多层建筑变密度木板系统中的钢筋布置

Luis Orozco, Anna Krtschil, Lior Skoury, J. Knippers, A. Menges
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引用次数: 2

摘要

多层木结构中立柱的布置及其间距受地板组件生产和运输尺寸的限制,仅限于矩形网格。对于空心箱地板系统来说尤其如此,因为必须将精确的支撑放置在空心箱的加固边缘。因此,立柱的布置及其间距受到箱形天花板到矩形网格的生产和运输尺寸的限制。为了克服这些设计限制,开发了一种新的木箱建筑系统,该系统通过定制的板状内部设计允许不规则的柱布局。无论场地形状或建筑设计意图如何,这种开发都可以提高木地板系统的适用性。楼板内部设计取决于产生的力和制造要求。开发并比较了三种内部板布局方法:顺序方法、基于结构的智能体方法和同时使用顺序方法和基于智能体方法的基于几何的智能体的方法。通过对建筑试验装置中三种钢筋布置的分析,比较了每种方法的结构性能。
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Arrangement of reinforcement in variable density timber slab systems for multi-story construction
The arrangement of columns and their spacing in multi-story timber construction is restricted to rectangular grids by the production and shipping sizes of floor assemblies. This is particularly true for hollow box floor systems, for which the punctual supports must be placed at the reinforced edges of the hollow boxes. The arrangement of the columns and their spacing is thereby restricted by the production and shipping sizes of the box ceilings to rectangular grids. To overcome these design limits a new wooden box building system is developed that allows for irregular column layouts through a tailored slab interior design. This development allows for the increased applicability of timber floor systems regardless of site shape or architectural design intent. The slab interior design is dependent on occurring forces and fabrication requirements. Three methods for the internal slab layout are developed and compared: a sequential method, a structurally informed agent-based method, and a geometrically informed agent-based method that uses both a sequential and agent-based approach. The structural performance of each method is compared through the analysis of three reinforcement layouts an architectural testing setup.
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来源期刊
CiteScore
3.20
自引率
17.60%
发文量
44
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