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SCULPTED HIGH-RISE: THE AL HAMRA TOWER

机译:雕塑高楼:阿尔哈姆拉塔

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With a roof height of 412m, the Al Hamra Tower is set to be amongst the tallest buildings in the world. Setting it apart from other super high-rise towers is its unique sculpted form. An example of architectural expression through structural form on a grand scale, the structural system and exterior form were developed in a symbiotic digital design process. The building geometry is generated by a spiraling slice subtracted from a simple prismatic volume. The spiraling building form results in a dramatic cantilevered office wing that wraps around an exterior courtyard. The two resultant cut surfaces are hyperbolic paraboloid reinforced-concrete walls, extending the full tower height and participating in the lateral and gravity systems.rnThe design of the Al Hamra Tower required consideration of challenging engineering issues complicated by both the height and form of the structure. As one of the few reinforced concrete super high-rise buildings, long-term creep and shrinkage of concrete was carefully studied to account for force redistributions and to develop an extensive program of displacement pre-corrections made during construction. The spiraling hyperbolic paraboloid 'flared walls' required for gravity load support of the cantilevered wing of the building, apply a torsional gravity load to the building core that necessitates consideration of both the long-term vertical and torsional deformations of the building structure.
机译:Al Hamra塔的屋顶高度为412m,将成为世界上最高的建筑之一。它与其他超高层塔楼不同的是其独特的造型。通过共生的数字设计过程开发了通过结构形式进行大规模建筑表达的示例,结构系统和外部形式得以开发。建筑的几何形状是通过从简单的棱柱体体积中减去螺旋形切片而生成的。螺旋形的建筑形式形成了一个引人注目的悬臂办公楼,环绕着外部庭院。最终形成的两个切割面是双曲线的抛物面钢筋混凝土墙,扩展了塔的整个高度,并参与了侧向和重力系统。rn哈姆拉塔的设计需要考虑复杂的工程问题,同时还要考虑结构的高度和形式。作为为数不多的钢筋混凝土超高层建筑之一,对混凝土的长期蠕变和收缩进行了认真研究,以考虑力的重新分配并制定出在施工过程中进行位移预校正的广泛程序。支撑建筑物悬臂的重力负载所需要的螺旋双曲线抛物面“张开的墙”,将扭转重力负载施加到建筑核心,这需要同时考虑建筑物结构的长期垂直和扭转变形。

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