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Robust and resilient buildings: A framework for defining the protection against climate uncertainty

机译:强大而有弹性的建筑物:一个框架,用于定义气候不确定性的保护

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The design of high-performance buildings has been questioned for their actual performance in operation, where the impact of external perturbations such as occupant behavior and climate has proved to be prominent. These sources of variability, called aleatory uncertainties, are inherent variations of nondeterministic systems and are irreducible. Therefore, one of the main approaches to deal with these uncertainties is to consider them as noise during the design phase. The goal of the design is hence achieving a solution whose performance is least sensitive to the noise. This specific design process is called robust design. In this study, a prospect of climate conditions that a building might face during its lifespan is identified. However, although robust design can support the design of building variants whose performance is insensitive to typical climate conditions and also predictable extreme climate conditions, these building variants cannot be considered protected in case of unforeseeable extreme events. During such events, another property called resilience is required, which focuses on withstanding and recovering during and after the occurrence of the event. This study reviews the concepts of robustness and resilience and organizes them into a framework that clarifies their relationships in the protection of buildings against climate uncertainties.
机译:高性能建筑的设计已经质疑他们的实际业绩,外部扰动如乘员行为和气候的影响已经证明是突出的。这些可变性来源称为梯级不确定性,是非季度系统的固有变化,并且是不可缩短的。因此,处理这些不确定性的主要方法之一是在设计阶段考虑它们作为噪音。因此,设计的目标是实现了一种对噪声最不敏感的解决方案。这种特定的设计过程称为鲁棒设计。在本研究中,确定了建筑物在寿命期间可能面临的气候条件的前景。然而,尽管强大的设计可以支持构建变种,其性能不敏感,典型的气候条件下,也可预见的极端气候条件下的设计,这些建筑的变体不能被认为是无法预见的极端事件的情况下保护。在此类事件期间,需要另一个称为弹性的财产,这侧重于事件发生期间和之后的承受和恢复。这项研究审查了稳健性和恢复力的概念,并将其组织成一个框架,阐明了他们在保护建筑物中防止气候不确定性的关系。

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