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Solar air conditioning and its role in alleviating the energy crisis of the Mediterranean hotels

机译:太阳能空调及其在缓解地中海酒店能源危机中的作用

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The Intergovernmental Panel on Climate Change (IPCC) has estimated that the Mediterranean region could experience an increase in annual mean temperatures up to 4.5 °C by 2080. Within the same time frame the fossil fuel stocks are predicted to diminish resulting in ever increasing fuel prices. Furthermore, there is continuous political pressure to impose greenhouse gas levies and quotas for industries and services alike, thus adding into their operational expenditures should they exceed their carbon quotas. Hotel industry in particular is predicted to suffer from the direct and indirect effects of climate change and increasing fuel prices. Not only are their operating costs bound to increase but in addition they may suffer from reduced tourist flows if and when the airline industry is forced to increase travel prices. It is in this context of a predicted 'energy crisis' within the hotel industry that this study was undertaken in order to evaluate the extent to which hotels can future proof their operations. Integration of renewable energy sources into hotel operations is perceived as the most promising form of crisis mitigation. In the Mediterranean region the availability of solar irradiation is abundant and free from mi-croclimatic limitations associated with wind energy in comparison. Therefore, solar assisted air conditioning was identified as a key strategy because its operational principal dictates that the greatest availability of energy coincides with the peak demands. The aim of this paper is to review the currently available solar air conditioning technologies, their energy saving potential and technical limitations. The study is based on a literature review supplemented with information available from equipment vendors. Subsequently, the objective of this paper is to set solar air conditioning equipment selection criteria that could assist hotels of various service classes in their energy planning and equipment upgrades.
机译:政府间气候变化专门委员会(IPCC)估计,到2080年,地中海地区的年平均温度可能会上升到4.5°C。在同一时期内,预计化石燃料的库存将减少,从而导致燃料价格不断上涨。此外,持续不断的政治压力要求对工业和服务业征收温室气体税和配额,因此,如果它们超过其碳配额,则会增加其运营支出。预计尤其是酒店业将受到气候变化和燃料价格上涨的直接和间接影响。如果航空业被迫提高旅行价格,不仅他们的运营成本必然会增加,而且他们可能会受到游客流量减少的困扰。正是在这种旅馆业内部预计的“能源危机”的背景下进行了这项研究,以评估旅馆将来可以证明其经营活动的程度。将可再生能源整合到酒店运营中被认为是缓解危机的最有希望的形式。与之相比,在地中海地区,太阳辐射的可获得性非常丰富,并且没有与风能有关的微气候限制。因此,太阳能辅助空调被确定为一项关键策略,因为其运行原理要求最大的能源利用率与高峰需求相吻合。本文的目的是回顾当前可用的太阳能空调技术,其节能潜力和技术局限性。该研究基于文献综述,并补充了设备供应商提供的信息。随后,本文的目的是设定太阳能空调设备的选择标准,以帮助各种服务级别的酒店进行能源规划和设备升级。

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