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Methodology for optimizing the heating capacity of heat-source equipments in double-energy radiator heating system

机译:用于优化双能量散热器加热系统中热源设备的加热容量的方法

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The double-energy heating system studied in this paper is consisted of centrifugal sewage-source heat pumps and gas boilers. As the grade and price of the two kinds of energy are different, the heating capacity of the heat-source equipments would have a directly impact on the energy consumption and operating cost of the system. In order to obtain the optimal heating capacity of the heat-source equipments, the calculation models on equipments utilized in this system are firstly established, and then different combination patterns of the heat-source equipments were analyzed on the basis of minimum operating cost, finally, the optimal heating capacity of the heat-source equipments and the heating performance factor (HPF) of the system in different outdoor temperatures were obtained, the results indicate the average HPF of the system in the heating period is 3.57. The method and results provide reference for scientific design of the double-energy heating system.
机译:本文研究的双能加热系统由离心污水源热泵和燃气锅炉组成。随着两种能量的等级和价格不同,热源设备的加热能力将直接影响系统的能耗和运营成本。为了获得热源设备的最佳加热容量,首先建立了该系统中使用的设备的计算模型,然后基于最小操作成本分析了热源设备的不同组合模式,获得了在不同室外温度下系统的热源设备的最佳加热容量和系统的加热性能因数(HPF),结果表明加热时段中系统的平均HPF为3.57。该方法和结果为双能加热系统的科学设计提供了参考。

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