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Experimental Evaluation of Simple Thermal Storage Control Strategies in Low-Energy Solar Houses to Reduce Electricity Consumption during Grid On-Peak Periods

机译:低能耗太阳能房屋中降低储能高峰期用电量的简单蓄热控制策略的实验评估

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There is growing interest in zero-energy and low-energy buildings, which have a net energy consumption (on an annual basis) of almost zero. Because they can generate both electricity and thermal energy through the use of solar photovoltaic (PV) and solar thermal collectors, and with the help of reduced building thermal demand, low-energy buildings can not only make a significant contribution to energy conservation on an annual basis, but also reduce energy consumption and peak demand. This study focused on electricity consumption during the on-peak period in a low-energy residential solar building and considers the use of a building’s thermal mass and thermal storage to reduce electricity consumption in summer and winter by modulation of temperature setpoints for heat pump and indoor thermostats in summer and additional use of a solar heating loop in winter. Experiments were performed at a low-energy solar demonstration house that has solar collectors, hot water storage, a ground-coupled heat pump, and a thermal storage tank. It was assumed that the on-peak periods were from 2 pm to 5 pm on hot summer days and from 5 pm to 8 pm on cold winter days. To evaluate the potential for utilizing the building’s thermal storage capacity in space cooling and heating, the use of simple control strategies on three test days in summer and two test days in the early spring were compared in terms of net electricity consumption and peak demand, which also considered the electricity generation from solar PV modules on the roof of the house.
机译:人们对零能耗和低能耗建筑物的兴趣日益增长,这些建筑物的净能耗(每年)几乎为零。由于低能耗建筑可通过使用太阳能光伏(PV)和太阳能集热器同时产生电能和热能,并且在减少建筑热需求的帮助下,不仅可以每年为节能做出重要贡献在此基础上,还能降低能耗和高峰需求。这项研究的重点是低能耗住宅太阳能建筑物在高峰时段的用电量,并考虑利用建筑物的热量和蓄热来通过调节热泵和室内的温度设定值来减少夏季和冬季的用电量夏天使用恒温器,冬天使用太阳能加热回路。实验是在一个具有太阳能集热器,热水储存器,接地热泵和储热罐的低能耗太阳能演示屋中进行的。假设高峰时段在炎热的夏季是从下午2点到下午5点,在寒冷的冬日是从下午5点到晚上8点。为了评估利用建筑物的蓄热能力进行空间制冷和供暖的潜力,比较了夏季的三个测试日和早春的两个测试日的简单控制策略的净耗电量和高峰需求,还考虑了房屋屋顶上太阳能光伏组件的发电。

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