- Tuncer, A.D., A. Sozen, A. Khanlari, E.Y. Gurbuz, H.I. Variyenli, Upgrading the performance of a new shell and helically coiled heat exchanger by using longitudinal fins. Applied Thermal Engineering, 2021. 191: p. 116876.
- Xiong, Q., M. Izadi, M. Shokri rad, S.A. Shehzad, H.A. Mohammed, 3D Numerical Study of Conical and Fusiform Turbulators for Heat Transfer Improvement in a Double-Pipe Heat Exchanger. International Journal of Heat and Mass Transfer, 2021. 170: p. 120995.
- Tran, N., J.S. Liaw, C.C. Wang, Performance of thermofluidic characteristics of recuperative wavy-plate heat exchangers. International Journal of Heat and Mass Transfer, 2021. 170: p. 121027.
- Zheng, D., J. Yang, J. Wang, S. Kabelac, B. Sunden, Analyses of thermal performance and pressure drop in a plate heat exchanger filled with ferrofluids under a magnetic field. Fuel, 2021. 293: p. 120432.
- Omari, S.A.B., A.M. Ghazal, E. Elnajjar, Z.A. Qureshi, Vibration-enhanced direct contact heat exchange using gallium as a solid phase change material. International Communications in Heat and Mass Transfer, 2021. 120: p. 104990.
- Shahsavar, A., M.A. Bakhshizadeh, M. Arici, M. Afrand, S. Rostami, Numerical study of the possibility of improving the hydrothermal performance of an elliptical double-pipe heat exchanger through the simultaneous use of twisted tubes and non-Newtonian nanofluid, Journal of Thermal Analysis and Calorimetry, 2021. 143: p.2825-2840.
- Dzyubenko, B.V., Influence of flow twisting on convective heat transfer in banks of twisted tubes, Heat Transfer Research, 2015. 36: p. 449-459.
- Zhang, X.X., G.H. Wei, Z.F. Sang, Experimental research of heat transfer and flow friction properties in twisted tube heat exchanger, Chemical Engineering, 2015. 35: p. 17-20.
- Qing, D.F., X.L. Duan, Y.H. Liu, Experimental investigation on running characteristics of twisted tube in evaporator, Chemical Engineering, 2015. 36: p. 12-15.
- Yu, Y., D.S. Zhu, L.D. Zeng, J. Zou, Experimental investigation on heat transfer enhancement of twisted tube, Chemical Engineering, 2015. 39: p. 18-21.
- Samruaisin, P., S. Kunlabud, K. Kunnarak, V. Chuwattanakul, S. Eiamsa-Ard, Intensification of convective heat transfer and heat exchanger performance by the combined influence of a twisted tube and twisted tape, Case Studies in Thermal Engineering, 2019. 14: p. 100489.
- Choi, S.U.S., Enhancing thermal conductivity of fluids with nanoparticles, ASME FED, 1995. 231: p. 99-105.
- Rios, M.S.B.L., C.I. Rivera-Solorio, K.D.P. Nigam, An overview of sustainability of heat exchangers and solar thermal applications with nanofluids: A review, Renewable and Sustainable Energy Reviews, 2021. 142: p. 110855.
- Khoshvaght-Aliabadi, M., Z. Arani, F. Rahimpour, Influence of Al2O3-H2O nanofluid on performance of twisted minichannels, Advanced Powder Technology, 2016. 27: p. 1514-1525.
- Feizabadi, A., M. Khoshvaght-Aliabadi, A.B. Rahimi, Numerical investigation on Al2O3/water nanofluid flow through twisted-serpentine tube with empirical validation, Applied Thermal Engineering, 2018. 137: p. 296-309.
- Omidi, M., A.A. Rabienataj Darzi, M. Farhadi, Turbulent heat transfer and fluid flow of alumina nanofluid inside three-lobed twisted tube, Journal of Thermal Analysis and Calorimetry, 2019. 137: p. 1451-1462.
- Mahato, S.K., S.C. Rana, R.N. Barman, S. Goswami, Numerical analysis of heat transfer and fluid flow through the twisted square duct (TSD): Nanofluid as working fluid, Journal of Thermal Analysis and Calorimetry, 2019. 33: p. 5507-5514.
- Zohuri, B. and P. McDaniel, First Law of Thermodynamics, in Thermodynamics In Nuclear Power Plant Systems. 2019, Springer. p. 99-148.
- Erguvan, M. and D.W. MacPhee, Second law optimization of heat exchangers in waste heat recovery. International Journal of Energy Research, 2019. 43: p. 5714-5734.
- Rashidi, S., P. Javadi, and J.A. Esfahani, Second law of thermodynamics analysis for nanofluid turbulent flow inside a solar heater with the ribbed absorber plate. Journal of Thermal Analysis and Calorimetry, 2019. 135: p. 551-563.
- Vera, G., R. Dufo-Lopez, J.L. Bernal-Agustin, Energy management in microgrids with renewable energy sources: A literature review. Applied Sciences, 2019. 9: p. 3854.
- Brogioli, D., F. La Mantia, and N.Y. Yip, Energy efficiency analysis of distillation for thermally regenerative salinity gradient power technologies. Renewable energy, 2019. 133: p. 1034-1045.
- Zhao, N., C. Qi, T. Chen, J. Tang, X. Cui, Experimental study on influences of cylindrical grooves on thermal efficiency, exergy efficiency and entropy generation of CPU cooled by nanofluids. International Journal of Heat and Mass Transfer, 2019. 135: p. 16-32.
- Al-Rashed, A.A.A.A., A. Shahsavar, S. Entezari, M.A. Mohghimi, S.A. Adio, T.K. Nguyen, Numerical investigation of non-Newtonian water-CMC/CuO nanofluid flow in an offset strip-fin microchannel heat sink: thermal performance and thermodynamic considerations. Applied Thermal Engineering, 2019. 155: p. 247-258.
- Niknejadi, M.R., M. Afrand, A. Karimipour, A. Shahsavar, A.H. Meghdadi Isfahani, Experimental investigation of the hydrothermal aspects of water-Fe3O4 nanofluid inside a twisted tube, Journal of Thermal Analysis and Calorimetry, 2021. 143: p. 801-810.
|