研究目的
To propose a new assessment method for evaluating and comparing photovoltaic module cooling techniques based on the temperature dependent photovoltaic module’s power ratio, aiming to simplify the performance comparison among different coolers without the need for repeated calculations for different reference powers.
研究成果
The proposed temperature dependent photovoltaic power ratio method simplifies the performance evaluation and comparison of photovoltaic module cooling techniques by reducing the computational work and eliminating the need for repeated calculations for different reference powers. The method is validated through experimental results, showing good agreement with the existing method. It offers a time-efficient solution for designers and researchers in the field of photovoltaic module cooling techniques.
研究不足
The study is limited to the evaluation of photovoltaic module cooling techniques under specific test conditions, including standard test conditions for photovoltaic modules. The applicability of the proposed method may vary with different photovoltaic module types and cooling techniques not covered in the study.
1:Experimental Design and Method Selection:
The study involves theoretical and experimental analysis to validate the proposed temperature dependent photovoltaic power ratio method. It includes the derivation of the new term and comparison with the existing method.
2:Sample Selection and Data Sources:
The study uses data from photovoltaic modules with different cooling techniques, including natural and forced convection cooling, under various operating conditions.
3:List of Experimental Equipment and Materials:
Photovoltaic modules (e.g., CS6U340P, CS6U345P, CS6U350P, PV-MLU255HC, PV-MLU250HC), cooling techniques (e.g., parallel tubes, plate heat exchanger, ellipse flow design), and measurement instruments for temperature, solar radiation, and electrical output.
4:Experimental Procedures and Operational Workflow:
The study involves measuring the performance of photovoltaic modules with and without cooling techniques under standard test conditions and varying solar radiation and temperature levels.
5:Data Analysis Methods:
The study compares the theoretical calculations using the proposed method with experimental measurements to validate the method's accuracy and efficiency.
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