Economic Analaysis of Combined Packed Bed Energy Storage and Solar Collector Ssystem

ANTHONY ADEMOLA ADEYANJU

Abstract


This study carried out the economic analysis ofcombined packed bed energy storage and solar collector system. Spherical shapedconcrete of diameter 0.11m, 0.08m and 0.065m were used in this analysis over anair flow rate of 0.0094, 0.012, 0.014, 0.017, 0.019, 0.021, 0.024, 0.026,0.028, 0.031, 0.033, 0.035, 0.038, 0.040, 0.042 and 0.045m3/s. It was discovered that spherical shaped concrete ofsize 0.065m diameter has the highest blower cost of $TT37.83/day at 0.045m3/sdue to low porosity and high pressure drop while concrete size 0.11m diameter has the lowest blower cost of$TT0.16/day at 0.0094m3/s.Also,spherical shaped concrete of size 0.065m diameter has the highest storagesystem daily cost of $TT38.83/day at 0.045m3/s while concrete size 0.11mdiameter has the lowest daily cost of $TT1.16/day at 0.0094m3/s.

Keywords


Economic analysis, Concrete, Packed-bed, Storage system, Solar collector

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References


Krieth, F and D.Y. Goswami. 2007. Handbook of Energy Efficiency and Renewable Energy. CRC Press.

Thumann, A. and S.C. Dunning. 2008. Plant Engineers and Managers Guide to Energy Conservation. The Fairmont Press, Inc., 9th edition, 2008.

Vanek, M. F. and L.D. Albright. 2008. Energy Systems Engineering - Evaluation and Implementation. The McGraw-Hill Companies, Inc.

Choudhury, C; P. M. Chauhan and H. P. Garg. 1995. Economic Design of a Rock Bed Storage Device for Storing Solar Thermal Energy. Journal of Solar Energy 55: 29 – 37.

Duffie, J. A., and W. A. Beckman. 2006. Solar Engineering of Thermal Processes. New York: John Wiley.

Tan, H. and W. W. S. Charters. 1969. Effect of Thermal Entrance Region on Turbulent Forced Convective Heat Transfer for an Isometrically Heated Rectangular Duct with Uniform Heat Flux. Journal of Solar Energy 12.

Coutier, J. and E. Farber. 1982. Two Applications of a Numerical Approach of Heat-Transfer Process within Rock Beds. Journal of Solar Energy 29 (6): 451- 462




DOI (PDF): https://doi.org/10.20508/ijrer.v3i4.923.g6224

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