Irham Adrie Hakiki, Leo Sembiring, Cahyo Nugroho
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摘要

由于高沉积速率,萨加拉-阿纳坎泻湖一直在不断后退。预计沉积泥沙量约为100万立方米/年。这种现象,如果不加以处理,将损害现有的生态系统,也可能导致许多种类的本土生物群灭绝。工程学可以用来预防它。然而,它必须知道运输和沉积模式,才能有效。采用可模拟二维水平输沙模式的MIKE21数值模型对萨加拉-阿纳坎泻湖的泥沙淤积进行了模拟。沉积的泥沙以泥质为主,因此该模型必须能够模拟黏性输沙。利用时间加速因子建立模型,模拟一年的形态事件。经过校准的模型能够模拟100万立方米/年的沉积事件。通过调整沉积和侵蚀参数的临界床剪切应力来校准模型,作为敏感性分析的基础。模型结果表明,沙加拉-阿纳坎泻湖的沉积是由涨潮和退潮不对称引起的。主要淤积发生在三角洲周围,观测到的最大和平均河床变化分别约为0.6 m和0.16 m。该模型的建立可作为规划Sagara Anakan泻湖泥沙控制工程方法的基础模型。关键词:数值模型,黏性泥沙,泥沙输运,河口模拟。卡塔昆茨:数值模型,沉积物混合,输运量,泛模三角洲
本文章由计算机程序翻译,如有差异,请以英文原文为准。
ANALISIS SEDIMENTASI LAGUNA SEGARA ANAKAN DENGAN PEMODELAN NUMERIK ANGKUTAN SEDIMEN KOHESIF
Sagara Anakan Lagoon has been continuously receded caused by the high sedimentation rate. The deposited sediment volume was predicted to be around 1 million m3/year. This phenomenon, if not treated will harm the existing ecosystem and also could cause many kinds of its native biota extinct. Engineering could be applied to prevent it. However, the transport and sedimentation pattern must be known for it to be effective.  Silting in Sagara Anakan Lagoon simulated by using MIKE21 numerical model which could simulate sediment transport in 2D horizontal scheme. The deposited sediment, mainly consisted of mud, so the model must be capable for simulating cohesive sediment transport. Model is set to simulate one year of morphological event which reached with the usage of time speed up acceleration factor. Model calibrated to be able to simulate a deposition event in the order of one million m3/year. Model calibrated by tuning critical bed shear stress for deposition   and erosion  parameters as a base for sensitivity analysis. Model result shown that the sedimentation in Sagara Anakan Lagoon is caused by asymmetry of flood and ebb current. Major siltation happened around the delta with the maximum and mean observed bed change are approximately 0.6 m and 0.16 m respectively. The setup for this model could be used as a base model for planning an engineering approach for controlling sediment in Sagara Anakan Lagoon.Keywords: Numerical model, cohesive sediment, mud transport, estuary modellingKata Kunci: Model numerik, sedimen kohesif, transpor lumpur, pemodelan estuari
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