弹性设计:利用居民拥堵的计算模型为大流行安全建筑的重新设计提供信息

F. P. Ortner, J. Tay
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引用次数: 0

摘要

本文介绍了为响应COVID-19大流行期间实施的安全距离措施而创建的计算设计支持工具。该工具是为一个具体用例开发的:了解2020年COVID-19传播率很高的拥挤的农民工宿舍的拥堵情况。通过基于代理和基于网络的计算模拟,该工具提供了一种混合方法,可以基于已知或预先确定的时间表和可能的行程来模拟建筑居民的移动。这种混合方法为设计工具提供了一种同时探索空间和时间设计场景的新方法。本文在一个高密度农民工宿舍的匿名案例研究中演示了该工具的使用,将基线配置的结果与修改宿舍物理配置和时间表的设计变化进行比较。设计方案之间的比较为反思宿舍的抗流行病设计和运营策略提供了证据。结论部分考虑了模型和案例研究结果在多大程度上适用于其他密集的机构建筑,并描述了本文对建筑环境中弹性的配置和操作方面的一般理解的贡献。
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Resilient by design: Informing pandemic-safe building redesign with computational models of resident congestion
This paper describes a computational design-support tool created in response to safe-distancing measures enforced during the COVID-19 pandemic. The tool was developed for a specific use case: understanding congestion in crowded migrant worker dormitories that experienced high rates of COVID-19 transmission in 2020. Building from agent-based and network-based computational simulations, the tool presents a hybrid method for simulating building resident movements based on known or pre-determined schedules and likely itineraries. This hybrid method affords the design tool a novel approach to simultaneous exploration of spatial and temporal design scenarios. The paper demonstrates the use of the tool on an anonymised case study of a high-density migrant worker dormitory, comparing results from a baseline configuration against design variations that modify dormitory physical configuration and schedule. Comparisons between the design scenarios provide evidence for reflections on pandemic-resilient design and operation strategies for dormitories. A conclusions section considers the extent to which the model and case study results are applicable to other dense institutional buildings and describes the paper’s contributions to general understanding of configurational and operational aspects of resilience in the built environment.
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来源期刊
CiteScore
3.20
自引率
17.60%
发文量
44
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