阿联酋整合可再生能源的加油站仿生设计

A. A. Raed, Alaa ahmed, Ammar Abdelhamid
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引用次数: 0

摘要

公路加油站位于阿联酋主要城市之外。将这些偏远的加油站与发电厂连接起来,需要挖电线杆或地下电缆的沟槽,以及无数小时的工作。将光伏太阳能电池板和变色玻璃等智能材料集成到设计和结构中,降低了成本和对环境的影响。尽管太阳能是世界上最便宜的能源之一,但实现反映城市身份的设计是具有挑战性的。现代技术使得设计师和建筑师很难平衡可持续性、形态和身份等主题。该研究的目标是探索使用智能技术提高性能的潜力,同时展示最适合阿联酋高速公路加油站优化能源的设计。例如,阿联酋的国树海棠树是一种文化和历史的象征,象征着稳定与和平,可以承受恶劣的环境。本研究介绍了一个加油站的参考设计。使用Autodesk Revit建立三维模型,使用Autodesk Insight程序建立能源模型作为参考案例。研究了几种不同表面积、形状、朝向和窗墙比的加油站设计,以优化能耗。绿洲的位置、面积和服务等变量将保持不变。研究得出结论,智能玻璃材料的动态特性不仅可以结合一个客观的可持续设计质量,而且还可以结合多个目标,包括能源效率要求,与周围环境和谐融合,在交通部门的发展中发挥关键作用。为了实现绿色、低碳的交通系统,加油站需要减少能源消耗。本研究介绍了阿联酋高速公路加油站的参考设计。建议的设计将节能建筑与来自阿联酋的经典方法的建筑概念相结合,这是沙漠或阿联酋的未来主义形象。
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BIOMIMICRY APPROACH DESIGN OF PETROL STATIONS WITH INTEGRATING RENEWABLE ENERGY IN THE UAE
Highway petrol stations are located outside the main cities in the UAE. Connecting these remote petrol stations to power plants requires trenching for poles or underground cables as well as countless hours of work. The integration of PV solar panels and smart materials such as chromogenic glazing into the design and structure reduces the cost and the environmental impact. Even though solar energy is one of the cheapest sources of energy worldwide, it is challenging to achieve a design that reflects the identity of the city. Modern technology makes it difficult for designers and architects to balance themes such as sustainability, formation, and identity. The goal of the research is to explore the potential of using smart technologies to improve performance and to demonstrate, simultaneously, the most suitable design for optimizing energy for highway petrol stations in the UAE. As an example, the national Ghaf tree of the UAE is a cultural and historical symbol of stability and peace that can withstand harsh environment. This study introduces a reference design for the petrol station. A three-dimensional model using Autodesk Revit and an energy model using the Autodesk Insight program is built for the reference case. Several designs for the petrol station with different surface areas, shape, orientation, and window-to-wall ratio are studied to optimize the energy consumption. Variables such as the location of the oasis, its area, and its services will remain constant. The study concludes that the dynamic characteristics of smart glazing materials can combine not only one objective sustainable design quality, but more than one, including energy efficiency requirements to harmoniously integrate with the surrounding environment play a key role in the development of the transportation sector. To achieve a green, low-carbon transportation system, petrol stations need to reduce their energy consumption. This study introduces a reference design for the highway petrol stations in UAE. The suggested designs integrate energy-efficient buildings with architectural concepts drawn from the classical approach of UAE which is the desert or the futuristic image of UAE.
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