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Creative Solutions with Custom Curtain Wall Design

机译:带定制幕墙设计的创意解决方案

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Designing custom glazing systems, such as structural glass walls or unitized curtain walls, can be a complex task that can vary widely from project to project. The level of complexity is typically driven by the architectural goals, constraints, and performance objectives. Similar to what a designer must consider with a standard system, performance criteria such as wind loads, wind-driven rain resistance, and thermal performance for the system must be met. In addition, fabrication limits and installation constraints limit what a designer can develop to meet these requirements. This paper examines a case study and the process of building enclosure design for a custom unitized glazed curtain wall as part of the renovation and expansion of an existing building. The curtain wall system includes two system variations, one of which incorporates integral balconies and the other vertical louvers that span floors. This paper will provide an example for the industry of the versatility of curtain wall and how creative design solutions can be developed in the face of difficult constraints. Additionally, this case study is an example of how an existing building can be upgraded to meet both contemporary energy performance requirements and architectural vision. Further, it will demonstrate the value in taking a multifaceted approach to design to facilitate coordination between the architectural, structural, mechanical, and enclosure teams. The increasingly integrated design required will begin to demand this type of coordination at a minimum to meet developing energy, mechanical, and building codes without compromising the architectural intent.
机译:设计定制玻璃系统,如结构玻璃墙或有组织的幕墙,可以是一个复杂的任务,可以从项目到项目中广泛变化。复杂程度通常由架构目标,约束和性能目标驱动。类似于设计师必须考虑的标准系统,必须满足风力负载,风力驱动的防雨和系统的热性能等性能标准。此外,制造限制和安装限制限制了设计人员可以开发以满足这些要求。本文介绍了一个案例研究和建筑外壳设计的过程,为定制的集合玻璃窗帘墙作为现有建筑物的改造和扩展的一部分。幕墙系统包括两个系统变化,其中一个系统变形包括整体阳台和跨越地板的另一个垂直百叶窗。本文将为幕墙的多功能性和创造性设计解决方案在困难的限制方面提供一个例子。此外,这种情况研究是如何升级现有建筑以满足当代能源性能要求和建筑视觉的一个例子。此外,它将展示采用多方面设计方法的价值,以便于建筑,结构,机械和外壳团队之间的协调。所需的越来越多的设计将开始最小地要求这种类型的协调,以满足发展能源,机械和建筑规范,而不会影响建筑意图。

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