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首页> 外文期刊>Renewable energy >A novel solar cooling cycle - A ground coupled PV/T desiccant cooling (GPVTDC) system with low heat source temperatures
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A novel solar cooling cycle - A ground coupled PV/T desiccant cooling (GPVTDC) system with low heat source temperatures

机译:一种新型太阳能冷却循环 - 具有低热源温度的地面耦合PV / T干燥剂冷却(GPVTDC)系统

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摘要

This study investigates the performance of a novel desiccant air dehumidification and cooling cycle that utilises ground source heat exchange and flat plate photovoltaic thermal (PV/T) collectors (the GPVTDC system) to provide conditioned air. The system was modelled in TRNSYS using verified components with a focus on three climates: (i) an oceanic climate (Cfb) (ii) a humid sub-tropical climate (Cfa), and (iii) a hot semi-arid climate (BSh). The GPVTDC system pre-cools the entry air by utilising a ground source heat exchange. This allows the desiccant regeneration process to operate at low temperatures ranging from 43 degrees C to 62 degrees C, which enables the use of glazed water type PV/T collectors as the main heat source. The collectors were sized to match both thermal and electrical energy requirements to drive the GPVTDC system. The system was simulated for a whole year in each climate to provide fresh air ventilation, dehumidification and cooling process for an office space. Evaluation of the annual cooling performance of the GPVTDC system shows that it can maintain an office space within the thermal comfort zone for up to 93% of the time, with an average system cooling coefficient of performance (COP) between 9.6 and 16.3 for the three analysed climates. In addition, electrical energy saving up to 87% is achieved in comparison to a conventional dew point air dehumidification and cooling process. (C) 2020 Elsevier Ltd. All rights reserved.
机译:本研究调查了利用地源热交换和平板光伏热(PV / T)收集器(GPVTDC系统)来提供调节空气的新型干燥剂空气除湿和冷却循环的性能。该系统在TRNSYS中使用验证的组件在三个气候上进行了专注:(i)海洋气候(CFB)(ii)潮湿的亚热带气候(CFA),和(iii)热半干旱气候(BSH )。 GPVTDC系统通过利用地源热交换预冷却进入空气。这允许干燥剂再生过程在43摄氏度至62摄氏度范围的低温下操作,这使得使用釉面水型PV / T收集器作为主热源。收集器的大小以匹配热电和电能要求来驱动GPVTDC系统。该系统在每个气氛中模拟整整一年,为办公空间提供新的空气通风,除湿和冷却过程。评估GPVTDC系统的年冷却性能表明,它可以在热舒适区内维持高达93%的时间的办公空间,平均系统冷却系数(COP)在9.6和16.3之间为三个分析了气候。此外,与传统的露点空气除湿和冷却过程相比,实现高达87%的电能。 (c)2020 elestvier有限公司保留所有权利。

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