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Assessing heat pumps as flexible load

机译:评估热泵的弹性负载

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摘要

In a future power system featuring significant renewable generation, the ability to manipulate domestic demand through the flexible operation of heat-led technologies such as heat pumps and micro-combined heat and power could be a critical factor in providing a secure and stable supply of electrical energy. Using a simulation-based approach, this study examined the linkage between the thermal characteristics of buildings and the scope for flexibility in the operating times of air source heat pumps. This was assessed against the resulting impact on the end-user's comfort and convenience. A detached dwelling and flat were modelled in detail along with their heating system in order to determine the temporal shift achievable in the heat pump operating times for present-day and future dwellings. The simulation results indicated that the scope for shifting heat pump operating times in the existing building stock was limited, with time shifts of only 1-2 h achieved before there was a serious impact on the comfort of the occupant. However, if insulation levels were dramatically improved and substantial levels of thermal buffering were added into the heating system, sizable time shifts of up to 6 h were achievable without a significant impact on either space or hot water temperatures.
机译:在具有大量可再生能源的未来电力系统中,通过热导技术(如热泵和微热电联产)的灵活运营来操纵国内需求的能力可能是提供安全可靠的电力供应的关键因素能源。本研究采用基于仿真的方法,研究了建筑物的热特性与空气源热泵运行时间灵活性范围之间的联系。针对最终用户的舒适性和便利性产生的影响进行了评估。对独立住宅和公寓以及其供暖系统进行了详细建模,以确定当前和未来住宅在热泵运行时间中可达到的时间偏移。仿真结果表明,在现有建筑物中,热泵运行时间的转换范围是有限的,在对乘员的舒适性产生严重影响之前,仅实现了1-2小时的时间转换。但是,如果大大提高了隔热水平,并在加热系统中添加了大量的热缓冲功能,则可实现长达6小时的可观时间转换,而对空间或热水温度没有重大影响。

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