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Turbo-assisted direct solar air heater for medium temperature industrial processes using Linear Fresnel Collectors. Assessment on daily and yearly basis

机译:涡轮辅助直接太阳能空气加热器,用于使用线性菲涅耳收集器的中温工业流程。 每日和每年进行评估

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The study analyzes an innovative concentrating solar thermal system aimed at the direct production of hot air for industrial applications. Air is heated inside linear Fresnel collectors in an open to atmosphere circuit, not requiring the use of a primary heat transfer fluid and a heat exchanger, with their associated cost and maintenance. Matching an automotive turbocharger with the solar field avoids auxiliary energy consumption for pumping the airflow. The detailed quasi-steady numerical model implemented, including commercial collector and turbocharger technical features, allows to scrutinize the daily and yearly operating time profile of a medium scale plant with a 633.6 m(2) solar field. Considering the typical meteorological year of the selected location (Madrid, Spain), the numerical results indicate that hot air is provided at a remarkable quasi-constant temperature between 300 degrees C and 400 degrees C despite the solar variations, delivering 330 MW h per year without overheating the receiver evacuated tubes. (C) 2021 Elsevier Ltd. All rights reserved.
机译:该研究分析了一种创新的集中太阳能热系统,旨在直接生产用于工业应用的热空气。空气在线性菲涅耳收集器中加热到大气回路,不需要使用主要传热流体和热交换器,其相关成本和维护。将汽车涡轮增压器与太阳能领域匹配避免避免泵送气流的辅助能耗。实施的详细准稳态数值模型包括商业收集器和涡轮增压器技术特征,允许仔细审查中等规模植物的日常和每年的运行时间轮廓,具有633.6米(2)太阳能场。考虑到所选地点的典型气象年(马德里,西班牙),数​​值结果表明,尽管太阳能变化,但是每年提供330 MW H的速度为300℃和400摄氏度之间提供热空气。没有过热接收器的疏散管。 (c)2021 elestvier有限公司保留所有权利。

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