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Integrating bathymetric and topographic data

机译:集成碱基和地形数据

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摘要

The quality of bathymetric and topographic resolution significantly affect the accuracy of tsunami run-up and inundation simulation. However, high resolution gridded bathymetric and topographic data sets for Malaysia are not freely available online. It is desirable to have seamless integration of high resolution bathymetric and topographic data. The bathymetric data available from the National Hydrographic Centre (NHC) of the Royal Malaysian Navy are in scattered form; while the topographic data from the Department of Survey and Mapping Malaysia (JUPEM) are given in regularly spaced grid systems. Hence, interpolation is required to integrate the bathymetric and topographic data into regularly-spaced grid systems for tsunami simulation. The objective of this research is to analyze the most suitable interpolation methods for integrating bathymetric and topographic data with minimal errors. We analyze four commonly used interpolation methods for generating gridded topographic and bathymetric surfaces, namely (i) Kriging, (ii) Multiquadric (MQ), (iii) Thin Plate Spline (TPS) and (iv) Inverse Distance to Power (IDP). Based upon the bathymetric and topographic data for the southern part of Penang Island, our study concluded, via qualitative visual comparison and Root Mean Square Error (RMSE) assessment, that the Kriging interpolation method produces an interpolated bathymetric and topographic surface that best approximate the admiralty nautical chart of south Penang Island.
机译:碱基和地形分辨率的质量显着影响海啸升起和淹没仿真的准确性。但是,马来西亚的高分辨率网格化和地形数据集不是在线自由获取。希望具有高分辨率碱基和地形数据的无缝集成。马来西亚皇家海军国家水文中心(NHC)提供的碱基数据处于分散的形式;虽然调查部和Malaysia(Jupem)的地形数据在定期间隔的网格系统中给出。因此,需要插值来将碱化和地形数据集成到用于海啸仿真的规则间隔的网格系统中。这项研究的目的是分析与最小误差整合水深和地形数据的最适合的插值方法。我们分析四种常用的插值方法,用于产生网格的地形和碱化表面,即(i)克里格,(ii)百分之一(MQ),(III)薄板样条(TPS)和(IV)逆距离到功率(IDP)。基于槟城岛南部的碱基和地形数据,我们的研究结束了,通过定性视觉比较和根均方误差(RMSE)评估,即Kriging插值方法产生最佳近似海军部的插值碱基和地形表面南槟城岛航海图。

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