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Based on the heat transfer characteristics of absorber plate of a solar collector and the heat transfer effectiveness number of NTU method used for heat exchanger analysis, a new theoretical model for analyzing the thermal performance of at plate solar collector integrated with heat pipes has been put forward and the results have been validated by comparisons with the experimental results available in the literature. The theoretical model has been analysed and the results have been obtained for the specified values of input parameters by developing a MATLAB programme. The in uence of relevant…mehr

Produktbeschreibung
Based on the heat transfer characteristics of absorber plate of a solar collector and the heat transfer effectiveness number of NTU method used for heat exchanger analysis, a new theoretical model for analyzing the thermal performance of at plate solar collector integrated with heat pipes has been put forward and the results have been validated by comparisons with the experimental results available in the literature. The theoretical model has been analysed and the results have been obtained for the specified values of input parameters by developing a MATLAB programme. The in uence of relevant parameters on the thermal performance of at plate solar collector integrated with heat pipes has been discussed. The proposed theoretical model can be helpful for a designer to design a new solar heating system integrated with the heat pipes for a better performance.
Autorenporträt
A team of diversified researchers have found an opportunity to share their views and expertise for better understanding thermal design and operational related parameters studied thoroughly and presented in book form. Anurag Joshi and Hemant Raj Singh are working with Manipal University Jaipur and Chitresh Nayak is working with OIST Bhopal.