Title :
Thermal transfer simulating for concentrator photovoltaic module under concentration condition
Author :
Ota, Yoshiharu ; Nagai, Hiroto ; Araki, Kotaro ; Nishioka, Kazuhiro
Author_Institution :
Univ. of Miyazaki, Miyazaki, Japan
Abstract :
Under concentration conditions, it is important to manage the operating temperature of a concentrator photovoltaic (CPV) module, because a high-density solar energy enters into the solar cell. We measured the temperature of the CPV module. In outdoor operation, the back surface temperature of the CPV module was 6.2 K lower than aluminum stage temperature. Moreover, we developed a thermal transfer model for the CPV module and calculated the temperature in CPV module as functions of the thermal resistance and the heat transfer coefficient using a thermal transfer simulator. The simulation results showed that the lower thermal resistance between the solar cell and the back surface and higher heat transfer coefficient of back surface were effective for the reduction of operating temperature. The estimated heat transfer coefficient was comparatively near with the theoretical value. By using the developed model, we can estimate the operating temperature in concentrating operation.
Keywords :
III-V semiconductors; heat transfer; solar absorber-convertors; solar cells; thermal resistance; CPV module; aluminum stage temperature; back surface; concentration condition; concentrator photovoltaic module; heat transfer coefficient; multijunction III-V-element-based solar cell; solar cell; thermal resistance; thermal transfer model; thermal transfer simulator; Aluminum; Heat transfer; Photovoltaic cells; Surface resistance; Temperature; Temperature measurement; Thermal resistance; cell temperature; concentrator photovoltaic module; conversion efficiency; equivalent circuit simulation; thermal transfer model;
Conference_Titel :
Photovoltaic Specialists Conference (PVSC), 2013 IEEE 39th
Conference_Location :
Tampa, FL
DOI :
10.1109/PVSC.2013.6744192