利比亚太阳能池研究进展

A. Ramadan, K. R. Agha
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引用次数: 1

摘要

在过去的几十年里,太阳能和可再生能源的应用得到了极大的兴趣和关注。二氧化碳排放、空气污染、臭氧层损耗、全球变暖和环境问题等问题,都提出了获得清洁和安全能源的必要性。为此,利比亚太阳能研究中心(CSERS)在太阳能和可再生能源的不同应用方面进行了大量的研究工作。其中一项重要的活动是太阳能梯度太阳能池技术。它是一种有效的太阳能收集和储存系统,提供了一种相对简单和经济的低品位能源的方法,具有年存储周期的优势。本文对CSERS课题组开展的太阳能池研究进行了综述。Tajoura的实验太阳能池(TESP)被设计为一个实验设施,可以研究池塘性能的各个方面。它由太阳能研究中心与瑞士一家公司合作建造,占地面积约830平方米,深度2.5米,外加一个面积105平方米,深度1.5米的蒸发池,配备了所有必要的设备和测量控制系统。本文还介绍了MSF海水淡化装置与TESP太阳能池相结合的运行经验。最后,讨论了影响太阳池热稳定性的其他因素。
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Review on Solar Ponds in Libya
Solar and renewable energies applications got a great interest and attention in the last few decades. Problems related to CO2 emissions, air pollution, Ozone layer depletion, global warming and environment issues raise the necessity for getting a clean and safe energy. For this purpose, the Center for Solar Energy Studies (CSERS) in Libya conducted a huge research work in different applications for solar and renewable energies. One of these important activities is the Solar Gradient Solar Pond technology. It is an effective solar energy collection and storage system which presents a relatively simple and economic method of providing low grade energy with the advantage of annual storage cycle.This paper presents a general review on researches and studies on solar ponds that were conducted by CSERS research team. Tajoura’s Experimental Solar Pond (TESP) is designed as an experimental facility enabling the investigation of various aspects of pond performance. It is constructed by the Center for Solar Energy Studies, in joint cooperation with a Swiss company, with a surface area of about 830 m2, and a depth of 2.5 m, coupled with an evaporative pond of 105 m2 area and 1.5 m deep, equipped with all necessary equipments and measuring control system.The paper also shows the experience of operating MSF desalination unit coupled with TESP solar pond. Finally, other factors affecting the solar pond’s thermal stability were also discussed.
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