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Mathematical modelling and interpretation of results for siltation phenomena of rivers in the vicinity of reservoirs

机译:水库附近河流淤积现象的数学建模与结果解释

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Worldwide the processes of erosion, transport and sedimentation have a significant social, economic and environmental impact. In the past decade the most important external factor that has significantly increased the erosion and sediment process is the human factor throughout its daily activities. The changes of land cover and use, the intensive deforestation, urbanization and infrastructure development, sand extraction from river beds alter the natural watercourse and thus leading to erosion, sediment transportation and finally to the silting of rivers and reservoirs. The process of erosion and sedimentation occurs, among other areas, in the hydro-technical constructions with significant effects. In the next 30 years it’s expected to lose more than 50% of the storage capacity of the reservoirs in the world due to the silting phenomenon. The control and monitor of the sediment dynamics represents a critical component in the sustainable management of water resources. Also the understanding of the involved phenomena is essential in order to develop solution for reducing the sediment and erosion that occur and adopt measures to extend the life of the reservoirs. This paper taps the solution of mathematical modelling using dedicated software in order to establish the morphological changes that occur in Ogrezeni-Crivina reservoir, located on the river Arges.
机译:在世界范围内,侵蚀,运输和沉积过程具有重大的社会,经济和环境影响。在过去十年中,显着增加侵蚀和沉积过程的最重要外部因素是贯穿其日常活动的人为因素。土地覆盖和用途的变化,密集的森林砍伐,城市化和基础设施的发展,河床采砂改变了天然河道,从而导致了侵蚀,泥沙输送,最终导致了河流和水库的淤积。侵蚀和沉降过程尤其发生在水力建筑中,其影响尤为明显。在未来的30年中,由于淤积现象,预计它将损失全球超过50%的水库存储容量。沉积物动力学的控制和监测是水资源可持续管理的重要组成部分。同样,对于所涉及现象的理解也是必不可少的,以便为减少沉积物和侵蚀的发展找到解决方案,并采取措施延长水库的寿命。本文利用专用软件挖掘数学建模的解决方案,以便确定发生在Arges河上的Ogrezeni-Crivina水库中发生的形态变化。

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