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Dredged Material Dumping Site Selection Using Mathematical Models

机译:使用数学模型的疏浚物料倾倒网站选择

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Siltation is a big hurdle in maintaining the required depth in and around port. Dredging is required in order to maintain the desired depths in the port. Dumping of dredged material has its own impact in the surrounding area and in turn its cost effectiveness. Studies for identification of dredged material dumping ground for development of a multipurpose terminal at Karanja were carried out. Four sets of dumping grounds were initially identified and their impact was observed at three different locations. MIKE 21HD with flexible mesh setup was used for the studies. Since the capital dredging would be going on for a period of six months, model simulations with MIKE 21 HD were done for a period of one month and then extrapolated for six months period. The impact of each dumping location for continuous dumping for a period of one month was assessed using the model simulations. The time required to restore the ambient conditions once the dumping is stopped was also examined. A comparison of the suspended sediment concentration was done at some locations in the vicinity of the dumping site. A comparison on the suspended sediment concentration and the bed thickness change at different points for the different dumping ground were observed. It was found that the suspended sediment concentration will fluctuate with the tide and will attain the lowest value of 5 ppt at the dumping location. The change in bed thickness is expected to be very marginal with maximum being of the order of 5 cm and the time required restoring the ambient conditions after the dumping ceases would be about 10 to 15 days. Based on this information location of the dumping ground could be finalised which has the minimum impact on the relevant area and is cost effective.
机译:淤积是在维护端口和周围的所需深度方面是一个大障碍。需要疏浚以保持端口中所需的深度。倾倒疏浚物料在周边地区有自己的影响,并转而成本效益。进行了用于识别疏浚物料倾倒地面,用于在KaranjA的多功能终端开发的倾倒地面。最初鉴定了四组倾销场,并且在三个不同的位置观察到它们的影响。使用灵活的网格设置迈克21HD用于研究。由于资本疏浚​​将进行六个月的时间,迈克21 HD的模型模拟是一个月的时间,然后推断为六个月。使用模型仿真评估每个倾销位置对连续倾销的每个倾销位置的影响。还检查了倾倒停止一旦停止倾倒的时间所需的时间。悬浮沉积物浓度的比较在倾倾位点附近的某些位置进行。观察到悬浮沉积物浓度的比较和不同倾倾地不同点的床厚度变化。发现悬浮的沉积物浓度将与潮汐波动,并将在倾倒位置达到5个PPT的最低值。床厚度的变化预计将是非常边缘的,最大值为5厘米,并且在倾销停止后恢复环境条件的时间约为10至15天。根据该信息,可以最终确定倾销地的位置,这对相关区域具有最低影响,并且具有成本效益。

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