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DOI10.1016/j.advwatres.2020.103525
Internal boundary conditions for a GPU-accelerated 2D shallow water model: Implementation and applications
Dazzi S.; Vacondio R.; Mignosa P.
发表日期2020
ISSN0309-1708
卷号137
英文摘要Flood propagation in rivers is strongly influenced by the presence of bridges and other hydraulic structures. Among the available approaches for including these elements in numerical models, the adoption of Internal Boundary Conditions (IBC), given its ability to capture backwater, is suitable for field-scale analyses for flood hazard assessment. In this paper, the implementation of internal boundary conditions in the two-dimensional shallow water code named “PARFLOOD” is presented. The application to experimental and real test cases shows that the proposed IBC model can handle both low and high flow conditions for bridges, while being flexible for other types of structures (e.g. flow-through dams). Moreover, the model is computationally efficient (physical/computational time ratio around 20–30 for domains with ~106 cells), thanks to the code parallelization on GPU. © 2020
关键词Boundary conditionsBridgesEquations of motionFloodsGraphics processing unitHydraulic structures2D shallow water equations2D shallow watersComputationally efficientFlood hazard assessmentFlood modelingFlood propagationHigh flow conditionsInternal boundary conditionsInternational lawboundary conditionbridgecomputer simulationflood frequencyflow modelinghazard assessmenthydraulic structurenumerical modelriver flowshallow-water equationtwo-dimensional modeling
语种英语
来源机构Advances in Water Resources
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/131843
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Dazzi S.,Vacondio R.,Mignosa P.. Internal boundary conditions for a GPU-accelerated 2D shallow water model: Implementation and applications[J]. Advances in Water Resources,2020,137.
APA Dazzi S.,Vacondio R.,&Mignosa P..(2020).Internal boundary conditions for a GPU-accelerated 2D shallow water model: Implementation and applications.,137.
MLA Dazzi S.,et al."Internal boundary conditions for a GPU-accelerated 2D shallow water model: Implementation and applications".137(2020).
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