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A Thermo-Economic and Emissions Analysis of Different Sanitary-Water Heating Units Embedded Within Fourth- Generation District-Heating Systems

机译:嵌入第四代区域供热系统的不同卫生热水装置的热经济和排放分析

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This paper presents the results of a thermo-economic (TE), primary-energy-factor and CO2-equivalent (CO2 (eq)), emissions-sensitivity analysis for the preparation of sanitary hot water (SHW) in fourth-generation district-heating systems. The annual required additional heat for the SHW provided by a local heating unit, based on an air-to-water heat pump (AWHP), a natural-gas boiler (NG boiler), and an electrical resistance heater (ERH), was determined using a TRNSYS simulation. Additionally, the seasonal performance factor (SPF) of the HP under consideration was determined. The study considered three possible supply temperatures, i.e., 35, 40, and 45 degrees C. The results show that a local heating unit based on an AWHP is most efficient in terms of the used primary energy (PE) and CO2 (eq) emissions. This unit is also the second best in terms of TE performance. The unit based on a NG boiler is much more appropriate than an ERH unit in terms of both the primary energy factor (PEF) and the CO2 (eq) emission factors for an electricity generation mix (EGM) that has values higher than the average for the EU-28. The heat generated by this NG unit is also cheaper than the heat produced by an ERH based on the average price for electricity in the EU-28.
机译:本文介绍了第四代地区卫生热水(SHW)的热经济性(TE),主要能量因子和二氧化碳当量(CO2(eq))的排放敏感性分析结果。加热系统。确定了本地供热单元根据空气对水热泵(AWHP),天然气锅炉(NG锅炉)和电阻加热器(ERH)所提供的SHW的年度所需额外热量。使用TRNSYS模拟。此外,还确定了所考虑的HP的季节性性能因子(SPF)。该研究考虑了三种可能的供应温度,即35、40和45摄氏度。结果表明,基于AWHP的本地供热单元在使用的一次能源(PE)和CO2(eq)排放方面最有效。就TE性能而言,该单元也是第二好的。就发电混合物(EGM)的一次能源因子(PEF)和CO2(eq)排放因子而言,基于NG锅炉的单元比ERH单元更合适,其值要高于ERH单元的平均值。欧盟28。根据EU-28的平均电价,此NG装置产生的热量也比ERH产生的热量便宜。

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