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Coordination of Advanced Enclosures

机译:协调先进的外壳

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摘要

Innovative facades transform buildings into landmarks regardless of location and are essential to the building's architectural design and performance. Facade performance relies on an in-depth understanding of materials, the environment, and construction. This understanding (along with the ability to integrate the facade's air, water, vapor, and thermal barriers with other enclosure elements and building systems) leads to efficient and sustainable projects. Lasting building performance not only relies on continuity of these barriers but also on an integrated approach to the design, analysis, fabrication, and construction of building enclosures. The design of facade details depends on a range of both technical and aesthetic factors, including the cladding types, glazing assembly profiles, structural attachment, fabrication methods, and installation sequencing. This requires that designers integrate the performance of the various facade components as well as the process from design conception to final construction. This paper will explain how field performance is achieved by designing for construction through the review of several case studies that focus on developing details for various facade conditions. The case studies will cover: (1) types of facade components that lead to difficult integrations; (2) proactive detailing and coordination methods that lead to better-performing and constructible facades; (3) technology, such as analysis and three-dimensional modeling, that assists with coordination, validating performance through analysis, and integrating design with fabrication and construction; (4) applying advanced enclosures techniques to all projects, regardless of size, complexity, or cost.
机译:无论位置,创新的外墙将建筑物变为地标,对建筑物的建筑设计和性能至关重要。立面性能依赖于对材料,环境和建筑的深入了解。这种理解(以及与其他外壳元件和建筑系统相结合的外观空气,水,蒸汽和热障碍的能力)导致有效和可持续的项目。持久的建筑性能不仅依赖于这些障碍的连续性,而且还依赖于设计,分析,制造和建筑外壳的综合方法。门面细节的设计取决于技术和审美因素的范围,包括包层类型,玻璃装配型材,结构附件,制造方法和安装测序。这要求设计人员集成了各种外立组件的性能以及从设计概念到最终结构的过程。本文将通过审查几种案例研究来解释如何通过设计施工来实现现场性能,这些案例研究专注于开发各种外立条件的细节。案例研究将涵盖:(1)导致困难集成的立面部件类型; (2)主动细节和协调方法,导致更好地表现和结构性外形; (3)技术,如分析和三维建模,有助于协调,通过分析验证性能,并通过制造和构造整合设计; (4)向所有项目应用先进的外壳技术,无论大小,复杂性或成本如何。

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