研究目的
To improve the thermal conductivity of PCM and, in return, lessen the increase in the temperature of the CPV cell for a wide range of operating conditions by using multi-cavities with different weight fractions of nanoparticles in PCM-based heat sinks.
研究成果
The CPV-NPCM system, with a quintuple-cavity parallel configuration filled with n-octadecane PCM loaded with 5 wt % of Graphene nano-additives, achieves the best thermal performance in comparison with other cases. This CPV-NPCMs system is recommended for deployment in residential and industrial applications to provide electrical power and thermal energy.
研究不足
The significant barrier in using PCMs is that most PCMs have a stumpy thermal conductivity that often results in a poor heat transfer from the PV cell to the PCMs.
1:Experimental Design and Method Selection:
Includes the overall experimental design rationale, the theoretical models or algorithms employed, and detailed procedures of the experimental methods.
2:Sample Selection and Data Sources:
Specifies the samples or datasets used in the experiment, including selection criteria and data acquisition methods.
3:List of Experimental Equipment and Materials:
Enumerates the required instruments, devices, and materials, along with their specifications and intended uses.
4:Experimental Procedures and Operational Workflow:
Provides a step-by-step description of the experimental process, covering equipment setup, data collection techniques, and control of variables during the experiment.
5:Data Analysis Methods:
Explains the approach for analyzing experimental data, including statistical techniques and software tools utilized.
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