1公里高摩天大楼“生物构造”的节能小气候配置原则

O. Krivenko, V. Mileikovskyi, T. Tkachenko
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引用次数: 5

摘要

从室内空气质量、环境和建筑安全的要求出发,论述了上层建筑健康人居环境的形成。介绍了超高层多功能建筑“Biotecton”(高度1000米)的开发成果。为了有效地克服风和地震荷载,使用了自然形式的结构原理(Gramineae茎,小黑麦)。它是一个多层空间结构,在其节点上有限制振荡运动的阻尼器。为解决提高通风空调能效的问题,研究了在人为污染最小的情况下,利用1000 m高空空气。研究了上层建筑中空气运动的两种机制:自然冲动(在重力压力和风的作用下)和机械(风扇)。结果表明,自然压力不足以使空气运动。机械脉冲是必要的,但它的能量需求可以通过一种可再生能源来补偿——总容量为5.3兆瓦的风力涡轮机。为了提高空气质量,在绿色区域使用“氧气花园”,沿着建筑的整个高度均匀分布。该研究提出了一份植物清单,这些植物可以有效地净化污染的空气,封存多余的二氧化碳,向空气中富集氧气,并释放出有效对抗病原微生物的植物杀灭剂。
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The Principles of Energy Efficient Microclimate Provision in the Skyscraper “Biotecton” of 1 km Height
The article deals with the formation of a healthy human living environment in superstructure buildings with the requirements of indoor air quality, environmental and constructive safety. The results of the development of "Biotecton" - an ultra-high-rise multi-functional building (the height is 1000 m) are presented. In order to effectively overcome the wind and seismic loads, the principles of the structure of the natural form (Gramineae stems, Triticale) are used. It is a multi-tiered spatial structure, in the nodes of which there are dampers for limiting oscillatory movements. For solving the problems of increasing the energy efficiency of ventilation and air conditioning, the use of air from height 1000 m with the minimum of anthropogenic pollution is investigated. Two mechanisms of the movement of air in a superstructure were investigated: natural impulses (under the action of gravitational pressure and wind) and mechanical (fans). It is shown that the natural pressure is insufficient for air movement. The mechanical impulse is necessary, but its energy requirement can be compensated by a renewable energy source - wind turbines with a total capacity of 5.3 MW. For high air quality, the use of "oxygen gardens" in green areas, which are evenly spaced along the entire height of the building, is explored. The study proposed a list of plants that effectively clean air from pollution, sequestrate excess CO2, enrich the air with oxygen and release phytoncides that effectively fight against pathogenic microorganisms.
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