利用模块化建筑提高城市抗灾能力:综合可持续性评估框架

Mohammad Kamali , Kasun Hewage , Anber Rana , Shahria Alam , Rehan Sadiq
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引用次数: 0

摘要

鉴于全球可持续建筑战略的快速增长以及民用基础设施弹性的重要性,采用最佳实践至关重要。模块化建筑就是这样一种实践,在弹性、施工时间、资源效率和可持续性方面被认为是传统建筑的更好选择。然而,模块化建筑的持续扩张依赖于量化和评估其可持续性和所谓的效益。本文通过一个集成的多层次决策支持框架,开发并检验了单户住宅模块化可持续发展绩效实证评价的可行性。标准和指标的制定和计算,基准规模的建立,从文献和调查中收集定量和定性数据,以及多标准决策分析是该框架的独特方面。位于加拿大奥肯那根地区的两个案例研究结果表明,模块化住宅在与环境和经济因素相关的多个指标和水平上比传统住宅具有更高的可持续性。模块化住宅的生态效率值分别为62.5和56.0,属于较高的性能范围。拟议的框架在审查可持续性的不同方面提供了灵活性,为提高整体可持续性需要解决的关键参数提供了宝贵的见解。本研究整合了生命周期思维和决策,有助于建筑行业、市政当局、政府和决策者在城市发展中选择合适的建筑方法,做出明智的决策,并朝着更具弹性和可持续性的方向发展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Advancing urban resilience with modular construction: An integrated sustainability assessment framework
Given the rapid growth of sustainable construction strategies globally and the importance of resiliency in civil infrastructure, it is crucial to adopt best practices. Modular construction is one such practice and is considered a better alternative to conventional construction in terms of resilience, construction times, resource efficiency, and sustainability. However, the continued expansion of modular construction relies on quantifying and evaluating its sustainability and the purported benefits. This paper develops and checks feasibility through an integrated multi-level decision support framework to empirically evaluate the sustainability performances of single-family residential modular homes. Criteria and indicator development and calculation, benchmark scale establishment, quantitative and qualitative data collection from literature and surveys, and multi-criteria decision analysis are unique aspects of this framework. The results of the two case studies located in the Okanagan region, Canada showed that modular homes perform at a higher level of sustainability than their conventional counterparts across multiple metrics and levels related to environmental and economic factors. The modular homes scored eco-efficiency values of 62.5 and 56.0, respectively and fell into higher performance range. The proposed framework offers flexibility in examining different dimensions of sustainability, providing valuable insights into the key parameters that need to be addressed to enhance overall sustainability. This research, which integrates life cycle thinking and decision-making, helps the construction industry and, municipalities, governments, and policymakers in making informed decisions on the selection of suitable construction methods in city developments and move towards a more resilient and sustainable sector.
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