Photobioreactors as a Dynamic Shading System Conceived for an Outdoor Workspace of the State Library of Queensland in Brisbane: Study of Daylighting Performances
Q2 Energy
V. L. Verso, Matin H.S. Javadi, S. Pagliolico, Corrado Carbonaro, G. Sassi
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Abstract
In the field of responsive shading systems, the use of photobioreactors (PBRs) containing microalgae seems to be a promising technology. Within this framework, this paper presents a case study where a PBR was specifically conceived as a shading system for an external workspace located on an open terrace of the State Library of Queensland (SLQ) in Brisbane. The proposed shading system makes use of PBRs as translucent screening elements, capable of regulating natural light to provide adequate visual comfort for a multi-purpose workspace, despite exposure of the site to direct sunlight and fluctuating weather conditions. The microalgae (Scenedesmus Obliquus) cultivated within the shading elements contribute to improving the environment by bio-sequestrating CO2 and producing oxygen. They are also a valuable raw material containing bioactive compounds with various applications including nutraceutical products, livestock feed, and biofuel synthesis. In addition, their green pigmentation is visually engaging and allows for the filtration of solar radiation. The paper focuses on analyzing the daylight performance in the outdoor workplace under the PBR shade. The biomass density of the PBR is adjustable across a wide range of light transmittances (10%-80%) to counter the highly variable outdoor conditions. For different Tv values, illuminance values were calculated using the simulation tool DIVA-for-Rhino and then analyzed as both point-in-time illuminance in June, September and December, and through climate-based daylight metrics such as the Daylight Autonomy and the Useful Daylight Illuminance. As a further step, the daylighting performances were compared to two other climates (Turin, Italy, and Dubai, United Arab Emirates), to verify which setting of the PBR may be suitable for different boundary conditions, thus making the system more widely applicable. The results in Brisbane showed that for clear sky conditions, higher levels of biomass saturation are needed (Tv < 20%) to remain in the 300-3000 lx ‘optimal’ illuminance comfort range, with lower concentrations (Tv < 30%) to remain within the 300-6000 lx ‘acceptable’ illuminance comfort range. Differently, in overcast sky conditions, the optimal range of illuminance is easily obtained with reduced levels of biomass saturation (Tv < 80%). © 2019 The Author(s). Published by solarlits.com. This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
布里斯班昆士兰州立图书馆室外工作空间的光生物反应器动态遮阳系统:采光性能研究
在响应遮光系统领域,使用含有微藻的光生物反应器(PBRs)似乎是一种很有前途的技术。在这个框架内,本文提出了一个案例研究,其中PBR被专门设想为位于布里斯班昆士兰州立图书馆(SLQ)开放露台上的外部工作空间的遮阳系统。拟议的遮阳系统利用PBRs作为半透明的遮挡元件,能够调节自然光,为多用途工作场所提供足够的视觉舒适性,尽管现场暴露在阳光直射和多变的天气条件下。在遮荫元件中培养的微藻(Scenedesmus Obliquus)通过生物封存CO2和产生氧气来改善环境。它们也是一种含有生物活性化合物的有价值的原料,具有多种应用,包括营养品、牲畜饲料和生物燃料合成。此外,它们的绿色色素沉着在视觉上很吸引人,可以过滤太阳辐射。本文重点分析了PBR遮阳条件下室外工作场所的采光性能。PBR的生物量密度可在较宽的透光率范围内(10%-80%)进行调节,以应对高度可变的室外条件。对于不同的Tv值,使用Rhino的模拟工具DIVA计算照度值,然后将其作为6月、9月和12月的时间点照度进行分析,并通过基于气候的日光指标(如日光自主性和有用日光照度)进行分析。作为进一步的步骤,将采光性能与其他两种气候(意大利都灵和阿拉伯联合酋长国迪拜)进行了比较,以验证PBR的哪种设置可能适合不同的边界条件,从而使该系统更广泛地适用。布里斯班的研究结果表明,在晴朗的天空条件下,需要更高水平的生物量饱和度(Tv<20%)才能保持在300-3000 lx的“最佳”照度舒适范围内,而较低的浓度(Tv<30%)则保持在300-6000 lx的“可接受”照度舒适范围内。不同的是,在阴天条件下,随着生物量饱和度的降低(Tv<80%),很容易获得最佳照度范围。©2019作者。由solarlists.com发布。这是一篇基于CC by许可证的开放访问文章(http://creativecommons.org/licenses/by/4.0/)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。