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热词
    • 10. 发明授权
    • Heating system and method for controlling a heating system
    • 加热系统及其加热系统的控制方法
    • US09341383B2
    • 2016-05-17
    • US13990707
    • 2011-12-06
    • Bart AspeslaghStefanie Debaets
    • Bart AspeslaghStefanie Debaets
    • F24D12/02F24D3/18F24D15/04F24D19/10F24D3/08
    • F24D12/02F24D3/08F24D3/18F24D15/04F24D19/1039F24D19/1072F24D2200/046F24D2200/123F24D2220/0228Y02B30/12Y02B30/14
    • A heating system includes a flow circuit carrying working fluid at a set flow temperature to a heat emitting section, an electricity driven heat pump having a first heat exchanger, and a fuel fired boiler having a second heat exchanger. The first and second heat exchangers arc connected to the flow circuit to heat the working fluid in succession. A coefficient of performance (COPSet Flow Temperature) of the heat pump and a break even coefficient of performance (BECOP) are determined, and the COPSet Flow Temperature and BECOP compared. The BECOP is electricity price/fuel price*boiler thermal efficiency. If the COPSet Flow temperature is smaller than the BECOP in a first hybrid mode, an intermediate flow temperature is determined, the heat pump is operated to heat the working fluid to the intermediate flow temperature and the boiler is operated to heat the working fluid to the set flow temperature.
    • 加热系统包括将工作流体以设定的流动温度传送到发热部分的流动回路,具有第一热交换器的电力驱动热泵和具有第二热交换器的燃料燃烧锅炉。 第一和第二热交换器电弧连接到流动回路以连续加热工作流体。 确定热泵的性能系数(COPSet流量温度)和性能突破均匀系数(BECOP),并比较COPSet流量温度和BECOP。 BECOP是电价/燃料价格*锅炉热效率。 如果在第一混合模式下COPSet流量温度小于BECOP,则确定中间流动温度,操作热泵以将工作流体加热到中间流动温度,并且操作锅炉以将工作流体加热到 设定流量温度。