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Impact of design and thermal inertia on the energy saving potential of capacity controlled heat pump heating systems

机译:设计和热惯性对容量控制的热泵加热系统的节能潜力的影响

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摘要

The objective of this study was to develop a dynamic model of hydronic heating systems in order to get a more fair comparison of energy efficiency between continuously capacity controlled heat pumps and intermittently controlled heat pumps than what is achieved with steady-state models. Factors such as thermal inertia, different connection principles, temperature levels and lag times are also considered to see how they affect the comparison and the efficiency. The results show that performance of an intermittently controlled heat pump is reduced when using this dynamic model compared to the static models, whereas the results for a variable-speed controlled heat pump stay the same. Introducing different controller dead bands, thermal inertias, etc. change the result only to a small extent.
机译:这项研究的目的是开发一个水力加热系统的动态模型,以便获得比稳态模型更公平地比较连续容量控制的热泵和间歇控制的热泵的能效。还考虑了诸如热惯性,不同的连接原理,温度水平和滞后时间等因素,以了解它们如何影响比较和效率。结果表明,与静态模型相比,使用此动态模型时,间歇控制的热泵的性能降低,而变速控制的热泵的结果保持不变。引入不同的控制器死区,热惯性等只会在很小的程度上改变结果。

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