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Performance evaluation of different micro-CHP configurations in real life conditions and the influence of part load behaviour

机译:现实生活中不同微型CHP配置的性能评估以及部分负载行为的影响

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摘要

Micro-cogeneration (micro-CHP) is an emerging technology to reduce the non-renewable energy demand in buildings and reduce peak loads in the grid. Within building applications internal combustion engines, Stirling engines and CHPs based on fuel cell technology are mostly used. The heat and electricity demand here is often characterized by a strong fluctuation over time. The design and control of micro-CHP in buildings is therefore often more challenging in order to achieve its nominal efficiency. In a recently ended research project, different micro-CHP-technologies were evaluated based on on-site measurement campaigns. In practice, micro-CHP is hardly ever used as single technology to deliver the necessary heat. A poor hydronic design can strongly reduce the number of operating hours of the CHP and even its performance, which is influenced by e.g. return temperature. In this paper the performance and behaviour of different technologies are discussed with a strong focus on the part load and start-stop behaviour. The necessary insights are provided with respect to system integration and control and are illustrated with a discussion on the executed measurement campaign in the region of Flanders.
机译:微型热电联产(micro-CHP)是一种新兴技术,可减少建筑物中不可再生的能源需求并减少电网的峰值负荷。在建筑应用中,主要使用内燃机,斯特林发动机和基于燃料电池技术的CHP。此处的热和电需求通常会随着时间的推移出现剧烈波动。因此,为了实现标称效率,建筑物中微型CHP的设计和控制通常更具挑战性。在最近结束的一项研究项目中,根据现场测量活动评估了不同的微型热电联产技术。在实践中,微型热电联产几乎从未用作传递必要热量的单一技术。不良的水力设计会极大地降低CHP的运行小时数,甚至会降低其性能,这受以下因素的影响:返回温度。在本文中,讨论了不同技术的性能和行为,重点是零件负载和起停行为。提供了有关系统集成和控制的必要见解,并通过对法兰德斯地区进行的测量活动的讨论进行了说明。

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