476
Views
35
CrossRef citations to date
0
Altmetric
Articles

Thermal Performance Enhancement of Triplex Tube Latent Thermal Storage Using Fins-Nano-Phase Change Material Technique

, , , &

References

  • Jegadheeswaran, S., and Pohekar, S. D., Performance Enhancement in Latent Heat Thermal Storage System: A Review, Renewable and Sustainable Energy Reviews, vol. 13, pp. 2225–2244, 2009.
  • Liu, S., Li, Y., and Zhang, Y., Review on Heat Transfer Mechanisms and Characteristics in Encapsulated PCMs, Heat Transfer Engineering, vol. 36, pp. 880–901, 2015.
  • Niyas, H., and Muthukumar, P., Performance Analysis of Latent Heat Storage Systems, International Journal of Scientific and Engineering Research, vol. 4, pp. 2229–5518, 2013.
  • Jian, Y. L., Numerical and Experimental Investigation for Heat Transfer in Triplex Concentric Tube with Phase Change Material for Thermal Energy Storage, Solar Energy, vol. 82, pp. 977–985, 2008.
  • Parry, A. J., Eames, P. C., and Agyenim, F. B., Modeling of Thermal Energy Storage Shell-and-Tube Heat Exchanger, Heat Transfer Engineering, vol. 35, pp. 1–14, 2014.
  • Rathod, M. K., and Banerjee, J., Thermal Performance Enhancement of Shell and Tube Latent Heat Storage Unit Using Longitudinal Fins, Applied Thermal Engineering, vol. 75, pp. 1084–1092, 2015.
  • Mat, S., Al-Abidi, A. A., Sopian, K., Sulaiman, M. Y., and Mohammad, A. T., Enhance Heat Transfer for PCM Melting in Triplex Tube with Internal-External Fins, Energy Conversion and Management, vol. 74, pp. 223–236, 2013.
  • Al-Abidi, A., Mat, S., Sopian, K., Sulaiman, Y., and Mohammad, A., Heat Transfer Enhancement for PCM Thermal Energy Storage in Triplex Tube Heat Exchanger, Heat Transfer Engineering, vol. 37, pp. 705–712, 2016.
  • Zeng, J. L., Sun, L. X., Xu, F., Tan, Z. C., Zhang, Z. H., Zhang, J., Zhang, T., Study of a PCM Based Energy Storage System Containing Ag Nanoparticles, Journal of Thermal Analysis and Calorimetry, vol. 87, pp. 369–373, 2007.
  • Pincemin, S., PY, X., Olives, R., Christ, M., and Oettinger, O., Elaboration of Conductive Thermal Storage Composites Made of Phase Change Materials and Graphite for Solar Power Plant, ASME Journal of Solar Energy Engineering, vol. 130, pp. 1–5, 2007.
  • Arasu, A. V., and Mujumdar, A. S., Numerical Study on Melting of Paraffin Wax with Al2O3 in a Square Enclosure, International Communications in Heat and Mass Transfer, vol. 39, pp. 8–16, 2012.
  • Wang, J., Xie, H., Guo, Z., Guan, L., and Li, Y., Improved Thermal Properties of Paraffin Wax by the Addition of TiO2 Nanoparticles, Applied Thermal Engineering, vol. 73, pp. 1541–1547, 2014.
  • Mettawee, E. B. S., and Assassa, G. M. R., Thermal Conductivity Enhancement in a Latent Heat Storage System, Solar Energy, vol. 81, pp. 839–845, 2007.
  • Ho, C. J., and Gao, J. Y., Preparation and Thermophysical Properties of Nanoparticle in Paraffin Emulsion as Phase Change Material, International Communications in Heat and Mass Transfer, vol. 36, pp. 467–470, 2009.
  • Darzi, A. A. R., Farhadi, M., and Sedighi, K., Numerical Study of Melting Inside Concentric and Eccentric Horizontal Annulus, Applied Mathematical Modelling, vol. 36, pp. 4080–4086, 2012.
  • Brent, A. D., Voller, V. R., and Reid, K. J., Enthalpy-Porosity Technique for Modeling Convection-Diffusion Phase Change: Application to the Melting of a Pure Metal, Numerical Heat Transfer, vol. 13, pp. 297–318, 2007.
  • Guo, C., and Zhang, W., Numerical Simulation and Parametric Study on New Type of High Temperature Latent Heat Thermal Energy Storage System, Energy Convers and Management, vol. 49, pp. 919–927, 2008.
  • Hosseini, M. J., Ranjbar, A. A., Sedighi, K., and Rahimi, M., A Combined Experimental and Computational Study on the Melting Behavior of a Medium Temperature Phase Change Storage Material Inside Shell and Tube Heat Exchanger, International Communications in Heat and Mass Transfer, vol. 39, pp. 1416–1424, 2012.
  • Chow, L. C., and Zhong, J. K., Thermal Conductivity Enhancement for Phase Change Storage Media, International Communications in Heat and Mass Transfer, vol. 23, pp. 91–100, 1996.
  • Vajjha, R. S., Das, D. K., and Namburu, P. K., Numerical Study of Fluid Dynamic and Heat Transfer Performance of Al2O3 and CuO Nanofluids in the Flat Tubes of a Radiator, International Journal of Heat and Fluid Flow, vol. 31, pp. 613–621, 2010.
  • Patankar, S. V., Numerical Heat Transfer and Fluid Flow, New York, McGraw Hill, 1980.
  • Al-Abidi, A. A., Mat, S., Sopian, K., Sulaiman, M. Y., and Mohammad, A. T., CFD Applications for Latent Heat Thermal Energy Storage: Review, Renewable and Sustainable Energy Reviews, vol. 20, pp. 353–363, 2013.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.