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Three-dimensional numerical simulation for tidal motion in Singapore's coastal waters

机译:新加坡沿海水域潮汐运动的三维数值模拟

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This paper describes the development and application of a three-dimensional (3-D) multi-level hydrodynamic model to tidal motions in Singapore's coastal waters. In this model, a two-step Euler predictor-corrector algorithm is introduced to predict and correct the free surface water elevation. The governing equations are explicitly and implicitly discretized into finite difference forms in a non-uniform staggered grid system. The velocity components in the x, y and z directions are directly obtained. The 3-D model is tested against analytical solutions for two standard cases in rectangular basins. The model results for the velocities and the free surface water elevations coincide with analytical results. The model is applied to the Singapore coastal region and its surrounding waters. In the first simulation, the tidal current behavior including current circulation, time history of sea levels, currents and discharges as well as patterns of residual currents without wind effects is predicted. The numerically predicted results show good agreement with field measurements. In the second simulation, the response of velocity fields to seasonal wind forcing is investigated.
机译:本文介绍了三维(3-D)多级水动力模型在新加坡沿海水域潮汐运动中的开发和应用。在该模型中,引入了两步欧拉预测器-校正器算法来预测和校正自由地表水高程。在非均匀交错网格系统中,控制方程显式和隐式离散为有限差分形式。直接获得x,y和z方向的速度分量。针对二维盆地中两个标准案例的分析解决方案对3-D模型进行了测试。速度和自由地表水高程的模型结果与分析结果一致。该模型适用于新加坡沿海地区及其周围水域。在第一个模拟中,预测了潮流趋势,包括潮流环流,海平面的时间历史,潮流和流量以及没有风影响的剩余潮流的模式。数值预测结果表明与现场测量结果吻合良好。在第二个模拟中,研究了速度场对季节性风力的响应。

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