首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Direct solar production of medium temperature hot air for industrial applications in linear concentrating solar collectors using an open Brayton cycle. Viability analysis
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Direct solar production of medium temperature hot air for industrial applications in linear concentrating solar collectors using an open Brayton cycle. Viability analysis

机译:中温热空气的直接太阳能生产用于使用开放布雷顿循环的线性集中太阳能收集器的工业应用。 活力分析

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摘要

Medium temperature heat required by industrial processes worldwide is mostly provided consuming fossil fuels. Among renewable energy alternatives, concentrating solar collectors can provide medium temperature heat at decreasing costs, either for medium and small scale applications. Several high energy-demanding processes need hot air in the range 150-400 degrees C (drying, curing, dehydration, thermal treatments). For such applications, the direct air heating inside linear concentrating solar collectors is investigated in this work. Although is not a common practice, direct heating reduces installation costs and maintenance, eliminating the need for heat transfer fluid and heat exchanger. The theoretical analysis developed indicates its feasibility despite the high pumping power consumption. An innovative system using Brayton cycle is proposed and analyzed. An automotive turbocharger is used to compress inlet air, with a compression ratio from 1.5 to 4, before solar heating up to the technology limit of 600 degrees C, thus reducing and even avoiding pumping power consumption. Hot air expands through the turbine recovering the compressing power, holding at the outlet suitable temperature for industrial usages in the range of 300-400 degrees C. No mechanical power at the shaft is expected; instead, turbocharger freewheeling enables to drive air through the collectors without auxiliary energy consumption, configuring a compact solar installation. Numerical results provided support the viability, showing the performances and critical parameters.
机译:全球工业过程所需的中温热量主要提供消耗化石燃料。在可再生能源替代方案中,集中式太阳能收集器可以在降低成本下提供中等温度热量,用于中小型应用。几种高能量苛刻的过程需要150-400摄氏度的热空气(干燥,固化,脱水,热处理)。对于这种应用,在这项工作中研究了线性集中太阳能集热器内的直接空气加热。虽然不是常见的做法,但直接加热降低了安装成本和维护,消除了传热液和热交换器的需求。尽管泵浦功耗高,但制定的理论分析表明其可行性。建议并分析了使用Brayton循环的创新系统。在太阳能加热至600摄氏度的技术限制之前,汽车涡轮增压器用于压缩空气,压缩比为1.5到4,从1.5℃加热,从而减少甚至避免避免泵送功耗。热空气通过涡轮机膨胀,恢复压缩功率,在300-400摄氏度范围内的工业用量保持在出口时的出口温度。轴上没有机械电源;相反,涡轮增压器续流使得能够在没有辅助能耗的情况下通过收集器驱动空气,配置紧凑的太阳能安装。提供的数值结果支持支持可行性,显示性能和关键参数。

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