ºÝºÝߣshows by User: marcosotte / http://www.slideshare.net/images/logo.gif ºÝºÝߣshows by User: marcosotte / Tue, 09 Jul 2013 16:42:12 GMT ºÝºÝߣShare feed for ºÝºÝߣshows by User: marcosotte Design, test and mathematica modeling of parabolic trough solat collectors (PTC); PhD Thesys dissertation /slideshow/design-test-and-mathematica-modeling-of-parabolic-trough-solat-collectors-ptc-phd-thesys-dissertation/24073320 20120224dissertation02publicated-130709164212-phpapp01
Parabolic Trough Collectors are widespread in CSP applications. Their adoption is less developed in industrial heat demand applications. In the present thesis the design and test of two prototypes of PTC for the thermal loads in the range 80 - 250 °C is described. A mathematical model has also been developed to predict optical efficiency and thermal losses for any PTC. The model has been validated through comparison with the experimental results on the prototypes. Then it has been included in a custom-built simulation environment to predict yearly perfor- mances of a PTC field coupled with an industrial process heat demand. Energetic results are shown and final considerations are drawn for this application.]]>

Parabolic Trough Collectors are widespread in CSP applications. Their adoption is less developed in industrial heat demand applications. In the present thesis the design and test of two prototypes of PTC for the thermal loads in the range 80 - 250 °C is described. A mathematical model has also been developed to predict optical efficiency and thermal losses for any PTC. The model has been validated through comparison with the experimental results on the prototypes. Then it has been included in a custom-built simulation environment to predict yearly perfor- mances of a PTC field coupled with an industrial process heat demand. Energetic results are shown and final considerations are drawn for this application.]]>
Tue, 09 Jul 2013 16:42:12 GMT /slideshow/design-test-and-mathematica-modeling-of-parabolic-trough-solat-collectors-ptc-phd-thesys-dissertation/24073320 marcosotte@slideshare.net(marcosotte) Design, test and mathematica modeling of parabolic trough solat collectors (PTC); PhD Thesys dissertation marcosotte Parabolic Trough Collectors are widespread in CSP applications. Their adoption is less developed in industrial heat demand applications. In the present thesis the design and test of two prototypes of PTC for the thermal loads in the range 80 - 250 °C is described. A mathematical model has also been developed to predict optical efficiency and thermal losses for any PTC. The model has been validated through comparison with the experimental results on the prototypes. Then it has been included in a custom-built simulation environment to predict yearly perfor- mances of a PTC field coupled with an industrial process heat demand. Energetic results are shown and final considerations are drawn for this application. <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/20120224dissertation02publicated-130709164212-phpapp01-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> Parabolic Trough Collectors are widespread in CSP applications. Their adoption is less developed in industrial heat demand applications. In the present thesis the design and test of two prototypes of PTC for the thermal loads in the range 80 - 250 °C is described. A mathematical model has also been developed to predict optical efficiency and thermal losses for any PTC. The model has been validated through comparison with the experimental results on the prototypes. Then it has been included in a custom-built simulation environment to predict yearly perfor- mances of a PTC field coupled with an industrial process heat demand. Energetic results are shown and final considerations are drawn for this application.
Design, test and mathematica modeling of parabolic trough solat collectors (PTC); PhD Thesys dissertation from Marco Sotte
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https://cdn.slidesharecdn.com/profile-photo-marcosotte-48x48.jpg?cb=1523542208 Five years of engineering studies, one working as proposal engineer, three as PhD candidate, one as Post-Doc researcher; in the meantime freelance in energy projects ... what have I learned? That the more you learn, the more realize how much you still have to learn, that energy is my professional world and that I want to know all about it. http://www.energetica.univpm.it/sotte_marco