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Resilience in the built environment: How to evaluate the impacts of flood resilient building technologies?

机译:建筑环境中的弹性:如何评估洪水弹性建筑技术的影响?

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The EU floods directive and its transcription into national legislation request exposed citizens and organisations to take individual measures to reduce flood risks on building scale. In response to that issue, a number of general approaches to buildings in flood risk areas and a set of strategies and technical guidance for the design and construction of flood resilient buildings have been developed in recent years. Particularly flood resilient building materials and constructions (FReMaCo), e.g. adapted exterior wall systems or floor arrangements, are expected to provide a considerable potential to limit flood damage if, for example, aperture technologies cannot stop water entering the building. However, there are significant uncertainties about the performance of FReMaCo that impede their comparison and hamper their uptake. To reduce those obstacles the paper discusses the application of the analytic hierarchy process (AHP) (i) to quantify and to compare the physical flood vulnerability of various building constructions and (ii) to evaluate and to rank the impact of alternative FReMaCo options. The paper explores a set of eleven evaluation criteria ranging from statics criteria about buildings physics criteria up to durability criteria. The AHP generates a weight for each defined criterion and assigns a score for each FReMaCo option. Then, the AHP combines the criteria weights and the option scores to determine a global score for each construction alternative that evaluate the impact of FReMaCo options in a comprehensible manner. The application of AHP reduces the bias in the decision making process and is therefore of international interest, especially for those involved in improving the resilience properties of buildings.
机译:欧盟洪水指令及其转录国家立法要求公开公民和组织采取个别措施,减少建筑规模的洪水风险。为应对这一问题,近年来,已经开发了洪水风险领域的建筑物的许多普遍方法以及洪水弹性建筑的设计和建设的一系列策略和技术指导。特别是洪水弹性建筑材料和结构(FREMACO),例如,预计如果例如,如果孔径技术无法停止进入建筑物,则预期适用的外墙系统或地板布置。然而,关于Fremaco的性能存在显着的不确定性,妨碍他们的比较并阻碍他们的吸收。为了减少这些障碍,讨论了分析层次过程(AHP)(i)的应用程序量化,并比较各种建筑结构的物理洪水脆弱性和(ii)评估和对替代FREMACO选项的影响进行评估。本文探讨了一组关于建筑物物理标准的估计标准的一组11评价标准,达到耐用性标准。 AHP为每个定义的标准生成权重,并为每个FREMACO选项分配分数。然后,AHP将标准权重和选项分数组合以确定每个构建替代方案的全局得分,以可理解的方式评估Fremaco选项的影响。 AHP的应用减少了决策过程中的偏差,因此是国际兴趣,特别是对于参与改善建筑物的恢复性质的人。

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