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Evaluations of different domestic hot water preparing methods with ultra-low-temperature district heating

机译:超低温区域供热不同生活热水制备方法的评价

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摘要

This study investigated the performances of five different substation configurations in single-family houses supplied with ULTDH (ultra-low-temperature district heating). The temperature at the heat plant is 46 degrees C and around 40 degrees C at the substations. To avoid the proliferation of Legionella in the DHW (domestic hot water) and assure the comfortable temperature, all substations were installed with supplementary heating devices. Detailed measurements were taken in the substations, including the electricity demand of the supplementary heating devices. To compare the energy and economic performance of the substations, separate models were built based on standard assumptions. The relative heat and electricity delivered for preparing DHW were calculated. The results showed that substations with storage tanks and heat pumps have high relative electricity demand, which leads to higher integrated costs considering both heat and electricity for DHW preparation. The substations with in-line electric heaters have low relative electricity usage because very little heat is lost due to the instantaneous DHW preparation. Accordingly, the substations with in-line electric heaters would have the lowest energy cost for DHW preparation. To achieve optimal design and operation for the ULTDH substation, the electricity peak loads of the in-line electric heaters were analysed according to different DHW-heating strategies.
机译:这项研究调查了ULTDH(超低温区域供暖)提供的单户住宅中五种不同变电站配置的性能。热电厂的温度为46摄氏度,变电站的温度约为40摄氏度。为避免军团菌在DHW(家用热水)中扩散并确保舒适的温度,所有变电站均安装了辅助加热设备。在变电站中进行了详细的测量,包括辅助加热设备的用电需求。为了比较变电站的能源和经济性能,在标准假设的基础上建立了单独的模型。计算了用于制备DHW的相对热和电。结果表明,带有储罐和热泵的变电站具有较高的相对用电需求,考虑到热能和电能用于DHW的准备,这导致更高的综合成本。带有直列式电加热器的变电站的相对用电量较低,因为由于立即进行DHW准备而损失的热量很少。因此,带有直列式电加热器的变电站在准备DHW方面的能源成本最低。为了实现ULTDH变电站的最佳设计和运行,根据不同的DHW加热策略分析了嵌入式电加热器的电峰值负荷。

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