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Modelling and Siémulation of Sustainable Thermal Energy Storage System for Concentrating Solar Power (CSP) Plant using Eco-Materials

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dc.contributor.author Bagre, Boubou
dc.contributor.author Boukar, Makinta
dc.contributor.author Muritala, Ibrahim Kolawole
dc.contributor.author Daho, Tizane
dc.contributor.author Nébié, Jacques
dc.contributor.author Dabilgou, Tére
dc.contributor.author Mortey, Eric Mensah
dc.contributor.author Ouarma, Issoufou
dc.contributor.author Tera, Salifou
dc.contributor.author Korsaga, Armand
dc.contributor.author Adamou, Rabani
dc.date.accessioned 2026-08-12T14:30:03Z
dc.date.available 2026-08-12T14:30:03Z
dc.date.issued 2023-01-23
dc.identifier.citation Boubou Bagré, Makinta Boukar, Ibrahim Kolawole Muritala, Tizane Daho, Jacques Nébié, Téré Dabilgou, Eric Mensah Mortey, Issoufou Ouarma, Salifou Tera, Armand Korsaga and Adamou Rabani, Modelling and simulation of a sustainable thermal energy storage system for concentrating solar power (CSP) plant using eco-materials, JP Journal of Heat and Mass Transfer 31 (2023), 147-161. http://dx.doi.org/10.17654/0973576323010 en_US
dc.identifier.uri http://197.159.135.214/jspui/handle/123456789/1353
dc.description A Publication submitted to the West African Science Service Centre on Climate Change and Adapted Land Use and the Université Abdou Moumouni, Niger in partial fulfillment of the requirements for the degree of Master of Science Degree in Climate Change and Energy en_US
dc.description.abstract This paper addresses industry sector like concentrating solar power (CSP) plant used for electricity generation. Up till now, this technology is not affordable for developing countries where CSP potential is good. To contribute on the improvement of CSP technology, ceramic balls using sand clay and industry waste (coal bottom ash) have been developed for sensible heat storage. In this paper, the one dimensional two phase model has been chosen to predict the behaviour of the ceramic oil and vegetal oil (Jatropha curcas oil) thermal energy storage system. The results show that high porosity (> 45%), filler material with big size and high fluid velocity are not required for thermal energy storage because of the degradation of the thermocline. Taking into account a tank ratio H/D of 2.5 and a total stored energy of 2MWhth , the results show a possibility to reach a discharge time of 9 hours with discharge efficiency of more than 90%. The thermocline thickness variation under the variation of fluid velocity, particle diameter, tank porosity shows that for an effective thermal energy storage system, the thermocline maximal thickness is around one third of the packed-bed height. To conclude, the developed ceramic ball and Jatropha curcas oil could be considered as an innovative and cost-effective for thermal energy storage in CSP or other applications like solar cooker. en_US
dc.description.sponsorship The Federal Ministry of Research, Technology and Space (BMFTR) en_US
dc.language.iso en en_US
dc.publisher WASCAL en_US
dc.subject Sustainability en_US
dc.subject Thermal energy en_US
dc.subject Solar power en_US
dc.title Modelling and Siémulation of Sustainable Thermal Energy Storage System for Concentrating Solar Power (CSP) Plant using Eco-Materials en_US
dc.type Article en_US


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