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Discrete demand side control performance under dynamic building simulation: A heat pump application

机译:动态建筑物模拟下的离散需求侧控制性能:热泵应用

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This study presents the findings of applying a Discrete Demand Side Control (DDSC) approach to the space heating of two case study buildings. High and low tolerance scenarios are implemented on the space heating controller to assess the impact of DDSC upon buildings with different thermal capacitances, light-weight and heavy-weight construction. Space heating is provided by an electric heat pump powered from a wind turbine, with a back-up electrical network connection in the event of insufficient wind being available when a demand occurs. Findings highlight that thermal comfort is maintained within an acceptable range while the DDSC controller maintains the demand/supply balance. Whilst it is noted that energy demand increases slightly, as this is mostly supplied from the wind turbine, this is of little significance and hence a reduction in operating costs and carbon emissions is still attained.
机译:这项研究提出了将离散需求侧控制(DDSC)方法应用于两个案例研究建筑物的空间供暖的发现。在空间供热控制器上实施了高容差情景和低容忍情景,以评估DDSC对具有不同热容,轻型和重型建筑的建筑物的影响。空间加热由风力涡轮机提供动力的电热泵提供,如果出现需求时可用的风力不足,则可使用备用电网连接。结果表明,热舒适性保持在可接受的范围内,而DDSC控制器保持了供需平衡。尽管注意到能量需求略有增加,因为这主要是由风力涡轮机提供的,所以意义不大,因此仍然可以降低运行成本和碳排放。

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