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Smart grid and PV driven ground heat pump as thermal battery in small buildings for optimized electricity consumption

机译:智能电网和光伏驱动的地面热泵作为小型建筑中的热电池,可优化耗电量

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The purpose of this paper is to show the possible increase of self-consumption of photovoltaic (PV) electricity production for a building by intelligent use of thermal masses in the building. TRNSYS simulations were carried out for an electrically driven ground heat pump in combination with PV, thermally activated building systems and water storage (TES) in small single-family buildings. Several different control strategies adapting set-temperatures in combination with different building types and heat capacities were investigated. For a single-family house with 8900 kWh space heating and domestic hot water demand per year and a 20 m(2)PV system, the solar fraction (SF) increased from 11% for a standard configuration up to 61% with maximized use of overheating of the TES (2000 L tank) and the building mass. The running cost for the heat pump due to grid electricity consumption (0.18 EUR per kWh) decreased from 420 EUR per year - in the reference case without PV - to 373 EUR (SF = 11%) with PV, but in the standard configuration without PV self-consumption optimization, and to 69 EUR per year (SF = 61%) with PV self-consumption optimization, if the remaining PV electricity was completely sold at 0.05 EUR per kWh.
机译:本文的目的是说明通过智能地利用建筑物中的热质量来增加建筑物的光伏(PV)发电自耗的可能性。在小型单户住宅中,结合光伏,热激活建筑系统和储水(TES),对电动地热泵进行了TRNSYS模拟。研究了几种与建筑物类型和热容量相适应的,适应设定温度的不同控制策略。对于每年供暖8900 kWh,生活热水需求和20 m(2)PV系统的单户住宅,太阳能利用率(SF)从标准配置的11%增加到61%,并最大限度地利用了TES(2000 L储罐)和建筑体过热。由电网耗电量(每千瓦时0.18欧元)引起的热泵的运行成本从每年420欧元(在没有PV的参考案例中)降低到373欧元(SF = 11%),但在具有PV的标准配置中光伏自耗优化,如果剩余的光伏电力以0.05欧元/千瓦时的价格出售,则通过光伏自耗优化可达到每年69欧元(SF = 61%)。

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