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The addition of heat pump electricity load profiles to GB electricity demand: Evidence from a heat pump field trial

机译:将热泵电力负荷曲线添加到GB电力需求中:来自热泵现场试验的证据

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摘要

Previous studies on the effect of mass uptake of heat pumps on the capability of local or national electricity grids have relied on modelling or small datasets to create the aggregated heat pump load profile. This article uses the UK Renewable Heat Premium Payment dataset, which records the electricity consumption of nearly 700 domestic heat pump installations every 2 minutes, to create an aggregated load profile using an order of magnitude more sites than previously available. The aggregated profile is presented on cold and medium winter weekdays and weekends and is shown to contain two peaks per day, dropping overnight to around 40% of its peak. After Diversity Maximum Demand (ADMD) for the population of heat pumps is calculated as 1.7 kW per site; this occurs in the morning, whereas the peak national grid demand occurs in the evening. Analysis is carried out on how heat pump ADMD varies with number of heat pumps in the sample. A simple upscaling exercise is presented to give a first order approximation of the increase in GB peak electricity demand with mass deployment of heat pumps. It is found that peak grid demand increases by 7.5 GW (14%) with 20% of households using heat pumps. The effect of the same heat pump uptake on grid ramp rate is also discussed; this effect is found to be minor. Finally, a comparison of heat pump and gas boiler operation is given, discussing day and night time operation and mean and peak power at different external temperatures.
机译:先前有关热泵大量吸入对本地或国家电网能力影响的研究依赖于建模或小型数据集来创建汇总的热泵负荷曲线。本文使用了英国可再生热能溢价付款数据集,该数据集每2分钟记录近700台家用热泵装置的用电量,从而使用比以前更多的数量级站点来创建汇总负载曲线。在冬季的平日和冬季的平日和周末显示汇总的分布图,并显示每天包含两个峰值,过夜下降至峰值的40%左右。根据热泵群的多样性最大需求量(ADMD)计算得出,每个站点为1.7 kW;这是在早晨发生的,而国家电网需求高峰在晚上发生。分析热泵ADMD如何随样品中热泵数量的变化而变化。提出了一个简单的升级练习,以通过热泵的大规模部署给出GB峰值用电需求增加的一阶近似值。研究发现,在20%的家庭使用热泵的情况下,峰值电网需求增加了7.5吉瓦(14%)。还讨论了相同的热泵吸收量对电网斜率的影响。发现这种影响很小。最后,对热泵和燃气锅炉的运行进行了比较,讨论了白天和晚上的运行以及在不同外部温度下的平均功率和峰值功率。

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