21. A combined GCMC and LBM simulation method for CH4 capture in Cu-BTC particle adsorption bed. (November 2017) Authors: Wang, H.; Qu, Z.G.; Zhou, L. Journal: International communications in heat and mass transfer Issue: Volume 88(2017) Page Start: 48 Record Type: Journal Article View Content: Available online (eLD content is only available in our Reading Rooms) ↗
22. A comparative analysis and scale-up of a novel slit-less gas-solid vortex reactor dryer with spiral chimney versus conical chimney outlet. (February 2021) Authors: Singh, Pavitra; Mahanta, Pinakeswar; Kalita, Pankaj Journal: International communications in heat and mass transfer Issue: Volume 121(2021) Page Start: Record Type: Journal Article View Content: Available online (eLD content is only available in our Reading Rooms) ↗
23. A comparative analysis of innovative microchannel heat sinks for electronic cooling. (August 2016) Authors: Lu, Sainan; Vafai, Kambiz Journal: International communications in heat and mass transfer Issue: Volume 76(2016:Aug.) Page Start: 271 Record Type: Journal Article View Content: Available online (eLD content is only available in our Reading Rooms) ↗
24. A comparative analysis of innovative microchannel heat sinks for electronic cooling. (August 2016) Authors: Lu, Sainan; Vafai, Kambiz Journal: International communications in heat and mass transfer Issue: Volume 76(2016:Aug.) Page Start: 271 Record Type: Journal Article View Content: Available online (eLD content is only available in our Reading Rooms) ↗
25. A comparative analysis of multiple fractional solutions of generalized Couette flow of couple stress fluid in a channel. Issue 8 (13th July 2022) Authors: Arif, Muhammad; Kumam, Poom; Kumam, Wiyada; Riaz, Muhammad Bilal; Khan, Dolat Journal: Heat transfer Issue: Volume 51:Issue 8(2022) Page Start: 7348 Record Type: Journal Article View Content: Available online (eLD content is only available in our Reading Rooms) ↗
26. A comparative empirical investigation on the thermal performance of gravity-assisted double-bent, double-ended cooling, and single-bent, single-ended cooling heat pipes. (March 2020) Authors: Habibnezhad Ledari, Behnam; Sabzpooshani, Majid Journal: International communications in heat and mass transfer Issue: Volume 112(2020:Mar.) Page Start: Record Type: Journal Article View Content: Available online (eLD content is only available in our Reading Rooms) ↗
27. A comparative entropy based analysis of tangent hyperbolic hybrid nanofluid flow: Implementing finite difference method. (December 2021) Authors: Hussain, Syed M.; Jamshed, Wasim Journal: International communications in heat and mass transfer Issue: Volume 129(2021) Page Start: Record Type: Journal Article View Content: Available online (eLD content is only available in our Reading Rooms) ↗
28. A comparative experimental study on the physical behavior of mono and hybrid RBD palm olein based nanofluids using CuO nanoparticles and PANI nanofibers. (January 2021) Authors: Sofiah, A.G.N.; Samykano, M.; Shahabuddin, S.; Kadirgama, K.; Pandey, A.K. Journal: International communications in heat and mass transfer Issue: Volume 120(2021) Page Start: Record Type: Journal Article View Content: Available online (eLD content is only available in our Reading Rooms) ↗
29. A comparative investigation of thermodynamic performance and flow field structure of a modified Collins cycle-based helium turboexpander system. (October 2021) Authors: Kumar, Manoj Journal: International communications in heat and mass transfer Issue: Volume 127(2021) Page Start: Record Type: Journal Article View Content: Available online (eLD content is only available in our Reading Rooms) ↗
30. A comparative note on the free convection of micropolar nanofluid due to the interaction of buoyancy and the dissipative heat energy. Issue 7 (28th June 2021) Authors: Pattnaik, Pradyumna K.; Pattnaik, Jyotsnarani; Mishra, Satya R.; Ali, Bagh Journal: Heat transfer Issue: Volume 50:Issue 7(2021) Page Start: 7020 Record Type: Journal Article View Content: Available online (eLD content is only available in our Reading Rooms) ↗