导出葡萄牙办公建筑的室内环境指数

IF 2.1 4区 计算机科学 Q3 COMPUTER SCIENCE, HARDWARE & ARCHITECTURE
J. Gomes, H. Esteves
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引用次数: 5

摘要

2002年,欧盟委员会发布了一项旨在降低建筑能耗的指令,该指令被欧盟成员国采纳,并于2006年生效。葡萄牙在2006年通过颁布法令采用了这一方法,该法令不仅考虑了节能方面,还考虑了旨在保护室内空气质量(IAQ)的额外具体措施。这项新法规目前正在实施,有必要为规定的室内空气限制规定合规接受水平。舒适度或环境指标的使用对改善室内空气质量的评价有很大的帮助。本文提出了一种综合考虑热舒适性和无毒性的室内空气质量指标。拟议的指数是为几个欧洲国家的办事处计算的,可以从以前的研究中得到,也可以为葡萄牙计算。考虑到现有数据很少,本研究与提出的指数是一致的,因为获得的值与希腊相似,与葡萄牙的情况有几个相似之处。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Deriving an indoor environmental index for portuguese office buildings
In 2002, the European Commission (EU) issued a Directive aiming to reduce the energy consumption of buildings, which was adopted by the EU member states and came into force in 2006. Portugal adopted it by issuing law decrees in 2006 which considered not only the energy saving aspects but also additional specific measures aiming to protect indoor air quality (IAQ). This new legislation is now being enforced, and it will be necessary to define compliance acceptance levels for the prescribed indoor air limits. The use of comfort or environmental indexes could be of considerable help to ameliorate the evaluation of IAQ. This paper presents a proposal of an index regarding IAQ which considers both the aspects of thermal comfort and non-toxicity. The proposed index was calculated for offices of several European countries, available from previous studies and for Portugal as well. Bearing in mind there is few existing data, this study is consistent with the proposed index, as the obtained values are similar to Greece, which has several similarities with the Portuguese situation.
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来源期刊
ACM Journal on Emerging Technologies in Computing Systems
ACM Journal on Emerging Technologies in Computing Systems 工程技术-工程:电子与电气
CiteScore
4.80
自引率
4.50%
发文量
86
审稿时长
3 months
期刊介绍: The Journal of Emerging Technologies in Computing Systems invites submissions of original technical papers describing research and development in emerging technologies in computing systems. Major economic and technical challenges are expected to impede the continued scaling of semiconductor devices. This has resulted in the search for alternate mechanical, biological/biochemical, nanoscale electronic, asynchronous and quantum computing and sensor technologies. As the underlying nanotechnologies continue to evolve in the labs of chemists, physicists, and biologists, it has become imperative for computer scientists and engineers to translate the potential of the basic building blocks (analogous to the transistor) emerging from these labs into information systems. Their design will face multiple challenges ranging from the inherent (un)reliability due to the self-assembly nature of the fabrication processes for nanotechnologies, from the complexity due to the sheer volume of nanodevices that will have to be integrated for complex functionality, and from the need to integrate these new nanotechnologies with silicon devices in the same system. The journal provides comprehensive coverage of innovative work in the specification, design analysis, simulation, verification, testing, and evaluation of computing systems constructed out of emerging technologies and advanced semiconductors
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