利用Delft3D流体动力学模型分析大气与海洋的相互作用绘制Belawan港和海岸的海岸洪水带

Rizki Fadhillah Pratama Putra, T. I. Nasution, S. Humaidi, Yahya Darmawan
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引用次数: 0

摘要

Belawan港口和沿海地区也未能幸免于潮汐洪水的影响。本研究旨在确定Delft3D流体动力学模型在模拟Belawan港口和沿海地区潮汐洪水中的海平面和波浪方面的性能。使用最终运行全球分析数据、NOAA/NCEP的MSLP数据和ECMWF的潮汐数据来运行Delft3D模型。利用BIG(地理空间信息机构)的验潮仪观测数据对模型输出进行了验证。这项研究通过分析大气之间的相互作用,绘制了Belawan港口和沿海地区受潮汐洪水影响的区域图,包括风速和风向参数以及以有效波高形式表示的海洋参数。根据Delft3D与观测数据的验证结果,平均误差值为23.5cm,相关系数为0.93。这表明Delft3D模型在模拟Belawan港口和沿海地区的潮汐洪水高度方面相当好。根据大气分析,它并没有真正影响波浪高度的增加。这种影响是由显著的海浪高度引起的,海浪高度会增加潮汐洪水的高度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of Interaction Between Atmosphere and Sea Using The Delft3D Hydrodynamics Model for Mapping Coastal Flood Zone at Belawan Port and Coastal
Belawan port and coastal areas were also not spared from the impact of the tidal flood. This study aims to determine the performance of the Delft3D hydrodynamic model in simulating sea level and waves in tidal floods at Belawan port and coastal area. Final operational global analysis data, MSLP data from NOAA/NCEP, and tidal data from ECMWF were used to run the Delft3D model. The model output was verified by using tide gauge observation data from BIG (Geospatial Information Agency). This research resulted in a mapping of areas affected by tidal flooding in the Belawan port and coastal area by analyzing the interaction between atmosphere, consisting of wind speed and direction parameters and sea parameters in the form of significant wave height. Based on the results of the Delft3D verification with observation data, the average error value is 23.5 cm and the coefficient of correlation is 0.93. This shows that the Delft3D model is quite good at simulating tidal flood heights in the Belawan port and coastal area. Based on atmospheric analysis, it does not really affect the increasing wave height. The influence is given by significant sea wave height, which can increase the height of tidal floods.
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