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Increasing water and energy efficiency in university buildings: a case study

机译:提高大学建筑的水和能源效率:案例研究

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Nowadays, humanity is consuming unsustainably the planet's resources. In the scope of energy resource consumption, e.g., the intense use of fossil fuels has contributed to the acceleration of climate changes on the planet, and the overriding need to increase energy efficiency in all sectors is now widely recognized, aiming to reduce greenhouse gases (GHG) emissions by 69% in 2030. Largely due to climate changes, water has also become a critical resource on the planet and hydric stress risk will rise significantly in the coming decades. Accordingly, several countries will have to apply measures to increase water efficiency in all sectors, including at the building level. These measures, in addition to reducing water consumption, will contribute to the increase of energy efficiency and to the decrease of GHG emissions, especially of CO2. Therefore, the nexus water energy in buildings is relevant because the application of water efficiency measures can result in a significant contribution to improve buildings' energy efficiency and the urban water cycle (namely in abstraction, treatment, and pumping). For Mediterranean climate, there are few studies to assess the extent and impact of this nexus. This study presents the assessment of water-energy nexus performed in a university building located in a mainland Portugal central region. The main goals are to present the results of the water and energy efficiency measures implemented and to assess the consequent reduction of water, above 37%, and energy (30%) consumption, obtained because of the application of water-efficient devices and highly efficient light systems in the building. The water efficiency increase at the building level represents at the urban level an energy saving in the water supply system of 406 kWh/year, nearly 0.5% of the building energy consumption, with a consequent increase in the energy efficiency and in the reduction of GHG emissions. Complementarily, other energy-efficient measures were implemented to reduce the energy consumption. As the building under study has a small demand of domestic hot water with no hydro pressure pumps and has a small water-energy nexus, it was concluded that the significant reduction of the building energy consumption did not influence the indoor comfort.
机译:如今,人类正在消耗不可持续的星球的资源。在能源消耗范围内,例如,化石燃料的强烈使用促进了地球上的气候变化的加速,并且现在广泛认识到所有部门在所有部门中提高能源效率的迫切需要,旨在减少温室气体( GHG)排放量为69%,在2030年增加了69%。由于气候变化,水也成为地球上的关键资源,在未来几十年中将显着上升。因此,若干国家将不得不采取措施提高所有部门的水效,包括在建筑水平。这些措施,除了降低耗水量之外,还会有助于提高能源效率和降低温室气体排放,特别是CO2。因此,建筑物中的Nexus水能是相关的,因为水效措施的应用可能导致改善建筑物能效和城市水循环的显着贡献(即在抽象,治疗和抽水中)。对于地中海气候,很少有研究可以评估这种Nexus的程度和影响。本研究提出了在位于葡萄牙中部地区大陆的大学大楼进行的水能Nexus评估。主要目标是提出实施的水和能效措施的结果,并评估水的降低,高于37%和能量(30%)消费,因为应用了水有效的装置和高效建筑物的光系统。建筑水平的水效率增加于城市等级的供水系统节能406千瓦时/年,占建筑能源消耗的近0.5%,随后的能源效率和减少温室气体排放。互补地,实施了其他节能措施,以降低能源消耗。由于该建筑的建筑物具有较小的国内热水需求,没有水力压力泵并且具有小的水能Nexus,它的结论是建筑能源消耗的显着降低不会影响室内舒适度。

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