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Energy sustainability through integrated solar thermal systems

机译:通过集成的太阳能热系统实现能源可持续性

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Renewable energy resources are the pillars for energy sustainability. Topping those resources is solar energy. The problem with solar is the interruption during the night and the cloudy and rainy times. Many techniques have been proposed to enhance solar utilization and minimize the effect of solar interruption. This paper summarizes the author's experience on enhancing the solar thermal systems by means of integration with either other energy resources or integration with thermal energy storages. On solar drying applications, a solar dryer was integrated with a thermal backup unit. The experimental results on hybrid drying showed an enhancement of 64.1% for EFB, and 61.1% for chilli, compared with open solar mode drying. Solar water heating was found to be sufficient to supply hot water during the day and night time by integration with thermal energy storage. The system was able to discharge thermal energy and maintain the heating of water to the next morning. On large scale and industrial application, a modified inclined solar chimney was enhanced via integration with wasted flue gas. By this technique, the system was brought to operate 24 hours a day. At 800 W/m~2 solar intensity, the efficiency was enhanced to over 0.6% in the case of hybrid operation compared to less than 0.3% for solar mode only. Research results demonstrate that integrated solar thermal systems can contribute effectively in sustainability of clean energy resources. The results obtained, so far, from this research program are encouraging; and it is highly recommended to further investigate the solar hybrid and solar integration for energy sustainability from the sun.
机译:可再生能源是能源可持续性的支柱。最重要的是太阳能。太阳能的问题是在夜间以及阴天和雨天的中断。已经提出了许多技术来提高太阳能利用并最小化太阳能中断的影响。本文总结了作者通过与其他能源集成或与热能存储集成来增强太阳能热系统的经验。在太阳能干燥应用中,太阳能干燥器与热备份单元集成在一起。与开放式太阳能模式干燥相比,混合干燥的实验结果表明,EFB和辣椒的干燥度分别提高了64.1%和61.1%。通过集成热能存储,发现太阳能热水足以在白天和晚上提供热水。该系统能够释放热能,并保持水加热到第二天早晨。在大规模和工业应用中,通过与浪费的烟道气集成,改进了改进的倾斜太阳能烟囱。通过这种技术,该系统一天24小时均可运行。在800 W / m〜2的太阳能强度下,混合动力模式的效率提高到0.6%以上,而仅太阳能模式的效率不到0.3%。研究结果表明,集成的太阳能热系统可以有效促进清洁能源的可持续性。迄今为止,从该研究计划中获得的结果令人鼓舞;强烈建议进一步研究太阳能混合动力和太阳能集成技术,以确保太阳能的可持续性。

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