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CaMEL and ADCIRC Storm Surge Models—A Comparative Study

机译:CaMEL和ADCIRC风暴潮模型的比较研究

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The Computation and Modeling Engineering Laboratory (CaMEL), an implicit solver-based storm surge model, has been extended for use on high performance computing platforms. An MPI (Message Passing Interface) based parallel version of CaMEL has been developed from the previously existing serial version. CaMEL uses hybrid finite element and finite volume techniques to solve shallow water conservation equations in either a Cartesian or a spherical coordinate system and includes hurricane-induced wind stress and pressure, bottom friction, the Coriolis effect, and tidal forcing. Both semi-implicit and fully-implicit time stepping formulations are available. Once the parallel implementation is properly validated, CaMEL is evaluated against ADCIRC, an established storm surge model, using a hindcast of storm surge due to Hurricane Katrina. Observed high water marks are used to verify that both models have comparable accuracy. The effects of time step on the stability and accuracy of the models are investigated and indicate that the semi- and fully-implicit solvers in CaMEL allow the use of larger timesteps than ADCIRC’s explicit and semi-implicit solvers. However, ADCIRC outperforms CaMEL in parallel scalability and execution wall clock times. Wall times of CaMEL improve significantly when the largest stable time step sizes are used in respective models, although ADCIRC still is faster.
机译:计算和建模工程实验室(CaMEL)是基于隐式求解器的风暴潮模型,现已扩展为可在高性能计算平台上使用。基于先前的串行版本已开发了基于MPI(消息传递接口)的CaMEL并行版本。 CaMEL使用混合有限元和有限体积技术来求解笛卡尔坐标系或球面坐标系中的浅水养护方程,其中包括飓风引起的风应力和压力,底部摩擦,科里奥利效应和潮汐强迫。半隐式和全隐式时间步进公式均可用。一旦正确验证了并行实施,就将使用卡特里娜飓风造成的风暴潮的后验结果,根据已建立的风暴潮模型ADCIRC对CaMEL进行评估。观察到的高水位线用于验证两个模型具有可比的准确性。研究了时间步长对模型稳定性和准确性的影响,表明CaMEL中的半隐式和全隐式求解器比ADCIRC的显式和半隐式求解器允许使用更大的时间步长。但是,ADCIRC在并行可扩展性和执行挂钟时间方面优于CaMEL。当ADCIRC仍然更快时,在各个模型中使用最大的稳定时间步长时,CaMEL的壁挂时间将显着改善。

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