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Advanced Control of a District Heating System with High Residential Domestic Hot Water Demand

机译:住宅生活热水需求高的区域供热系统的高级控制

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Proper adjustment of domestic hot water (DHW) load structure can balance energy demand with the supply. Inefficiency in primary energy use prompted Omsk DH company to be a strong proponent of a flow controller at each substation. Here the return temperature is fixed to the lowest possible value and the supply temperature is solved. Thirty-five design scenarios are defined for each load deviation index with equally distributed outdoor temperature ranging from +8 for the start of a heating season towards extreme load at temperature of -26°C. All the calculation results are listed. If a flow controller is installed, the customers might find it suitable to switch to this type of DHW supply. Considering an option with direct hot water extraction as usual and a flow controller installed, the result indicates that the annual heat consumption will be lower once network temperatures during the fall or spring months are higher. The heat load profiles obtained here may be used as input for a simulation of a DH substation, including a heat pump and a tank for thermal energy storage. This design approach offers a quantitative way of sizing temperature levels in each DH system according to the listed methodology and the designer's preference.
机译:适当调整生活热水(DHW)的负荷结构可以平衡能源需求和供应。一次能源使用效率低下,促使Omsk DH公司大力支持每个变电站的流量控制器。在此,将返回温度固定为可能的最低值,并解决供应温度问题。针对每个负荷偏差指数定义了35种设计方案,室外温度分布均匀,范围从供暖季节开始的+8到-26°C的极端负荷。列出所有计算结果。如果安装了流量控制器,客户可能会发现适合切换到这种类型的DHW供给。考虑到通常使用直接热水抽取和安装流量控制器的选件,结果表明,当秋季或春季月份的网络温度升高时,年热量消耗将降低。此处获得的热负荷曲线可以用作DH变电站模拟的输入,包括热泵和用于储热的储罐。根据列出的方法和设计者的偏爱,此设计方法提供了一种量化每个DH系统中温度水平的定量方法。

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