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Domestic space heating dynamic costs under different technologies and energy tariffs: Case study in Spain

机译:国内空间加热不同技术和能源关税下的动力成本:西班牙案例研究

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Dynamic energy tariffs facilitate engaging domestic consumers on demand management, contributing to grid’s stability, but requires of informed decision enabling tools. This paper presents a domestic heating costs calculation method for different heating technologies (gas boiler, heat-pumps) and a range of energy tariffs. Based on physical modeling, effect of outdoor temperature in the COP of heat-pumps is assessed. The methodology is applied to the 2018/19 heating season in Madrid (Spain), calculating the heating costs under four diverse energy tariffs (static gas tariff, static electricity tariff, real-time-price electricity tariff, dynamic time-of-use electricity tariff) for a typical home demand. The hourly results for two representative days are detailed, along with the aggregated results for the whole season. Along the season, the continuous changes in energy wholesale market prices and weather conditions make one heating technology and/or tariff more convenient each time. For the whole season, the dynamic time-of-use tariff considered would imply heating costs up to 40% lower than the static gas tariff. The results are strongly conditioned by climate conditions and national energy market evolutions. Day-ahead information on the actual heating costs might lead to domestic end-users to adapt their behavior and consumption patterns for more cost-effective use of the energy.
机译:动态能源关税有助于从事国内消费者对需求管理,有助于电网的稳定,但需要有线决策能够实现工具。本文介绍了不同加热技术(燃气锅炉,热泵)和一系列能量关税的国内供热成本计算方法。基于物理建模,评估了热泵COP中室外温度的影响。该方法应用于Madrid(西班牙)的2018/19加热季节,计算了四种不同能源关税下的加热成本(静态燃气关税,静电关税,实时价格电力资费,动态使用时间电力关税)为典型的家庭需求。为整个季节进行两个代表日的每小时结果以及整个季节的汇总结果。沿着本赛季,能源批发市场价格和天气条件的持续变化使得每次更方便的加热技术和/或关税。对于整个季节,使用动态的使用时间关税将暗示加热成本高于静态储气关税的40%。结果受气候条件和国家能源市场的发展强烈调节。有关实际供热成本的一天的信息可能导致国内最终用户可适用其行为和消费模式,以便更具成本效益的能量。

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