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Solar outdoor cooling in Qatar as new reality

机译:卡塔尔的太阳室外冷却作为新现实

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摘要

The outcomes of this groundbreaking synergetic study have been able to establish the viability of a sustainable, scalable and affordable cooling solution for an outdoor application in Lusail City, Doha, Qatar. The first segment of this study demonstrated the limitation of the proposed scheme as it was able to meet only 90% of the cooling demand There are few days in the year; when direct solar irradiation is low, the outputs of the solar conversion system will not meet the heat demand of the thermally driven cooling machine To ensure optimal human thermal comfort within the playground, another supplementary source of energy must be considered and adequate thermal storage capacity is needed to ensure uninterrupted cooling source at the evening. From an economic standpoint, this study has also been able to demonstrate the cost-effectiveness of the proposed solution as the cost per kWh of the produced cooling energy is estimated to 20 ?cents while the cost of the initial scheme was 35 ?cents. Detailed analysis is showing also that there could be a further cost reduction if the surplus heat energy produced by the solar field could be utilized or absorbed by another source at periods when it is not required by the cooling system.
机译:这种开创性协同研究的结果已经能够为卢萨尔市,多哈,卡塔尔的户外应用建立可持续,可扩展和实惠的冷却解决方案的可行性。本研究的第一个部分证明了拟议方案的限制,因为它能够达到90%的冷却需求,即年度几天;当直接太阳照射低时,太阳能转换系统的输出将不符合热电驱动冷却机的热需求,以确保游乐场内最佳的人类热舒适性,必须考虑另一个补充能源来源,并且足够的热存储容量是需要确保晚上不间断的冷却源。从经济的角度来看,该研究也能够证明所提出的解决方案的成本效益,因为估计产生的冷却能量的每千瓦时的成本估计为20?美分,而初始方案的成本为35?美分。详细分析还示出了如果在冷却系统不需要在时段不需要在时段由另一个源使用或被另一个源吸收的剩余热能,则可能存在进一步的成本降低。

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