Numerical Study on Tide and Tidal Current along Bali Strait, Indonesia using Finite Volume Coastal Ocean Model (FVCOM)

M. N. Adibhusana, I. Hendrawan, Y. Ryu
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Abstract

A numerical study was carried out in Bali Strait, Indonesia. Finite Volume Coastal Ocean Model (FVCOM) was used to simulate the seawater circulation in Bali Strait. The water circulations were forced by the four major tidal components (S2, M2, K1, and O1). Comparisons of the seawater surface elevation obtained from both modeling and observations show a good result. The tide in Bali Strait is a mixed tide type with two different tidal ranges in one day. The seawater circulation moves from the Indian Ocean to the Bali Sea through narrow strait during the flood tide and then rush back during the ebb tide. In the spring tide, an eddy is also observed on the top of the narrow strait. The simulations show that the flows by tides along the sudden change of the cross-sectional width can be modeled by the finite volume method based model.
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基于有限体积海岸海洋模型(FVCOM)的印尼巴厘岛海峡潮汐和潮流数值研究
在印度尼西亚巴厘海峡进行了数值研究。采用有限体积海岸海洋模式(FVCOM)模拟了巴厘岛海峡的海水环流。水循环受4个主要潮汐分量(S2、M2、K1和O1)的强迫。模拟和观测所得的海水表面高程比较结果良好。巴厘岛海峡的潮汐是一种混合潮汐类型,在一天内有两个不同的潮差。海水环流在涨潮时通过狭窄的海峡从印度洋流向巴厘海,在退潮时又涌回。在春潮时,狭窄的海峡顶端也会出现涡流。仿真结果表明,基于有限体积法的模型可以很好地模拟沿断面宽度突变方向的潮汐流动。
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