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Climate change impacts on rainfall extremes and urban drainage: state-of-the-art review

机译:气候变化对极端降雨和城市排水的影响:最新研究

摘要

Under the umbrella of the IWA/IAHR Joint Committee on Urban Drainage, the International Working Group on Urban Rainfall (IGUR) has reviewed existing methodologies for the analysis of long-term historical and future trends in urban rainfall extremes and their effects on urban drainage systems, due to anthropogenic climate change. Current practises have several limitations and pitfalls, which are important to be considered by trend or climate change impact modellers and users of trend/impact results. The review considers the following aspects:- Analysis of long-term historical trends due to anthropogenic climate change: influence of data limitation, instrumental or environmental changes, interannual variations and longer term climate oscillations on trend testing results.- Analysis of long-term future trends due to anthropogenic climate change: by complementing empirical historical data with the results from physically-based climate models, dynamic downscaling to the urban scale by means of Limited Area Models (LAMs) including explicitly small-scale cloud processes; validation of RCM/GCM results for local conditions accounting for natural variability, limited length of the available time series, difference in spatial scales, and influence of climate oscillations; statistical downscaling methods combined with bias correction; uncertainties associated with the climate forcing scenarios, the climate models, the initial states and the statistical downscaling step; uncertainties in the impact models (e.g. runoff peak flows, flood or surcharge frequencies, and CSO frequencies and volumes), including the impacts of more extreme conditions than considered during impact model calibration and validation.- Implications for urban drainage infrastructure design and management: upgrading of the urban drainage system as part of a program of routine and scheduled replacement and renewal of aging infrastructure; how to account for the uncertainties; flexible and sustainable solutions; adaptive approach that provides inherent flexibility and reversibility and avoids closing off options; importance of active learning.References:Willems, P., Olsson, J., Arnbjerg-Nielsen, K., Beecham, S., Pathirana, A., Bülow Gregersen, I., Madsen, H., Nguyen, V-T-V. (2012). Impacts of climate change on rainfall extremes and urban drainage. IWA Publishing, 252 p., Paperback Print ISBN 9781780401256; Ebook ISBN 9781780401263Willems, P., Arnbjerg-Nielsen, K., Olsson, J., Nguyen, V.T.V. (2012), ‘Climate change impact assessment on urban rainfall extremes and urban drainage: methods and shortcomings’, Atmospheric Research, 103, 106-118
机译:在IWA / IAHR城市排水联合委员会的领导下,国际城市降雨工作组(IGUR)审查了现有方法,以分析城市降雨极端事件的长期历史和未来趋势及其对城市排水系统的影响,由于人为气候变化。当前的做法有几个局限性和陷阱,趋势或气候变化影响建模者和趋势/影响结果的使用者必须考虑这些限制和陷阱。审查从以下方面考虑:-分析人为气候变化引起的长期历史趋势:数据限制,仪器或环境变化,年际变化和长期气候振荡对趋势测试结果的影响。-长期未来分析人为气候变化引起的趋势:通过将基于经验的历史数据与基于物理的气候模型的结果相补充,借助有限区域模型(LAM)将城市规模动态缩小至城市规模,包括明确的小规模云过程;对本地条件下的RCM / GCM结果进行验证,这些条件应考虑到自然可变性,可用时间序列的有限长度,空间尺度的差异以及气候振荡的影响;统计缩减方法和偏差校正;与气候强迫情景,气候模型,初始状态和统计缩减步骤相关的不确定性;影响模型中的不确定性(例如径流峰值流量,洪水或附加费频率以及CSO频率和体积),包括比在影响模型校准和验证过程中考虑的更极端条件的影响。-对城市排水基础设施设计和管理的影响:升级作为日常和预定更换和更新老化基础设施计划的一部分,城市排水系统的建设;如何解决不确定性;灵活和可持续的解决方案;提供固有的灵活性和可逆性并避免关闭期权的自适应方法;积极学习的重要性。参考文献:Willems,P.,Olsson,J.,Arnbjerg-Nielsen,K.,Beecham,S.,Pathirana,A.,BülowGregersen,I.,Madsen,H.,Nguyen,V-T-V。 (2012)。气候变化对极端降雨和城市排水的影响。 IWA出版,第252页,平装印刷版ISBN 9781780401256;电子书ISBN 9781780401263 Williams,P.,Arnbjerg-Nielsen,K.,Olsson,J.,Nguyen,V.T.V. (2012),“气候变化对城市极端降雨和城市排水的影响评估:方法和不足”,《大气研究》,第103期,第106-118页

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