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Solar absorption cooling in Spain: Perspectives and outcomes from the simulation of recent installations

机译:西班牙的太阳能吸收式制冷:近期安装模拟的观点和成果

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In spite of the fact that Spain is one of the EU countries with the highest solar resource on annual basis, the huge seasonal variation in solar radiation availability and the relatively short period with heating demand, make it difficult to reach significant contributions of solar energy to the buildings heating energy demand. This compromises the economic viability of big solar collector areas per capita, and introduces technical difficulties for the dissipation of the excess solar energy available in the summer months. On the other hand, in a large part of the Spanish territory, in other to reach adequate comfort conditions in our buildings, the energy demand for cooling is more important or of the same order than the heating demand. Cooling energy demand is now experiencing a fast growing rate as this comfort requirement becomes internalized. Domestic air conditioning equipments based on vapour compression cycles are being used to reach comfort conditions in some of the rooms of buildings that were designed without taking into account cooling requirements. In spite of their so far small contribution to the total building sector energy demand, these equipments are already imposing important constraints on the environment and the electricity distribution system. Solar absorption cooling arises as an interesting alternative, which at the same time allows reaching a higher solar contribution to the heating demand. However, solar cooling installations present several peculiarities with respect to the more known DHW or even heating installations, which require to incorporate a more detailed approach and additional considerations in the design and performance evaluation processes. Besides, some limitations still persist in solar absorption systems, which could make them loose their market potential for the benefit of other solar cooling options. In this paper, we present some conclusions arising from the experience gained in detailed TRNSYS dynamical simulation of some of the first commercial solar heating and cooling installations recently implemented in Spain, and analyse their perspectives in comparison with other solar cooling options.
机译:尽管西班牙是每年太阳能资源最多的欧盟国家之一,但由于太阳辐射的可利用性存在巨大的季节性变化,而且供热需求的时间相对较短,因此很难实现太阳能的重大贡献。建筑物的热能需求。这损害了人均大型太阳能集热器地区的经济生存能力,并为夏季消散可用的多余太阳能带来了技术难题。另一方面,在西班牙大部分地区,为了在我们的建筑物中达到足够的舒适条件,与供热相比,制冷的能源需求更为重要或处于同等水平。随着这种舒适性要求的内在化,冷却能源需求正在经历快速增长。基于蒸气压缩循环的家用空调设备已用于在设计时不考虑冷却要求的某些建筑室内达到舒适条件。尽管它们迄今为止对建筑部门总能源需求的贡献很小,但它们已经对环境和配电系统施加了重要的限制。太阳能吸收冷却是一种有趣的替代方法,它同时可以使太阳能对供热需求的贡献更大。但是,太阳能冷却设备相对于已知的DHW甚至加热设备具有几个特点,这就要求在设计和性能评估过程中结合更详细的方法和其他考虑因素。此外,太阳能吸收系统仍然存在一些局限性,这可能会使它们失去市场潜力,从而受益于其他太阳能制冷选项。在本文中,我们提供一些结论,这些结论是通过对最近在西班牙实施的一些首批商用太阳能采暖和制冷装置进行详细的TRNSYS动态仿真获得的经验得出的,并与其他太阳能制冷选件进行了比较分析。

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