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Characterization, Performance, and Efficiency Analysis of Hybrid Photovoltaic Thermal (PVT) Systems
by
Rashel, Masud Rana
, Tlemçani, Mouhaydine
, Janeiro, Fernando M.
, Hoque, Tania Tanzin
, Islam, Mahmudul
, Ahmed, Md Tofael
in
Alternative energy sources
/ Carbon
/ Cooling
/ Efficiency
/ efficiency analysis
/ Electricity
/ Emission standards
/ Emissions
/ Energy consumption
/ Energy management
/ Energy management systems
/ Energy resources
/ Fluids
/ Fossil fuels
/ Greenhouse gases
/ Heat exchangers
/ heat extraction
/ mathematical modeling
/ Methods
/ Photovoltaic cells
/ Photovoltaic power generation
/ Pipe
/ PVT system
/ Renewable resources
/ Solar energy
/ Steel, Stainless
/ Temperature
/ temperature variation
/ Thermal energy
2025
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Characterization, Performance, and Efficiency Analysis of Hybrid Photovoltaic Thermal (PVT) Systems
by
Rashel, Masud Rana
, Tlemçani, Mouhaydine
, Janeiro, Fernando M.
, Hoque, Tania Tanzin
, Islam, Mahmudul
, Ahmed, Md Tofael
in
Alternative energy sources
/ Carbon
/ Cooling
/ Efficiency
/ efficiency analysis
/ Electricity
/ Emission standards
/ Emissions
/ Energy consumption
/ Energy management
/ Energy management systems
/ Energy resources
/ Fluids
/ Fossil fuels
/ Greenhouse gases
/ Heat exchangers
/ heat extraction
/ mathematical modeling
/ Methods
/ Photovoltaic cells
/ Photovoltaic power generation
/ Pipe
/ PVT system
/ Renewable resources
/ Solar energy
/ Steel, Stainless
/ Temperature
/ temperature variation
/ Thermal energy
2025
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Characterization, Performance, and Efficiency Analysis of Hybrid Photovoltaic Thermal (PVT) Systems
by
Rashel, Masud Rana
, Tlemçani, Mouhaydine
, Janeiro, Fernando M.
, Hoque, Tania Tanzin
, Islam, Mahmudul
, Ahmed, Md Tofael
in
Alternative energy sources
/ Carbon
/ Cooling
/ Efficiency
/ efficiency analysis
/ Electricity
/ Emission standards
/ Emissions
/ Energy consumption
/ Energy management
/ Energy management systems
/ Energy resources
/ Fluids
/ Fossil fuels
/ Greenhouse gases
/ Heat exchangers
/ heat extraction
/ mathematical modeling
/ Methods
/ Photovoltaic cells
/ Photovoltaic power generation
/ Pipe
/ PVT system
/ Renewable resources
/ Solar energy
/ Steel, Stainless
/ Temperature
/ temperature variation
/ Thermal energy
2025
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Characterization, Performance, and Efficiency Analysis of Hybrid Photovoltaic Thermal (PVT) Systems
Journal Article
Characterization, Performance, and Efficiency Analysis of Hybrid Photovoltaic Thermal (PVT) Systems
2025
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Overview
Hybrid PVT systems simultaneously produce electrical energy using photovoltaic technology and thermal energy using a heat extraction method that collects induced heat from the module. The purpose of this work is to establish a PVT system based on characterization, efficiency study, and performance analysis for both an electrical and a thermal system. A mathematical analysis of the electrical, thermal, and optical model is performed to establish the proposed system. Three types of heat exchanger pipes, including stainless steel, aluminum, and copper, are considered for a heat transfer analysis of the system. The results include temperature profiling, a comparison of the PVT system’s different components, and an overall output and efficiency study for all of the mentioned pipes. Results show that the obtained electrical and thermal efficiency for stainless steel is 0.1653 and 0.237, respectively, for aluminum it is 0.16515 and 0.2401, respectively, and for copper it is 0.16564 and 0.24679, respectively. After comparison, it was found that the overall efficiency for stainless steel is 0.40234, for aluminum is 0.40526, and for copper is 0.41244. Thus, this study will enhance the opportunity to provide an effective hybrid PVT energy management system.
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