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Excess heat utilization combined with thermal storage integration in district heating systems using renewables

机译:使用可再生能源的电热系统中的过热利用率结合热存储集成

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摘要

District heating systems already play an important role in increasing the sustainability of the heating sector and decreasing its environmental impact. However, a high share of these systems is old and inefficient and therefore needs to change towards the 4th generation district heating, which will incorporate various energy sources, including renewables and excess heat of different origins. Especially excess heat from industrial and service sector facilities is an interesting source since its potential has already been proven to be highly significant, with some researches showing that it could cover the heat demand of the entire residential and service sector in Europe. However, most analysis of its utilization in district heating are not done on the hourly level, therefore not taking into account the variability of its availability. For that reason, the main goal of this work was to analyse the integration of industrial excess heat into the district heating system consisting of different configurations, including the zero fuel cost technologies like solar thermal. Furthermore, cogeneration units were a part of every simulated configuration, providing the link to the power sector. Excess heat was shown to decrease the operation of peak load boiler and cogeneration, that way decreasing the costs and environmental effect of the system. However, since its hourly availability differs from the heat demand, thermal storage needs to be implemented in order to increase the utilization of this source. The analysis was performed on the hourly level in the energyPRO software.
机译:区供暖系统已经在提高加热部门的可持续性和降低环境影响方面发挥着重要作用。然而,这些系统的高度份额尚且效率低,因此需要改变第四代区供暖,这将包含各种能源,包括可再生能源和不同起源的多余的热量。特别是来自工业和服务部门设施的过剩的含量是一个有趣的来源,因为它的潜力已经被证明是非常重要的,一些研究表明它可以涵盖欧洲整个住宅和服务业的热需求。然而,大多数分析其在地区供暖中的利用率都没有在每小时水平完成,因此没有考虑到其可用性的可变性。因此,这项工作的主要目标是分析工业过剩热量的集成到由不同的配置组成的地区供热系统,包括太阳能热量等零燃料成本技术。此外,热电联产单元是每个模拟配置的一部分,提供给电力扇区的链接。显示出多余的热量,降低峰值负荷锅炉和热电联产的操作,这降低了系统的成本和环境效果。然而,由于其每小时可用性与热需求不同,因此需要实现热存储以增加该来源的利用率。在EnogityPro软件中对每小时水平进行分析。

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