Investigating the Capability of HEC-RAS Model for Tsunami Simulation

Rifa Amaliah, B. Ginting
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引用次数: 1

Abstract

This study highlights the simulation of tsunami cases using HEC-RAS 6.1. The primary aim is to evaluate the capability of the software in performing tsunami simulation due to its standalone computational framework (pre-processing, execution, and post-processing stages), making the modeling process interactive. The model accuracy was tested against some benchmark cases of wave propagation, including analytical solutions, laboratory experiments, and field measurements. The results showed HEC-RAS was capable of modeling tsunami propagation. The maximum elevation and velocity magnitude were accurately computed for the analytical cases. Furthermore, sufficiently accurate results were obtained for the laboratory case, where the maximum elevation was properly computed. For the field cases, the wave arrival time and the fluctuations of water surface and velocity were appropriately calculated. The Root Mean Square Error values between the numerical results and the analytical/observed data were relatively low below 30%, with the Pearson Product Moment Correlation values ranging from 52–99%. In addition to its eminence, a drawback was found regarding the graphical user interface (GUI) of HEC-RAS for the input of boundary conditions. These findings will be beneficial for the coastal engineering community and the continuous development of HEC-RAS.  
HEC-RAS模式对海啸模拟能力的研究
本研究重点使用HEC-RAS 6.1模拟海啸案例。主要目的是评估软件在执行海啸模拟中的能力,因为它具有独立的计算框架(预处理、执行和后处理阶段),使建模过程具有交互性。通过一些波传播的基准案例,包括解析解、实验室实验和现场测量,测试了模型的精度。结果表明,HEC-RAS能够模拟海啸的传播。针对分析案例,精确计算了最大仰角和速度大小。此外,在实验室情况下获得了足够准确的结果,其中最大海拔被正确计算。对于现场实例,适当地计算了波浪到达时间以及水面和速度的波动。数值结果与分析/观测数据之间的均方根误差值相对较低,低于30%,Pearson积矩相关值在52-99%之间。除了卓越之外,HEC-RAS在输入边界条件方面的图形用户界面(GUI)也存在缺点。这些发现将有助于海岸工程界和HEC-RAS的持续发展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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