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首页> 外文期刊>Journal of Hydrology >Real-time simulation of hydrodynamic and scalar transport in large river-lake systems
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Real-time simulation of hydrodynamic and scalar transport in large river-lake systems

机译:大型河湖系统中流体动力和标量运输的实时模拟

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Real-time coupling of a hydro-environmental model and an optimization model is difficult because hydrodynamic model (HDM) and scalar transport model (STM) are both time-consuming, especially when the computational domain is large (e.g., river-lake system). This study presents a new 1D hydro-environmental model for free-surface flows and scalar transport in large river-lake systems. Using a prediction-correction method, hydrodynamic is simulated by solving local linear systems based on domain decomposition. A flux-form Eulerian-Lagrangian method (ELM) is constructed to solve advective transport of scalars in 1D grid systems, and a nested technique is proposed to reduce its startup cost. The resulting STM and HDM both allow large time steps for which the Courant-Friedrichs-Lewy number (CA) is greater than 1, and they are parallelized using the open multiprocessing technique (OpenMP). Moreover, the STM is good at solving multiscalar transport and has low startup cost. The new model is tested using the Jing-Dongting (JDT) system which is covered by a grid of 2382 cells (with 113,600 sub-grids). Stable and accurate simulations are achieved at large time steps for which the CFL can be larger than 5. A sequential run of the new model runs tens of times faster than that of a conventional 1D model such as the Mikel 1. Moreover, the efficiency of the new model can be further improved by the OpenMP parallel technique. In the test of scale property of the HDM + STM model (using 32 kinds of scalars and 16 cores), a parallel run is 11.8 times faster than a sequential run, and it only takes the new model 33.3 s to complete a simulation of a 1-year process of unsteady flow and scalar transport in the JDT system.
机译:水力环境模型和优化模型的实时耦合是困难的,因为水动力模型(HDM)和标量传输模式(STM)是既费时,尤其是当计算域较大(例如,河流,湖泊系统) 。这项研究提出了自由面一个新的1D水文环境模型流动和在大河流湖泊系统标量输运。使用预测校正方法,液力通过求解基于域分解局部线性系统模拟。甲通量形式欧拉 - 拉格朗日方法(ELM)被构造来解决1D网格系统的标量平流输送,并提出了一种嵌套技术来减少它的启动成本。将得到的STM和HDM都允许的量,新闻报-弗里德里希-路易数(CA)大于1大的时间的步骤,并且它们使用开放多技术(OpenMP的)并行化。此外,STM善于解决多尺度的运输和低启动成本。新的模型,使用由2382个细胞的网格覆盖(与113600子网格)的静洞庭(JDT)系统进行测试。稳定和精确的模拟,在的量,CFL可以是新的模型的大于5,一种连续运行大的时间的步骤来实现运行十倍如米克尔1。此外,效率比传统的一维模型的更快新的模型可以通过OpenMP并行技术来进一步改进。在HDM + STM模型的规模属性的测试(使用32种标量的和16个内核),并行运行是不是顺序的运行速度11.8倍,并且只需要新的模型33.3 s到完成的模拟在JDT系统内流和标量输运的1年期的过程。

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