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Time to re-think engineering design standards in a changing climate: the role of risk-based approaches

机译:在不断变化的气候中重新考虑工程设计标准的时间:基于风险的方法的作用

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The design and construction of the built environment requires explicitly addressing the risk-resilience tradeoff - too weak and the structure may fail, too strong and it will result in excess capacity, cost and embodied energy. This tradeoff is generally managed through the establishment of, and compliance with building standards and codes that often specify the exact methodology by which design parameters shall be calculated from environmental measurements of wind speeds, wave heights, flood levels and other environmental variables. Furthermore, these standards commonly legislate that historical data be used to calculate these design parameters. However, climate science has revealed that in some, if not many cases, these historical datasets may not be representative of future conditions and thus using historical data to develop design parameters for future long-lived infrastructure may increase the likelihood that the risk-resilience tradeoff becomes inadvertently skewed. Hence we now have a conundrum in that engineers are directed to design structures using standards that are based on time series on environmental parameters that we believe in some cases may be unrepresentative of the conditions which structures may face.
机译:建成环境的设计和建造需要明确解决风险与弹性之间的权衡问题-太弱了,结构可能会失效,太坚固,这将导致容量,成本和能量的过剩。通常通过建立并遵守建筑标准和规范来管理这种折衷,建筑标准和规范通常指定精确的方法,应根据该方法从风速,波浪高度,洪水位和其他环境变量的环境测量值中计算出设计参数。此外,这些标准通常规定使用历史数据来计算这些设计参数。但是,气候科学表明,在某些情况下(即使不是很多情况下),这些历史数据集也可能无法代表未来的状况,因此,使用历史数据来为未来的长期使用的基础设施开发设计参数可能会增加风险与风险权衡的可能性变得不经意地歪斜了。因此,我们现在面临一个难题,即工程师被要求使用基于环境参数的时间序列的标准来设计结构,我们认为在某些情况下,这些参数可能无法代表结构可能面临的条件。

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