous Complex Enclosure”, Energy, vol. 79, pp. 467-481.
  101. Dulhani, J. P., and Dalal, A., 2015, “Flow Past an Equilateral Triangular Bluff Obstacle: Computational Study of the Effect of Thermal Buoyancy on Flow Physics and Heat Transfer”, Numerical Heat Transfer: Part A, vol. 67, pp. 476-495.
  102. Randive, P., and Dalal, A., 2014, “Influence of Viscosity Ratio and Wettability on Droplet Displacement Behavior: A Mesoscale Analysis”, Computers and Fluids, vol. 102, pp. 15-31.
  103. Dulhani, J. P., Sarkar, S., and Dalal, A., 2014, “Effect of Angle of Incidence on Mixed Convective Wake Dynamics and Heat Transfer Past a Square Cylinder in Cross Flow at Re=100”, International Journal of Heat and Mass Transfer, vol. 74, pp. 319-332.
  104. Randive, P., Dalal, A., and Mukherjee, P. P., 2014, “Lattice Boltzmann Modeling of Two-phase Behavior Under Acoustic Excitation: Capillarity-wettability Interaction”, International Journal of Heat and Mass Transfer, vol. 74, pp. 460-472.
  105. Randive, P., Dalal, A., and Mukherjee, P. P., 2014, “Probing the Influence of Superhydrophobicity and Mixed Wettability on Droplet Displacement Behavior”, Microfluidics and Nanofluidics, vol. 17, pp. 657-674.
  106. Sarkar, S., Ganguly, S., and Dalal, A., 2014, “Analysis of Entropy Generation during Mixed Convective Heat Transfer of Nanofluids past a Rotating Circular Cylinder”, ASME Journal of Heat Transfer, vol. 136(6), pp. 062501 (1-10).
  107. Sarkar, S., Ganguly, S., and Dalal, A., Saha, P., Chakraborty, S., 2013, “Mixed Convective Flow Stability of Nanofluids past a Square Cylinder by Dynamic Mode Decomposition”, International Journal of Heat and Fluid Flow, vol. 44, pp. 624-634.
  108. Randive, P., and Dalal, A., 2013, “Capillarity-induced Resonance of Blobs in a 3-D Duct: Lattice Boltzmann Modelling”, International Journal of Heat and Mass Transfer, vol. 65, pp. 635-648.
  109. Bhardwaj, S.,and Dalal, A., 2013, “Analysis of Natural Convection Heat Transfer and Entropy Generation inside Porous Right-angled Triangular Enclosure”, International Journal of Heat and Mass Transfer, vol. 65, pp. 500-513.
  110. Sarkar, S., Ganguly, S., and Dalal, A., 2013, “Buoyancy Driven Flow and Heat Transfer of Nanofluids Past a Square Cylinder in Vertically Upward Flow”, International Journal of Heat and Mass Transfer, vol. 59(1), pp. 433-450.
  111. Sarkar, S., Ganguly, S., and Dalal, A., 2012, “Analysis of Entropy Generation during Mixed Convective Heat Transfer of Nanofluids past a Square Cylinder in Parallel Flow”, ASME Journal of Heat Transfer, vol. 134, pp. 122501(1-8).
  112. Bhinder, A. P. S., Sarkar, S., and Dalal, A., 2012, “Flow over and Forced Convection Heat Transfer around a Semi-circular Cylinder at Incidence”, International Journal of Heat and Mass Transfer, vol. 55(19-20), pp. 5171-5184.
  113. Sarkar, S., Dalal, A., and Biswas, G., 2011, “Unsteady Wake Dynamics and Heat Transfer in Forced and Mixed Convection Past a Circular Cylinder in Cross Flow for High Prandtl numbers”, International Journal of Heat and Mass Transfer, vol. 54(15-16), pp. 3536-3551.
  114. Sarkar, S., Dalal, A., and Biswas, G., 2010, “Mixed Convective Heat Transfer from Two Identical Square Cylinders in Cross Flow at Re=100”, International Journal of Heat and Mass Transfer, vol. 53(13-14), pp. 2628-2642.
  115. Ranjan, R., Dalal, A., and Biswas, G., 2008, “A Numerical Study of Fluid Flow and Heat Transfer Around a Square Cylinder at Incidence Using Unstructured Grids”, Numerical Heat Transfer: Part A, vol. 54, pp. 890-913.
  116. Dalal, A., Eswaran, V., and Biswas, G., 2008, “A Finite Volume Method for Navier-Stokes Equations on Unstructured Meshes”, Numerical Heat Transfer: Part B, vol. 54(3), pp. 238-259.
  117. Dalal, A., and Das, M. K., 2008, “Heatline Method for the Visualization of Natural Convection in a Complicated Cavity”, International Journal of Heat and Mass Transfer, vol. 51(1-2), pp. 263-272.
  118. De, A. K, and Dalal, A., 2007, "Numerical Study of Forced Convection Fluid Flow and Heat Transfer from a Triangular Cylinder Placed in a Channel", ASME Journal of Heat Transfer, vol. 129(5), pp. 646-656.
  119. Dalal, A., and Das, M. K., 2007, “Flow and Thermal Study of Laminar Natural Convection in a Complicated Cavity Heated from Top with Sinusoidal Temperature and Cooled from Other Sides”, Computers and Fluids, vol. 36, pp. 680-700.
  120. De, A. K., and Dalal, A., 2006, “Numerical Simulation of Unconfined Flow Past a Triangular Cylinder”, International Journal for Numerical Methods in Fluids, vol. 52(7), pp. 801-821.
  121. De, A. K., and Dalal, A., 2006, “A Numerical Study of Natural Convection around a Square, Horizontal, Heated Cylinder Placed in an Enclosure”, International Journal of Heat and Mass Transfer, vol. 49(23-24), pp. 4608-4623.
  122. Dalal, A., and Das, M. K., 2006, “Natural Convection in a Wavy Wall Heated from Below and Uniformly Cooled from the Top and Both Sides”, ASME Journal of Heat Transfer, vol. 128(7), pp. 717-725.
  123. Dalal, A., and Das, M. K., 2006, “Natural Convection in a Rectangular Cavity Heated from Below and Uniformly Cooled from the Top and Both Sides”, Numerical Heat Transfer: Part A, vol. 49(3), pp. 301–322.
  124. Dalal, A., and Das, M. K., 2005, “Laminar Natural Convection in an Inclined Complicated Cavity with Spatially Variable Wall Temperature”, International Journal of Heat and Mass Transfer, vol. 48(14), pp. 2986-3007.