首页> 外文期刊>Hydrology and Earth System Sciences >Coupled hydro-meteorological modelling on a HPC platform for high-resolution extreme weather impact study
【24h】

Coupled hydro-meteorological modelling on a HPC platform for high-resolution extreme weather impact study

机译:在HPC平台上进行耦合水文气象建模以进行高分辨率极端天气影响研究

获取原文
获取外文期刊封面目录资料

摘要

Impact-focused studies of extreme weather require coupling of accurate simulations of weather and climate systems and impact-measuring hydrological models which themselves demand larger computer resources. In this paper, we present a preliminary analysis of a high-performance computing (HPC)-based hydrological modelling approach, which is aimed at utilizing and maximizing HPC power resources, to support the study on extreme weather impact due to climate change. Here, four case studies are presented through implementation on the HPC Wales platform of the UK mesoscale meteorological Unified Model (UM) with high-resolution simulation suite UKV, alongside a Linux-based hydrological model, Hydrological Predictions for the Environment (HYPE). The results of this study suggest that the coupled hydro-meteorological model was still able to capture the major flood peaks, compared with the conventional gauge- or radar-driving forecast, but with the added value of much extended forecast lead time. The high-resolution rainfall estimation produced by the UKV performs similarly to that of radar rainfall products in the first 2–3 days of tested flood events, but the uncertainties particularly increased as the forecast horizon goes beyond 3 days. This study takes a step forward to identify how the online mode approach can be used, where both numerical weather prediction and the hydrological model are executed, either simultaneously or on the same hardware infrastructures, so that more effective interaction and communication can be achieved and maintained between the models. But the concluding comments are that running the entire system on a reasonably powerful HPC platform does not yet allow for real-time simulations, even without the most complex and demanding data simulation part.
机译:以影响为重点的极端天气研究要求将天气和气候系统的精确模拟与影响测量的水文模型结合起来,而这些模型本身需要更大的计算机资源。在本文中,我们对基于高性能计算(HPC)的水文建模方法进行了初步分析,该方法旨在利用和最大化HPC电源,以支持对气候变化引起的极端天气影响的研究。在这里,通过在具有高分辨率模拟套件UKV的英国中尺度气象统一模型(UM)的HPC威尔士平台上实施,以及基于Linux的水文模型,即环境水文预测(HYPE),介绍了四个案例研究。这项研究的结果表明,与常规的计程或雷达驾驶预报相比,耦合水文气象模型仍然能够捕获主要的洪峰,但是附加值大大延长了预报的提前期。 UKV产生的高分辨率降雨估算在经过测试的洪水事件的前2至3天中的性能与雷达降雨产品的相似,但是随着预报时间超过3天,不确定性尤其增加。这项研究向前迈出了一步,以确定如何同时使用数字天气预报和水文模型,或者同时在同一硬件基础结构上使用在线模式方法,从而可以实现和维持更有效的交互和沟通在模型之间。但是结论是,即使没有最复杂和最苛刻的数据模拟部分,也不能在实时功能强大的HPC平台上运行整个系统。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号