首页> 外文期刊>The Structural Design of Tall and Special Buildings >Morphogenesis of a bundled tall building: Biomimetic,structural, and wind-energy design of a multi-core-outrigger system combined with diagrid
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Morphogenesis of a bundled tall building: Biomimetic,structural, and wind-energy design of a multi-core-outrigger system combined with diagrid

机译:捆绑高层建筑的形态发生:多核心突破系统的仿生,结构和风能设计与仿古组合

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摘要

Skyscrapers are among the most distinctive building types of the modern age. Since many resources are attributed to these buildings, their design should consider a proper performance-based construction economy and environmental sustainable development. This research introduces a new concept for a bundled tall building founded on the use of a multi-core-outrigger system, which is additionally enriched with diagrid structures. The concept is inspired by the bamboo plant and follows the biomimetic design principles for the structural organization and performance-based criteria for optimizing the lateral stiffness and for shaping the cross section. Particularly, the incident wind speed is maximized to exploit Vertical Axis Wind Turbines (VAWTs), which are located along the whole building height at the center of the bundled towers. The building morphogenesis is accomplished by a multistep methodology that is fully developed in a parametric environment and includes structural and computational fluid dynamic analyses. With the aim of validating the proposed concept, a case study of a 320-m-tall three-core building has been designed for the city of Pisa, Italy. The use of VAWTs results in an annual emissions reduction of about 10 kgCO(2)/m(2).
机译:摩天大楼是现代时代最独特的建筑类型之一。由于许多资源归因于这些建筑,他们的设计应考虑基于适当的基于性能的建筑经济和环境可持续发展。本研究介绍了一个关于在使用多核外舷外系统的捆绑的高层建筑的新概念,该系统另外富含无核心结构。该概念受到竹厂的启发,并遵循用于结构组织的仿生设计原理和基于性能的标准,以优化横向刚度和横截面塑造横截面。特别地,入射风速最大化以利用垂直轴风力涡轮机(VAWTS),其沿着捆绑塔的中心的整个建筑物高度定位。建筑物形态发生是通过在参数环境中完全开发的多步骤方法来实现的,包括结构和计算流体动态分析。目的是验证所提出的概念,为意大利比萨市设计了对320平方大高的三核建筑的案例研究。 VAWTS的使用导致年排放约10kgco(2)/ m(2)。

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