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Performance Assessment Strategies: A computational framework for conceptual design of large roofs

机译:性能评估策略:大型屋顶概念设计的计算框架

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Using engineering performance evaluations to explore design alternatives during the conceptual phase of architectural design helps to understand the relationships between form and performance; and is crucial for developing well-performing final designs. Computer aided conceptual design has the potential to aid the design team in discovering and highlighting these relationships; especially by means of procedural and parametric geometry to support the generation of geometric design, and building performance simulation tools to support performance assessments. However, current tools and methods for computer aided conceptual design in architecture do not explicitly reveal nor allow for backtracking the relationships between performance and geometry of the design. They currently support post-engineering, rather than the early design decisions and the design exploration process. Focusing on large roofs, this research aims at developing a computational design approach to support designers in performance driven explorations. The approach is meant to facilitate the multidisciplinary integration and the learning process of the designer; and not to constrain the process in precompiled procedures or in hard engineering formulations, nor to automatize it by delegating the design creativity to computational procedures. PAS (Performance Assessment Strategies) as a method is the main output of the research. It consists of a framework including guidelines and an extensible library of procedures for parametric modelling. It is structured on three parts. Pre-PAS provides guidelines for a design strategy-definition, toward the parameterization process. Model-PAS provides guidelines, procedures and scripts for building the parametric models. Explore-PAS supports the solutions-assessment based on numeric evaluations and performance simulations, until the identification of a suitable design solution. PAS has been developed based on action research. Several case studies have focused on each step of PAS and on their interrelationships. The relations between the knowledge available in pre-PAS and the challenges of the solution space exploration in explore-PAS have been highlighted. In order to facilitate the explore-PAS phase in case of large solution spaces, the support of genetic algorithms has been investigated and the exiting method ParaGen has been further implemented. Final case studies have focused on the potentials of ParaGen to identify well performing solutions; to extract knowledge during explore-PAS; and to allow interventions of the designer as an alternative to generations driven solely by coded criteria. Both the use of PAS and its recommended future developments are addressed in the thesis.
机译:在建筑设计的概念阶段,使用工程性能评估来探索设计方案有助于理解形式与性能之间的关系;对于开发性能良好的最终设计至关重要。计算机辅助概念设计有可能帮助设计团队发现并强调这些关系。特别是通过程序和参数几何来支持几何设计的生成,并通过构建性能仿真工具来支持性能评估。但是,当前用于计算机辅助概念设计的工具和方法在体系结构中没有明确揭示或允许回溯设计的性能和几何之间的关系。他们目前支持后期工程,而不是早期的设计决策和设计探索过程。专注于大型屋顶,本研究旨在开发一种计算设计方法来支持设计师进行性能驱动的探索。该方法旨在促进设计师的多学科整合和学习过程。而不是将流程限制在预编译的流程或严格的工程公式中,也不要通过将设计创造力委托给计算流程来使其自动化。 PAS(性能评估策略)作为一种方法是该研究的主要成果。它由一个包含指导原则的框架和一个用于参数化建模的可扩展程序库组成。它分为三个部分。前PAS为参数化过程的设计策略定义提供了指导。 Model-PAS提供了用于建立参数模型的指南,过程和脚本。 Explore-PAS支持基于数值评估和性能模拟的解决方案评估,直到确定合适的设计解决方案为止。 PAS是根据行动研究开发的。一些案例研究集中在PAS的每个步骤及其相互关系上。强调了预PAS中可用的知识与exploer-PAS中解决方案空间探索的挑战之间的关系。为了在解决方案空间较大的情况下促进explore-PAS阶段,研究了遗传算法的支持,并进一步实现了现有的ParaGen方法。最终案例研究着重于ParaGen识别表现良好的解决方案的潜力;在explaer-PAS期间提取知识;并允许设计师进行干预,以代替仅由编码标准驱动的一代人。本文讨论了PAS的使用及其建议的未来发展。

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