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Air-water heat pump modelling for residential heating and domestic hot water in Chile

机译:智利住宅加热和国内热水的空气热水泵造型

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摘要

In Chile, household heating demands are mainly provided by wood stoves and domestic hot water by gas water heater. This presents two drawbacks, the use of wood stoves for heating is responsible of severe pollution problems during winter period and another drawback is associated to the high price of the gas. To mitigate these problems, it is proposed to analyse the use of heat pumps for both heating and domestic hot water. The first step for this analysis is to determine the seasonal performance of the heat pump, which depends, among others, on the building location, building characteristics and heat pump characteristics. In this study the performance of a four occupants household located at Concepcion and Santiago are considered. The heating demand is determined by using the software TRNSYS, by obtaining an annual heating demand that varies between 5003 kWh and 8788 kWh for Concepcion and between 4388 kWh and 7883 kWh for Santiago. The domestic hot water demand is determined from a typical consumption profile, with an annual energy demand of 3721 kWh and 3541 kWh for Concepcion and Santiago respectively. These profiles are used as inputs to the heat pump model by developing an hourly simulation. The heat pump is modelled by using a modular approach decomposed in three individual models for the following components: compressor, condenser and evaporator. It is assumed that the compressor is regulated with an ON/OFF control. The system SPF varies between 2,54 and 2,60 for the six cases analysed in this study. There is no significant difference in the SPF in both cities, which is attributed to the ambient conditions, which are in average very similar.
机译:在智利,家用的供暖需求主要由木炉和国内热水提供燃气热水器。这提出了两个缺点,使用木材炉子进行加热是在冬季期间造成严重的污染问题,另一个缺点与气体的高价格相关。为了减轻这些问题,建议分析用于加热和家用热水的热泵的使用。该分析的第一步是确定热泵的季节性性能,其中包括在建筑物位置,建筑物特性和热泵特性方面。在这项研究中,考虑了位于康塞特和圣地亚哥的四名乘客家庭的表现。通过使用软件TRNSYS来确定加热需求,通过获得年度加热需求,可在5003千瓦时之间变化和8788千瓦时,在4388千瓦时和圣地亚哥的7883千瓦时。国内热水需求取决于典型的消费概况,每年能源需求为3721千瓦时,分别为3541千瓦时,分别为3541千瓦时。这些轮廓通过开发每小时模拟来用作热泵模型的输入。通过使用三个单独的模型中分解的模块化方法来建模热泵,用于以下组件:压缩机,冷凝器和蒸发器。假设压缩机用开/关控制调节。在本研究中分析的六种病例中,系统SPF在2,54和2,60之间变化。这两个城市的SPF没有显着差异,归因于环境条件,平均非常相似。

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