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What drives nearshore sediment transport controls on the depletion of beach placers at Manavalakurichi, Southwest Coast of India?

机译:是什么驱使印度西南海岸马那瓦拉库里奇(Manavalakurichi)海滩砂矿枯竭的近岸沉积物运输控制?

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An in-depth analysis has been made to simulate hydrodynamic scenarios for understanding the nearshore sediment transport controls of placer mineral depletion at Manavalakurichi, India. From the analyses of topographic configuration (extracted from Hydrographic Nautical Chart No. 2048 and data generated during year 2010), we inferred that the 5-m isobaths had broadened and exhibited shallowness. Distances between the coastline and the isobaths were found to have increased significantly over the past five decades. Along with this, the 10 and 20-m contours were found to have shifted about 35–100 m horizontally landward. These changes led to severe sediment deposition in these regions due to the changed wave energy levels and refraction patterns. Numerical simulations linking bathymetry, hydrodynamics, sediment load, and significant wave heights revealed that changes in bathymetry would amplify the wave heights and convergence of wave energy. Associated removal of sand from the high-energy zones will eventually lead to sediment starvation situations and depletion of placers in the adjacent beaches. As the observed trends of depletion generate great concern, detailed oceanographic investigations should be taken up immediately in the region. Fine-resolution hydrodynamic datasets should prove useful for further evaluating the physical responses of the system to the altered geometry and for exploring remedial measures for restoring the heavy mineral content of the beach sand.
机译:为了模拟水动力情景,已进行了深入分析,以了解印度马那瓦拉库里奇的砂矿矿物损耗的近岸沉积物运输控制。通过对地形构造的分析(摘自2048号水文航海图和2010年产生的数据),我们推断出5米等深线已加宽并显示出浅度。在过去的五十年中,发现海岸线与等压线之间的距离已大大增加。与此相伴的是,发现10米和20米的等高线已向水平方向移动了约35–100 m。由于波能水平和折射模式的变化,这些变化导致了这些区域中严重的沉积物沉积。将测深法,流体力学,泥沙负荷和明显的波高联系起来的数值模拟表明,测深法的变化会放大波高和波能的收敛性。从高能区带走的沙尘最终将导致沉积物匮乏,相邻海滩的砂矿也将枯竭。由于观察到的枯竭趋势引起极大关注,因此应立即在该区域进行详细的海洋学调查。精细分辨率的水动力数据集应被证明对进一步评估系统对改变后的几何形状的物理响应以及探索补救措施以恢复海滩沙子的重矿物含量很有用。

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