Theoretical Study of The Use of Lfscs in Terms of Energy for Textile Factories: The Example of Saint Louis in Senegal

Issa Sy, İ. Üçgül
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Abstract

Senegal has a high potential for solar energy but mainly depends on fossil energy resources. Industries, particularly the textile sector, could benefit from the use of alternative energy sources to reduce costs and improve the environmental footprint. This study focuses on the use of linear Fresnel solar collectors (LFSC) coupled with an Organic Rankine Cycle (ORC) system to produce energy in textile mills, particularly in Saint Louis. The objective was to size a Fresnel solar array and evaluate its energy production for two different periods: the sunniest month (April) and the least sunny month (August). The findings demonstrate the substantial solar potential of the region, with significant sunshine throughout the year. The maximum direct solar radiation recorded on August 15 and April 25 was 898 W/m2 and 945 W/m2, respectively, at noon. The maximum energy production for one row in August is 24.4 kWh, and in April, it reaches 25.7 kWh. It is noted that, for the use of the Fresnel linear system, the number of rows will depend on the energy needs of the textile factory.
纺织工厂在能源方面使用Lfscs的理论研究:以塞内加尔圣路易斯市为例
塞内加尔的太阳能潜力很大,但主要依赖化石能源资源。工业,特别是纺织部门,可以从使用替代能源来降低成本和改善环境足迹中获益。本研究的重点是使用线性菲涅耳太阳能集热器(LFSC)与有机朗肯循环(ORC)系统在纺织厂生产能源,特别是在圣路易斯。目的是确定菲涅耳太阳能阵列的尺寸,并评估其在两个不同时期的能源产量:阳光最充足的月份(4月)和阳光最少的月份(8月)。研究结果表明,该地区全年日照充足,具有巨大的太阳能潜力。8月15日和4月25日正午太阳直接辐射最大值分别为898 W/m2和945 W/m2。8月份单排最大发电量为24.4千瓦时,4月份达到25.7千瓦时。值得注意的是,对于使用菲涅耳线性系统,行数将取决于纺织厂的能源需求。
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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