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Theoretical and Experimental Quantification of Solar Radiation through a Tracking System
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作者 Guy Christian Tubreoumya Eloi Salmwendé Tiendrebeogo +5 位作者 Tchardja Combary Téré dabilgou Jacques Nebié Boubou Bagré Alfa Oumar Dissa Antoine Bere 《Open Journal of Applied Sciences》 2024年第9期2648-2660,共13页
This work deals with the estimation of solar radiation through a solar tracker aimed at evaluating the effect of solar tracking on the solar deposit in Burkina Faso. Using a two-axis solar tracking system, we experime... This work deals with the estimation of solar radiation through a solar tracker aimed at evaluating the effect of solar tracking on the solar deposit in Burkina Faso. Using a two-axis solar tracking system, we experimentally measured solar radiation at our Joseph KI-ZERBO University site and compared it with that obtained by a numerical simulation run using Fortran programming software based on a mathematical model by Brichambaut. The results obtained from the mathematical and experimental studies show that, with a solar tracker, on a clear-sky day, solar irradiation is between 800 W·m−2 and 1000 W·m−2 between about 8 a.m. and 4 p.m., i.e. a duration of 8 hours of insolation. Analysis of the numerical and experimental results shows very good quantitative and qualitative agreement, with an average relative error of 18%. 展开更多
关键词 Tracking System Solar Radiation Dual Axis Energy Efficiency
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Hygrothermal Study of a House Made of Local Biosourced Materials Based on Clay: Experimental Study
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作者 Sayouba Sandwidi Abdoulaye Compaore +5 位作者 Kayaba Haro Téré dabilgou Souleymane Sinon Oumar Sanogo Jean Koulidiati Antoine Bere 《Open Journal of Applied Sciences》 CAS 2023年第1期60-75,共16页
The purpose of this study is to experimentally analyze the thermal behavior of the walls of a prototype experimental house. A Datalogger and thermocouples were used on the experimental house to determine the temperatu... The purpose of this study is to experimentally analyze the thermal behavior of the walls of a prototype experimental house. A Datalogger and thermocouples were used on the experimental house to determine the temperatures of the exterior and interior walls. Also, “MSR” type HygroPuce was used to determine the exterior and interior temperatures and relative humidity of the habitat. The results show that a wall made of bio-based materials with a mixture of “earth + Hibiscus cannabinus L. fibers” allows reducing the fluctuations of the interior temperatures. We observe the peaks of temperatures on the external walls at 11:00 am and for the interior walls, the peaks are observed at 5:00 pm. The maximum thermal phase shift between the peaks of the external and internal temperatures is about 7.5 hours, and the maximum damping factor is 0.9. Also, we note that the thermal performance of the material used in the design of the envelope of the house is determined by the improvement of the response of the envelope in front of the external thermal solicitations. 展开更多
关键词 Thermal Dephasing Damping Factor Thermal Comfort Bioclimatic House
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Effect of Adsorbent/Adsorbate Couple on the Performance of Adsorption Solar Refrigerator
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作者 Guy Christian Tubreoumya Eloi Salmwendé Tiendrebeogo +5 位作者 Oumar Bailou Téré dabilgou Belkacem Zeghmati Alfa Oumar Dissa Jean Koulidiati Antoine Bere 《Engineering(科研)》 2022年第3期95-112,共18页
This work presents a contribution to the study of the process of cold production by adsorption from solar energy. In this paper, we discuss a comparative study of the operation of a solar adsorption refrigerator using... This work presents a contribution to the study of the process of cold production by adsorption from solar energy. In this paper, we discuss a comparative study of the operation of a solar adsorption refrigerator using the silica gel-water couple and the zeolite-water couple through dynamic modeling and simulation. The mathematical model representing the evolution of heat and mass transfer at each component of the adsorption solar refrigerator has been developed. It appears from this study that the evolution of the temperature of the two adsorbents (zeolite and silica gel) is quasi-similar throughout the operating cycle. However, the maximum mass of water vapor adsorbed by the silicagel (0.24 kg/kg) is higher than that adsorbed by the zeolite (0.201 kg/kg). In the same way, the mass of water vapor cycled, obtained with the silicagel-water couple which is 0.14 kg/kg, is higher than that obtained with the zeolite-water couple which is 0.081 kg/kg. Therefore, the amount of cold produced 9.178 MJ and the solar coefficient of performance 0.378 obtained with the solar refrigerator using the silica gel-water couple, are better. 展开更多
关键词 Solar Cooling ADSORPTION ZEOLITE Silica Gel Water Heat and Mass Transfer
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