Research, Consultancy, Publication |
PUBLICATIONS
SCI / Scopus Indexed Journal Publications
- Jishnu Chandran R, Sreeja Sadasivan, Senthil Kumar A, Fei Chen. Two-Phase Radial Ejector for Transcritical CO2 Refrigeration, Physics of Fluids, 36 (2024) 126142. AIP Publishing. DOI: https://doi.org/10.1063/5.0244439 [Imp Fac- 4.1]
- Jishnu Chandran R, Senthil Kumar A, Sreeja Sadasivan, Bibin John & Rajesh Kanna P. Effect of Spindle Position on the Performance and Two-phase Characteristics of Controllable Ejector for CO2 Refrigeration System, Journal of Supercritical Fluids, 205 (2024): 106125. Elsevier. DOI: https://doi.org/10.1016/j.supflu.2023.106125 [Imp Fac- 3.9]
- Jishnu Chandran R, Senthil Kumar A, Sreeja Sadasivan, Rajesh Kanna P & Fei Chen. Two-phase Simulation of Transcritical CO2 Flow in Nozzle and Ejector using the Homogeneous Equilibrium Model, Journal of Thermal Analysis and Calorimetry, 149 (2024): 5367–5380. Springer. DOI: https://doi.org/10.1007/s10973-024-13104-9 [Imp Fac- 3.0]
- Tamilarasan S K, Jose J, Boopalan V, Chen F, Arumugam S K, Ramachandran J C, Parthasarathy R K, Taler D, Sobota T, Taler J. Recent Developments in Supercritical CO2-Based Sustainable Power Generation Technologies. Energies 17 (2024) 16: 4019. MDPI. https://doi.org/10.3390/en17164019 [Imp Fac- 3.0]
- Vignesh Boopalan, Jishnu Chandran R, Senthil Kumar A & Rajesh Kanna P. Numerical investigation of Burnout effect in turbine blade tip leakage at transonic condition, Engineering Research Express, 6 (2024) 4: 045554. IOP Publications. DOI: https://doi.org/10.1088/2631-8695/ad923a [Imp Fac- 1.5]
- Sreeja Sadasivan, Senthil Kumar A, Jishnu Chandran R & Mahesh C Aggarwal. Effects of Influencing Factors on the Performance and Morphology of Shock waves in Ejectors: A Review, International Journal of Modern Physics C, 34 (2023) 11: 2350142. World Scientific. DOI: https://doi.org/10.1142/S0129183123501425 [Imp Fac- 1.4]
- Arun Govind Neelan, Jishnu Chandran R, Manuel A. Diaz & Raimund Bürger. An efficient three-level weighted essentially non-oscillatory scheme for hyperbolic equations, Computational and Applied Mathematics, 42 (2023) 70. Springer. DOI: https://doi.org/10.1007/s40314-023-02214-z [Imp Fac- 3.0]
- Jishnu Chandran R, & A Salih. Development of a benchmark solution in compressible liquid flows: Analytical solution to the water shock tube problem, Journal of Thermal Analysis and Calorimetry, 147 (2022): 5279-5292. Springer. DOI: https://doi.org/10.1007/s10973-021-10871-7 [Imp Fac- 4.4]
- Jishnu Chandran R, & A Salih. The Adaptive damping technique: Improving the simulation accuracy of hydraulic transients, International Journal of Mathematical Engineering and Management Sciences, 6 (2021) 6: 1553-1564, IJMEMS. DOI: https://doi.org/10.33889/IJMEMS.2021.6.6.092. [Imp Fac- 1.9]
- Jishnu Chandran R, Risha Raju, & A Salih. An adaptively damped compressible-liquid model for non-cavitating hydraulic surges, International Journal of Engineering, Transactions A: Basics. 33 (2020) 10: 2047-2056, Materials and Energy Research Center. DOI: https://dx.doi.org/10.5829/ije.2020.33.10a.23 [Imp Fac- 1.2]
- Risha Raju, Jishnu Chandran R, A Salih & Kuruvilla Joseph. Numerical Analysis of Mixing-chamber non-uniformities and feed conditions for optimal performance of urea SCR, Reaction Chemistry and Engineering. 5 (2020) 12: 2236-2249, Royal Society of Chemistry. DOI: https://doi.org/10.1039/D0RE00269K [Imp Fac- 4.2]
- Jishnu Chandran R, & A Salih. A modified equation of state for water for a wide range of pressure and the concept of water shock tube, Fluid Phase Equilibria 483 (2019): 182-188, Elsevier. DOI: https://doi.org/10.1016/j.fluid.2018.11.032 [Imp Fac- 2.8]
Non-Scopus Journal Publications
- Jishnu Chandran R, & A Salih. A comparative performance analysis of HLLC and AUSM+-up Riemann Solvers, Cankaya University Journal of Science and Engineering 7 (2020) 2: 108-117, Cankaya University.
- Jishnu Chandran R, & A Salih. A pressure-based compressible-liquid flow model for computation of instantaneous valve closure in pipes, Science and Technology Journal 7 (2019)2: 60-66, Mizoram University.
Book Chapters (Scopus-indexed)
- Jishnu Chandran R, Risha Raju, A Salih & Senthil Kumar A. Accurate Compressible Flow Modelling of Liquid Shock Tube Problems, Fluid Mechanics and Fluid Power, 2022 (Vol. 2). Lecture Notes in Mechanical Engineering, Springer. DOI: https://doi.org/10.1007/978-981-99-5752-1_75
- Jishnu Chandran R, & Micky Baisil. Experimental and Computational Study of Liquid Nitrogen Transfer Line Chilldown, Fluid Mechanics and Fluid Power 2021 (Vol. 2), Lecture Notes in Mechanical Engineering, Springer. DOI: https://doi.org/10.1007/978-981-19-6970-6_57
- Arun Govind Neelan, Jishnu Chandran R, Manuel A. Diaz & Raimund Bürger. Improved Three-level Order-Adaptive WENO Scheme, Fluid Mechanics and Fluid Power 2021 (Vol. 2), Lecture Notes in Mechanical Engineering, Springer. DOI: https://doi.org/10.1007/978-981-19-6970-6_41
Conference Publications
- Risha Raju, Jishnu Chandran R, Kuruvilla Joseph, & A Salih (2019). Numerical Modelling of NOx Reduction on Cu-ZSM-5 Monolith Reactor, 3rd International ISHMT-ASTFE Heat and Mass Transfer Conference, 2019, 1-6.
- Jishnu Chandran R, & A Salih (2018). Equivalence of Density-Based and a Customized Pressure-Based Approach for Compressible Modelling of Instant Valve Closure in Irrigation Pipes, 7th International Conference on Fluid Mechanics and Fluid Power, 2018,1-3.
- Jishnu Chandran R, & A Salih (2017). Water Shock tube simulation with Tait equation of state, 2nd International ISHMT-ASTFE Heat and Mass Transfer Conference, ISHMT Digital Library. Begell House Inc., 2017, 2203-2209.
- Jishnu Chandran R, & A Salih (2016). A Comparative Study of AUSM Scheme with Some Common Finite Difference Schemes in Solving One-Dimensional Shock-Tube Problem, 6th International Conference on Fluid Mechanics and Fluid Power, 2016, 1-3.
- Jishnu Chandran R, A Ramaraju, Harikrishnan R, Abhishek Kumar, Sujith Kumar R (2013). Chilldown Studies of a Cryogenic Transfer Line, 2nd National Conference on Advances in Heat Transfer and Fluid Dynamics, 2013, 233-238.
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