Experimental Study of the Thermal Performance of a Sensitive Solar Energy Storage System on a Rock Bed (Granite) for a Drying Application

Salifou Tera, Souleymane Sinon, Kayaba Haro, O. Sanogo, S. Kam
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Abstract

The use of solar energy is hampered by the intermittency of the resource and the constraints of storing the thermal form of this energy. The processes using this resource are therefore faced with problems of continuity of the process. To remedy this, this work proposes to develop a device for the accumulation of solar thermal energy by a sensitive storage system on a rock bed. A solar thermal energy storage system has been developed and experimentally studied with a view to coupling it to a solar dryer. The thermal performance of the system was evaluated in terms of temporal distribution of bed temperature, total energy stored, total energy discharged, charging efficiency, discharging efficiency. The results obtained indicate that the stratification in the storage system decreases in the afternoon due to the reduction of solar radiation and the output temperature of the solar collector. This contributes to a decrease in the thermal performance of the storage system. The charging efficiency obtained is 76.8%, the discharging efficiency 44.4%. The results also indicate that out of 4.7 MJ of total stored energy almost 89% or 4.17% was recovered during the discharge phase which is interesting for solar dryers.
用于干燥的岩床(花岗岩)敏感太阳能储能系统热性能的实验研究
太阳能的使用受到资源的间歇性和储存这种能量的热形式的限制的阻碍。因此,使用这种资源的进程面临着进程连续性的问题。为了解决这个问题,本工作提出了一种装置,通过在岩石床上的敏感存储系统来积累太阳能。开发了一种太阳能蓄热系统,并对其与太阳能干燥机的耦合进行了实验研究。从床温的时间分布、总储能、总放电能量、充电效率、放电效率等方面评价了系统的热性能。结果表明,由于太阳辐射的减少和太阳能集热器输出温度的降低,在下午,存储系统中的分层减少。这将导致存储系统的热性能下降。充电效率为76.8%,放电效率为44.4%。结果还表明,在4.7 MJ的总存储能量中,近89%或4.17%在放电阶段被回收,这对太阳能干燥器来说是有趣的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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