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Date of download: 7/9/2016 Copyright © ASME. All rights reserved. From: Statistical Analysis of Surface Nanopatterned Thin Film Solar Cells Obtained by.

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Presentation on theme: "Date of download: 7/9/2016 Copyright © ASME. All rights reserved. From: Statistical Analysis of Surface Nanopatterned Thin Film Solar Cells Obtained by."— Presentation transcript:

1 Date of download: 7/9/2016 Copyright © ASME. All rights reserved. From: Statistical Analysis of Surface Nanopatterned Thin Film Solar Cells Obtained by Inverse Optimization J. Heat Transfer. 2013;135(9):091501-091501-8. doi:10.1115/1.4024464 Three-dimensional model of thin film solar cell with metallic nanochip grating used for near field radiation calculation Figure Legend:

2 Date of download: 7/9/2016 Copyright © ASME. All rights reserved. From: Statistical Analysis of Surface Nanopatterned Thin Film Solar Cells Obtained by Inverse Optimization J. Heat Transfer. 2013;135(9):091501-091501-8. doi:10.1115/1.4024464 Spectral absorptivity (mean and standard deviation) for the textured and bare silicon based on error samples Figure Legend:

3 Date of download: 7/9/2016 Copyright © ASME. All rights reserved. From: Statistical Analysis of Surface Nanopatterned Thin Film Solar Cells Obtained by Inverse Optimization J. Heat Transfer. 2013;135(9):091501-091501-8. doi:10.1115/1.4024464 Average solar irradiance for different hours in the whole year Figure Legend:

4 Date of download: 7/9/2016 Copyright © ASME. All rights reserved. From: Statistical Analysis of Surface Nanopatterned Thin Film Solar Cells Obtained by Inverse Optimization J. Heat Transfer. 2013;135(9):091501-091501-8. doi:10.1115/1.4024464 Average solar irradiance for different months in the whole year Figure Legend:

5 Date of download: 7/9/2016 Copyright © ASME. All rights reserved. From: Statistical Analysis of Surface Nanopatterned Thin Film Solar Cells Obtained by Inverse Optimization J. Heat Transfer. 2013;135(9):091501-091501-8. doi:10.1115/1.4024464 Spectral absorptivity (mean and standard deviation) of textured and bare silicon for uniform incident angle distribution Figure Legend:

6 Date of download: 7/9/2016 Copyright © ASME. All rights reserved. From: Statistical Analysis of Surface Nanopatterned Thin Film Solar Cells Obtained by Inverse Optimization J. Heat Transfer. 2013;135(9):091501-091501-8. doi:10.1115/1.4024464 Empirical pdf of the absorptivity enhancement factor of silicon in the realized cell for all time and error samples Figure Legend:

7 Date of download: 7/9/2016 Copyright © ASME. All rights reserved. From: Statistical Analysis of Surface Nanopatterned Thin Film Solar Cells Obtained by Inverse Optimization J. Heat Transfer. 2013;135(9):091501-091501-8. doi:10.1115/1.4024464 Empirical pdf of the spectral absorptivity of bare and textured silicon for the realized cell based on all time and error samples Figure Legend:

8 Date of download: 7/9/2016 Copyright © ASME. All rights reserved. From: Statistical Analysis of Surface Nanopatterned Thin Film Solar Cells Obtained by Inverse Optimization J. Heat Transfer. 2013;135(9):091501-091501-8. doi:10.1115/1.4024464 Absorptivity enhancement factor (mean and standard deviation) of silicon in the realized cell pattern for different hours computed based on the year around irradiance uncertainties and all error samples Figure Legend:

9 Date of download: 7/9/2016 Copyright © ASME. All rights reserved. From: Statistical Analysis of Surface Nanopatterned Thin Film Solar Cells Obtained by Inverse Optimization J. Heat Transfer. 2013;135(9):091501-091501-8. doi:10.1115/1.4024464 Spectral absorptivity (mean and standard deviation) of the bare and textured silicon in the realized cell for different hours computed based on the year around irradiance uncertainties and all error samples Figure Legend:

10 Date of download: 7/9/2016 Copyright © ASME. All rights reserved. From: Statistical Analysis of Surface Nanopatterned Thin Film Solar Cells Obtained by Inverse Optimization J. Heat Transfer. 2013;135(9):091501-091501-8. doi:10.1115/1.4024464 Absorptivity enhancement factor (mean and standard deviation) of silicon in the realized cell pattern for different months computed based on the year around irradiance uncertainties and all error samples Figure Legend:

11 Date of download: 7/9/2016 Copyright © ASME. All rights reserved. From: Statistical Analysis of Surface Nanopatterned Thin Film Solar Cells Obtained by Inverse Optimization J. Heat Transfer. 2013;135(9):091501-091501-8. doi:10.1115/1.4024464 Spectral absorptivity (mean and standard deviation) of the bare and textured silicon in the realized cell for different months computed based on the year around irradiance uncertainties and all error samples Figure Legend:

12 Date of download: 7/9/2016 Copyright © ASME. All rights reserved. From: Statistical Analysis of Surface Nanopatterned Thin Film Solar Cells Obtained by Inverse Optimization J. Heat Transfer. 2013;135(9):091501-091501-8. doi:10.1115/1.4024464 Empirical pdf of the absorptivity enhancement factor of silicon for the optimal geometry, based on year around irradiance and incident angle uncertainties Figure Legend:

13 Date of download: 7/9/2016 Copyright © ASME. All rights reserved. From: Statistical Analysis of Surface Nanopatterned Thin Film Solar Cells Obtained by Inverse Optimization J. Heat Transfer. 2013;135(9):091501-091501-8. doi:10.1115/1.4024464 Absorptivity enhancement factor (mean and standard deviation) of the optimal geometry for different hours computed based on year around solar irradiance and incident angle uncertainties Figure Legend:

14 Date of download: 7/9/2016 Copyright © ASME. All rights reserved. From: Statistical Analysis of Surface Nanopatterned Thin Film Solar Cells Obtained by Inverse Optimization J. Heat Transfer. 2013;135(9):091501-091501-8. doi:10.1115/1.4024464 Absorptivity enhancement factor (mean and standard deviation) of the optimal geometry for different months computed based on year around solar irradiance and incident angle Figure Legend:


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