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ANALYSIS OF SOLAR RECEIVER PERFORMANCE FOR CHEMICAL-LOOPING INTEGRATION WITH A CONCENTRATING SOLAR THERMAL SYSTEM

机译:集中式太阳能热系统化学循环集成的太阳能接收器性能分析

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This paper introduces a chemical-looping configuration integrated with a concentrating solar thermal (CST) system. The CST system uses an array of mirrors to focus sunlight, and the concentrated solar flux is applied onto a solar receiver to collect and convert solar energy into thermal energy. The thermal energy then drives a thermal power cycle for electricity generation or provides an energy source to chemical processes for material or fuel production. Considerable interest in CST has been driven by power generation with its capability to store thermal energy for continuous electricity supply or peak shaving. However, CST systems have other potential to convert solar energy into fuel or support thermochemical processes. The chemical-looping configuration integrated with the CST system can be a platform for implementing various solar-thermochemical processes. The chemical-looping configuration integrated with a CST system has potential applications for thermochemical energy storage and solar thermochemical hydrogen production. To use the solar energy efficiently and effectively, a high-temperature reactor receiver is a key component in the chemical-looping system. This paper shows a novel planar-cavity receiver design and its performance analyzed by solar-tracing and thermal-modeling methods for solar integration in a CST system.
机译:本文介绍了一种与集中式太阳能热(CST)系统集成的化学回路配置。 CST系统使用反射镜阵列将阳光聚焦,然后将聚集的太阳光通量施加到太阳能接收器上,以收集太阳能并将其转换为热能。然后,热能驱动热力循环进行发电,或者为化学过程提供能源,以生产材料或燃料。发电推动了对CST的极大兴趣,发电具有存储热能以持续供电或削峰的能力。但是,CST系统具有将太阳能转化为燃料或支持热化学过程的其他潜力。与CST系统集成的化学回路配置可以成为实施各种太阳能热化学过程的平台。与CST系统集成的化学回路配置在热化学能量存储和太阳能热化学制氢方面具有潜在的应用。为了高效有效地利用太阳能,高温反应堆接收器是化学循环系统中的关键组件。本文展示了一种新颖的平面腔接收器设计,并通过太阳能追踪和热建模方法分析了其性能,以用于CST系统中的太阳能集成。

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