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040 _aCY-NiCIU
_beng
_cCY-NiCIU
_erda
041 _aeng
090 _aYL 2464
_bM86 2022
100 1 _aMuomb, Laurens Kasong
245 1 0 _aDESIGN AND PERFORMANCE ANALYSIS OF THE FLOATING PHTOVOLTAIC POWER PLANT /
_cLAURENS KASONG MUOMB; SUPERVISOR: Assist. Prof. Dr. Mehemet ŞENOL
264 _c2022
300 _a68 sheets:
_bcharts;
_c31 cm.
_eIncludes CD
336 _2rdacontent
_atext
_btxt
337 _2rdamedia
_aunmediated
_bn
338 _2rdacarrier
_avolume
_bnc
502 _aThesis (MSc) - Cyprus International University. Institute of Graduate Studies and Research Electrical and Electronical Engineering
504 _aIncludes bibliography (sheets 54-55)
520 _aABSTRACT This thesis is a research study that studies the design and feasibility analysis (Energetic and economic) of a new technology that is called a Floating PV power plant. Unlike the Land-Based PV power plant, it is mounted on a floating system and is installed up on water. It uses the mechanism of floating to be upon water in water bodies such as artificial reservoirs, mining pools, swimming pools, rivers, streams, etc. This floating structure is fixed upon water using a mooring line and attached in a stable position using an anchoring system. This power system generates electrical energy through the conversion of sunbeams into electricity with the use of PV modules that obey the phenomenon of the photovoltaic effect (which is a physical and chemical phenomenon that generates voltage and electric current when the material is used such as photovoltaic module is exposed to sunlight). Using a simulation software called PV*SOL software Floating and Land-Based PV power plant is designed and simulated with output results. In addition to this, a comparison analysis between FPV and LBPV is provided based on their outcome result in terms of economic and energetic parameters. Keywords: Anchoring, Floating, FPV, LBPV, Mooring
650 0 _aAnchors
_vDissertations, Academic
650 0 _aPower-plants
_vDissertations, Academic
700 1 _aŞenol, Mehmet
_esupervisor
942 _2ddc
_cTS
999 _c289044
_d289044