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Experimental characterisation of a novel heat exchanger for a solar hot water application under indoor and outdoor conditions

机译:室内和室外条件下用于太阳能热水的新型热交换器的实验特性

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摘要

The performance of a novel heat exchanger unit ('Solasyphon') developed for a solar hot water system was experimentally investigated under indoor and outdoor operating conditions. The 'Solasyphon' can be easily integrated to an existing single-coil hot water cylinder avoiding the need for costly twin-coil solar hot water storage. A series of tests were conducted under controlled indoor and real outdoor conditions to test and compare the performance of the 'Solasyphon' system with a traditional twin-coil ('coil') system. The analysis was based upon experimental data collected under various operating conditions including different primary supply temperatures (solar simulated); heating from ambient, heating with a partially stratified storage from ambient and finally under no draw-off and standard draw-off patterns. The outdoor testing was carried out on both systems separately over Summer/Autumn conditions in Northern Ireland. The results showed that the 'Solasyphon' system is more effective compared to a traditional twin-coil system for a domestic application where intermittent hot water demand is predominant and under a transient solar input particularly on intermediate or poor solar days. The 'Solasyphon' delivered solar heated water directly to the top of the storage producing a stratified supply at a useable temperature. The twin-coil system was found to be more efficient than the 'Solasyphon' system under a prolonged heating period.
机译:在室内和室外操作条件下,通过实验研究了为太阳能热水系统开发的新型热交换器单元(“ Solasyphon”)的性能。 “ Solasyphon”可以轻松集成到现有的单线圈热水缸中,而无需昂贵的双线圈太阳能热水存储。在受控的室内和室外条件下进行了一系列测试,以测试和比较“ Solasyphon”系统与传统双线圈(“ coil”)系统的性能。该分析基于在各种操作条件下收集的实验数据,包括不同的主要供应温度(模拟太阳能);从环境中加热,从环境中进行部分分层的储藏,最后没有取水和标准取水模式。在北爱尔兰的夏季/秋季条件下,分别在两个系统上进行了室外测试。结果表明,与传统的双线圈系统相比,“ Solasyphon”系统在需要间歇性热水需求且在瞬态太阳能输入下尤其是在中间或较差的太阳能日使用的家庭应用中,效率更高。 “ Solasyphon”将太阳能热水直接输送到储藏室顶部,从而在可用温度下产生分层供水。发现在延长的加热时间下,双线圈系统比“ Solasyphon”系统更有效。

著录项

  • 来源
    《Renewable energy》 |2011年第6期|p.1766-1779|共14页
  • 作者单位

    Centre for Sustainable Technologies, School of the Built Environment, University of Ulster, Jordanstown, Newtownabbey, Northern Ireland BT370QB, UK;

    Centre for Sustainable Technologies, School of the Built Environment, University of Ulster, Jordanstown, Newtownabbey, Northern Ireland BT370QB, UK;

    Centre for Sustainable Technologies, School of the Built Environment, University of Ulster, Jordanstown, Newtownabbey, Northern Ireland BT370QB, UK;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    solar hot water; heat exchanger; solar thermal; solar energy; solar collector;

    机译:太阳能热水;热交换器;太阳热能太阳能;太阳能集热器;
  • 入库时间 2022-08-18 00:26:33

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