ASSESSMENT OF THREE-DIMENSIONAL BAROCLINIC CIRCULATION MODEL FOR THE MUSI COASTAL AREA

Septy Heltria, Amir Yarkhasy Yuliardi, Gentio Harsono, M. I. Joesidawati
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Abstract

The hydrodynamics of the Musi estuary ecosystem is influenced by the flow of water discharge from the river, tidal circulation within the estuary, and complex bathymetry. Numerical modeling is one of the best ways to explain the characteristics and processes occurring in the estuary. However, the obtained model requires validation to ensure its accuracy despite the complexity added by variability in tidal and bathymetric conditions, making the validation process more challenging. This difficulty can be overcome by using high-resolution data, which provides a refined understanding of the river-to-sea estuary flow and its variability. The validation process involves the use of conductivity-temperature-depth (CTD) instruments and mooring tidal stations. The validated model is considered capable of accurately simulating tidal propagation as it represents the temperature-salinity-density properties within the estuarine environment. The development of this model demonstrates the effective implementation of these parameters within the Musi estuary ecosystem domain. The 3D model simulation is used to consider the vertical discretization in the river-estuary-sea channel, which enhances the representation of temperature-salinity-density in the water column. The obtained results suggest that the 3D-MIKE modeling is well-suited for operational purposes, including the prediction of hydrodynamics and the management of estuarine areas, specifically in the Musi estuary ecosystem.
穆西沿海地区三维气压环流模式评估
穆西河口生态系统的流体力学受到河流排水量、河口内潮汐环流和复杂水深的影响。数值模型是解释河口特征和过程的最佳方法之一。然而,尽管潮汐和水深条件的变化增加了模型的复杂性,但所获得的模型需要验证以确保其准确性,这使得验证过程更具挑战性。使用高分辨率数据可以克服这一困难,因为高分辨率数据可以提供对河口至海口水流及其变化的精细理解。验证过程包括使用电导率-温度-深度(CTD)仪器和系泊潮汐站。经过验证的模型能够准确模拟潮汐传播,因为它代表了河口环境中的温度-盐度-密度特性。该模型的开发展示了这些参数在穆西河口生态系统领域的有效应用。三维模型模拟考虑了河流-河口-海道的垂直离散性,从而增强了水体中温度-盐度-密度的代表性。所获得的结果表明,三维-MIKE 模型非常适合用于实际操作,包括水动力预测和河口地区的管理,特别是 Musi 河口生态系统。
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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