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Parametric Creative Design of Building Free-Forms Roofed with Transformed Shells Introducing Architect’s and Civil Engineer’s Responsible Artistic Concepts

机译:带有变形壳的屋顶自由造型的参数化创意设计,介绍了建筑师和土木工程师的负责任艺术概念

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The article concerns a parametric description of unconventional building forms roofed with folded sheeting transformed elastically into shells. The description supports the designer in the search for attractive forms and a rational use of materials. The adoption of strictly defined sets of initial parameters determines the diversification of the designed architectural free-forms. An impact of selected proportions between these parameters on these forms is illustrated by an example of a single structure. Folded elevations and a segmented shell roof make each such structure internally coherent and externally sensitive. The mutual position and proportions of the shape of all elements, such as the roof, eaves, and fa?ades, along with regular patterns in the same structure, determine this consistency of its form and sensitivity to harmonious incorporation into the natural or built environments. The study is a new insight into shaping free-forms of buildings in which the modern and ecological materials determine the important shape and mechanical limitations of these forms. With a skillful approach, the materials allow their extensive use in buildings. However, various interdisciplinary problems related to architectural shaping of free-forms and static and strength work thin-walled shell sheeting roofs must be solved. For effective design it is necessary to use relevant software applications, where spatial reasoning is crucial for ordering the three-dimensional space by means of simplified engineering models.
机译:这篇文章涉及对非常规建筑形式的参数化描述,该非常规建筑形式的屋顶被折叠成的薄片弹性地转化为壳体。该描述为设计师寻求有吸引力的形式和合理使用材料提供了支持。采用严格定义的初始参数集决定了设计的建筑自由形式的多样化。这些参数之间的选定比例对这些形式的影响通过单个结构的示例说明。折叠的标高和分段的壳顶使每个此类结构内部连贯且对外部敏感。所有元素(例如屋顶,屋檐和立面)的形状的相互位置和比例,以及同一结构中的规则图案,决定了其形式的一致性以及对和谐融入自然或建筑环境的敏感性。 。该研究是塑造建筑物自由形态的新见解,其中现代和生态材料决定了这些形态的重要形状和机械限制。通过熟练的方法,这些材料可以在建筑物中广泛使用。但是,必须解决与自由形式的建筑造型以及静态和强度工作薄壁薄板屋顶有关的各种跨学科问题。为了进行有效的设计,有必要使用相关的软件应用程序,其中空间推理对于通过简化的工程模型排序三维空间至关重要。

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