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Towards a hydrodynamic modelling framework appropriate for applications in urban flood assessment and mitigation using heterogeneous computing

机译:建立适用于使用异构计算的城市洪水评估和减灾的水动力建模框架

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摘要

We present a new hydrodynamic modelling framework capable of fully exploiting modern graphics and central processing units (GPUs and CPUs) from any of the mainstream vendors, to be used in the design and assessment of sustainable drainage systems. A finite-volume Godunov-type scheme is combined with the HLLC Riemann solver to create a robust numerical model which correctly addresses wetting and drying and transient flow conditions, and is suitable for application to a wide range of flood simulations. The software is tested with a three day flood event in Carlisle during 2005, at resolutions from 25 m to 2 m. Run-times are significantly reduced without compromising numerical accuracy. Excellent agreement is found between the simulation results and a comprehensive post-event survey. Changes in sensitivity to Manning's n are examined at different resolutions, with changes to the floodplain found to have little influence at 2 m resolution.
机译:我们提出了一个新的流体动力学建模框架,该框架能够充分利用任何主流供应商的现代图形和中央处理单元(GPU和CPU),并将其用于可持续排水系统的设计和评估。有限体积的Godunov型方案与HLLC Riemann求解器相结合,创建了一个健壮的数值模型,该模型可以正确解决润湿和干燥以及瞬态流动条件,适用于广泛的洪水模拟。该软件在2005年的卡莱尔(Carlisle)进行了为期三天的洪水测试,分辨率为25 m至2 m。运行时间显着减少,而不会影响数值精度。在模拟结果和全面的事后调查之间发现了极好的一致性。在不同的分辨率下检查了对曼宁n敏感性的变化,发现洪泛区的变化在2 m分辨率下影响不大。

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