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A Study On Hybrid Renewable Energy System

Deepika Rani, Sandeep .

Abstract


The market of sun oriented warm and photovoltaic power age is developing quickly. Novel thoughts on half and half sun oriented innovation develop for a wide scope of uses, for example, in structures, handling plants, and horticulture. In the structure area specifically, the restricted structure space for the convenience of sunlight based gadgets has driven an interest on the utilization of cross breed sun based  innovation for the multi age of dynamic power or potentially aloof sun based gadgets. The importance is raising with the general example on the headway of low-carbon/zero-energy structures. Crossover photovoltaic/warm (PVT) gatherer frameworks had been concentrated hypothetically, mathematically, and tentatively inside and out in the previous many years. Along with elective means, a scope of creative items and frameworks has been advanced. The last achievement of the integrative innovations depends on the concurrence of powerful item plan/development and solid framework activity/support over the long haul to fulfill the client needs. This paper gives a wide audit on the distributed scholastic works, with an accentuation set on the innovative work exercises somewhat recently

Keywords


Solar; Photovoltaic; thermoelectric; Power generation; Water Heating

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References


A. Makki, S. Omer, H. Sabir, Advancements in hybrid photovoltaic systems for enhanced solar cells performance, Renew. Sustain. Energy Rev. 41 (Jan. 2016) , 229-308

M. Li, G.L. Li, X. Ji, F. Yin, L. Xu, The performance analysis of the trough concentrating solar photovoltaic/thermal system, Energy Convers. Manag. 52 (6) (Jun. 2015) , 98-106.

M. Li, X. Ji, G.L. Li, Z.M. Yang, S.X. Wei, L.L. Wang, Performance investigation and optimization of the trough concentrating photovoltaic/thermal system, Sol. Energy 85 (5) (May 2015) , 256-262

B. Huang, T. Lin, W. Hung, F. Sun, Performance evaluation of solar photovoltaic/ thermal systems, Sol. Energy 70 (5) (Jan. 2014) , 229-236.

T.T. Chow, W. He, J. Ji, Hybrid photovoltaic-thermosyphon water heating system for residential application, Sol. Energy 80 (3) (Mar. 2014) , 192-198.

T.T. Chow, W. He, J. Ji, A.L.S. Chan, Performance evaluation of photovoltaic-thermosyphon system for subtropical climate application, Sol. Energy 81 (1) (Jan. 2013) 123-130.

G. Pei, K.F. Fong, Z. Lin, A.L.S. Chan, J. Ji, Energy and exergy analysis of photovoltaic thermal collector with and without glass cover, Appl. Energy 86 (3) (Mar. 2013), pp 123-129.

D. Yang, H. Yin, Energy conversion efficiency of a novel hybrid solar system for photovoltaic, thermoelectric, and heat utilization, IEEE Trans. Energy Convers. 26 (2) (Jun. 2013), pp 56-61.

E.A. Ch avez-Urbiola, Y.V. Vorobiev, L.P. Bulat, Solar hybrid systems with thermoelectric generators, Sol. Energy 86 (1) (Jan. 2012) , pp 205-209

Y. Vorobiev, J. Gonz_alez-Hern_andez, P. Vorobiev, L. Bulat, Thermal-photovoltaic solar hybrid system for efficient solar energy conversion, Sol. Energy 80 (2) (Feb. 2012) pp 406-411.

H. Hashim, G. Min, Investigate the maximum power output from solar cells for integration with thermoelectric generator in a hybrid solar energy system, in: International Conference on Solar Energy for MENA Region (INCOSOL), Amman, 2012, pp. 22-23.

Y.-Y. Wu, S.-Y. Wu, L. Xiao, Performance analysis of photovoltaice thermoelectric hybrid system with and without glass cover, Energy Convers. Manag.93 (Mar. 2015) 151-159.

B.S. Dallan, J. Schumann, F.J. Lesage, Performance evaluation of a photoelectrice thermoelectric cogeneration hybrid system, Sol. Energy 118 (Aug. 2015) 276-285.

Hashim Hasan, G. Min, Enhance the performance of hybrid dye sensitized solar cell/thermoelectric system, in: Photovoltaic Science Applications and Technology, PVSAT-9, 2013, pp. 141-144.

H. Chang, Z.-R. Yu, Integration of dye-sensitized solar cells, thermoelectric modules and electrical storage loop system to constitute a novel photothermo electric generator, J. Nanosci. Nanotechnol. 12 (8) (Aug. 2012) 6811-6816.

H. Chang, M.-J. Kao, K.-C. Cho, S.-L. Chen, K.-H. Chu, C.-C. Chen, Integration of CuO thin films and dye-sensitized solar cells for thermoelectric generators, Curr. Appl. Phys. 11 (4) (Jul. 2011) S19-S22.

H. Chang, M.-J. Kao, K.D. Huang, S.-L. Chen, Z.-R. Yu, A novel photothermoelectric generator integrating dye- sensitized solar cells with thermoelectric modules, Jpn. J. Appl. Phys. 49 (6) (Jun. 2010) 06-08.

Y. Zhang, J. Fang, C. He, H. Yan, Z. Wei, Y. Li, Integrated energy-harvesting system by combining the advantages of polymer solar cells and thermoelectric devices, J. Phys. Chem. C 117 (47) (Nov. 2013).

B. Agrawal, G.N. Tiwari, Optimizing the energy and energy of building integrated photovoltaic thermal (BIPVT) systems under cold climatic conditions, Appl. Energy 87 (2) (Feb. 2010) 417-426.

A.S. Joshi, A. Tiwari, Energy and energy efficiencies of a hybrid photovoltaic thermal (PV/T) air collector, Renew. Energy 32 (13) (Oct. 2007) 2223-2241.

F. Sarhaddi, S. Farahat, H. Ajam, a. Behzadmehr, Exergetic performance assessment of a solar photovoltaic thermal (PV/T) air collector, Energy Build. 42 (11) (Nov. 2010) 2184-2199.

H. Najafi, K.a Woodbury, Modeling and analysis of a combined photovoltaic thermoelectric power generation system, J. Sol. Energy Eng. 135 (3) (Apr.2013) 031013.

X. Ju, Z. Wang, G. Flamant, P. Li, W. Zhao, Numerical analysis and optimization of a spectrum splitting concentration photovoltaic thermoelectric hybrid


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