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Performance investigation and economic benefits of new control strategies for heat pump-gas fired water heater hybrid system

机译:热泵-燃气热水器混合系统新控制策略的性能研究和经济效益

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摘要

More recently, the hybrid system equipped with the combination of heat pump and gas fired water heater in one device is increasingly attracting people's attention from both the industry and academia. In this study, the hybrid system with two control strategies is presented as the alternative option for domestic hot water supply and space heating with the aim of revealing its economic benefits. For the control strategy I, the two heating sources, i.e. heat pump and gas heater, can be switched and there are only two modes: heat pump mode, and gas heater mode. While for the control strategy II, the two heating sources could be handled with the proper arrangement for the loading share. There are 3 modes under this control strategy: heat pump mode, hybrid mode, and gas heater mode. The auxiliary resistance heater is used for heat pump mode if necessary, not for the hybrid mode. Various climate conditions, water initial temperature and final temperature are investigated for the hybrid system, and different heating supply forms are compared. Regarding the domestic hot water demand of 70 L per apartment per day, the gas heater can lead to a similar to 38% operation energy cost saving from electric heater, and both of the two control strategies with hybrid system can result in a similar to 20% to similar to 65% more operation energy cost reduction than gas heater under climate condition of - 5 degrees C to 20 degrees C, with a more pronounced reduction towards hot climates. Control strategy II, as the most cost-efficient option, can achieve a similar to 10% to similar to 23% more energy cost saving than strategy I, especially under climate condition of 0 degrees C to - 12 degrees C. In the hybrid mode with strategy II, a decrease of the final temperature, results in a better economic merit. Regarding the hourly under flooring heating case, the control strategy II, as the best option, can lead to a similar to 6% to similar to 70% more hourly process energy cost saving compared with the gas heater from - 15 degrees C to 20 degrees C ambient conditions. During the typical heating season with ambient (-15 degrees C to 7 degrees C), the lowest process energy cost can be achieved by control strategy II. In the same external conditions, the under-flooring heating application has a lower system operation energy process cost than the indoor radiator heating case.
机译:最近,在一个装置中装备有热泵和燃气热水器的组合的混合动力系统越来越引起工业界和学术界的关注。在这项研究中,提出了具有两种控制策略的混合系统作为生活热水供应和空间供暖的替代方案,以揭示其经济效益。对于控制策略I,可以切换两个热源,即热泵和燃气加热器,并且只有两种模式:热泵模式和燃气加热器模式。对于控制策略II,可以通过适当安排负荷的方式来处理两个加热源。在此控制策略下有3种模式:热泵模式,混合模式和燃气加热器模式。如有必要,辅助电阻加热器用于热泵模式,而不用于混合模式。研究了混合系统的各种气候条件,水的初始温度和最终温度,并比较了不同的供热形式。对于每间公寓每天70升的生活热水需求,燃气加热器可通过电加热器节省约38%的运行能源成本,并且两种混合动力系统的控制策略均可导致约20%的能耗。在-5摄氏度至20摄氏度的气候条件下,与燃气加热器相比,可节省的能源运行成本降低了65%以上,与之相比,在炎热的气候下降低幅度更大。作为最具成本效益的选择,控制策略II可以比策略I多节省大约10%到大约23%的能源成本,特别是在0摄氏度至-12摄氏度的气候条件下。使用策略II,降低最终温度会带来更好的经济价值。关于每小时地板下供暖的情况,控制策略II作为最佳选择,与燃气加热器相比,每小时可节省6%到70%的时间,与燃气加热器相比-15摄氏度至20摄氏度C环境条件。在典型的环境加热季节(-15摄氏度至7摄氏度)下,可通过控制策略II来实现最低的过程能源成本。在相同的外部条件下,地板采暖应用比室内散热器采暖箱具有更低的系统运行能量处理成本。

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