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Evaluating the potential for energy savings on lighting by integrating fibre optics in buildings

机译:通过将光纤集成到建筑物中来评估照明节能的潜力

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The effective integration of an artificial lighting system and daylight in buildings occurs only when the artificial lighting system can be switched on or off as a function of daylight levels reaching the working surface of spaces. The paper considers fibre optics technology as a means of supplementing the daylight received at the rear of rooms and the subsequent integration of the total daylight received with a controlled artificial lighting system. Such an approach would contribute not only to energy savings but also to a reduction in environmental pollution. The evaluation took place using the climatic data from seven cities in Brazil and one in the UK. Results showed that by effectively integrating daylight from windows in buildings with the artificial lighting system, energy savings ranging from 17.7% to 92.0% could be achieved in the seven cities in Brazil and savings ranging from 10.8% to 44.0% could be achieved in the UK. By incorporating fibre optic technology into the system, the potential for energy savings on lighting was then found to range from 8.0% to 82.3% for the cities in Brazil and from 56.0% to 89.2% in the UK. For the city in the UK, it was further shown that there would be a reduction in carbon dioxide emission of 122 kg/m~2 of built area per year if daylight from windows were integrated with the artificial lighting system, and that this would increase to 138 kg/m~2 per year if fibre optics technology were to be installed.
机译:人造照明系统和建筑物中日光的有效整合只有在人造照明系统可以根据到达空间工作表面的日光水平开启或关闭时才会发生。本文将光纤技术视为补充房间后方接收的日光以及随后将接收到的总日光与受控的人工照明系统集成的一种手段。这种方法不仅有助于节能,而且有助于减少环境污染。评估是使用来自巴西七个城市和英国一个城市的气候数据进行的。结果表明,通过将建筑物窗户的日光与人工照明系统进行有效整合,在巴西的七个城市中,节能量可达到17.7%至92.0%,而在英国,则可节能10.8%至44.0%。 。通过将光纤技术集成到系统中,发现巴西城市照明的节能潜力为8.0%至82.3%,英国为56.0%至89.2%。对于英国的城市,进一步表明,如果将窗户的日光与人工照明系统集成在一起,每年可减少的二氧化碳排放量为122 kg / m〜2建筑面积,并且这将增加如果要安装光纤技术,则可达到每年138 kg / m〜2。

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