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Textural and depositional processes of surface sediments of Kalpakkam, Southeast Coast of India

机译:印度东南沿海卡尔帕卡姆地表沉积物的质地和沉积过程

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To understand the influence of human disturbance on the sediment processes along Kalpakkam coast, India, beach and seabed sediments at 200 m, 500 m, and 1 km into the sea were collected monthly for one year and analyzed. Coarser material close to the tidal inlets (river) and manmade structures (sea wall) indicate the effect of these features in altering the grain size distribution from the general trend. The bivariant plots confirm the dominance of deposition under beach environment. The CM diagram (C — one percentile grain diameter, M — median) divulges that the deposition takes place by suspension and rolling of sediments with C 1 mm. Linear discriminate function analysis for sediments at Kalpakkam indicates a shallow marine environment for all the samples collected. On the multigroup multivariant discriminant functions V1-V2 diagram, the bulk of the samples from Kalpakkam to Mahabalipuram fall in the field of beach deposition. These results show that reworked sediments, submerged during the Holocene marine transgression are being deposited on present-day beaches by waves, currents and rivers in the study area. Though a high wave energy environment is prevailing in the study area, dominant northward sediment transport along the Kalpakkam-Mahabalipuram coast is not altered due to human interventions. Beach building activity in front of the sea wall ensures the safety of Indira Gandhi Centre for Atomic Research (IGCAR) from wave actions without causing any significant changes to the coastal environment.
机译:为了了解人为干扰对印度Kalpakkam海岸沉积过程的影响,我们每月收集200 m,500 m和1 km入海的海滩和海底沉积物进行一年分析。靠近潮汐进口(河流)和人造结构(防波堤)的较粗材料表明,这些特征在改变晶粒尺寸分布的总体趋势方面产生了影响。双变量图证实了在海滩环境下沉积的优势。 CM图(C为一个百分位数的粒径,M为中值)表明,沉积是通过悬浮和滚动C <1 mm的沉积物进行的。卡尔帕卡姆沉积物的线性判别函数分析表明,所有采集的样本均处于浅海环境。在多组多变量判别函数V1 -V2 图上,从Kalpakkam到Mahabalipuram的大部分样本都落在海滩沉积领域。这些结果表明,全新世海侵过程中淹没的返工沉积物正在研究区域的海浪,水流和河流中沉积在当今的海滩上。尽管研究区域盛行高波能环境,但由于人为干预,沿卡尔帕卡姆-马哈巴利普兰海岸的主要北部沉积物运移并未改变。海堤前的海滩建设活动可确保英迪拉·甘地原子研究中心(IGCAR)免受波浪作用的影响,而不会对沿海环境造成任何重大影响。

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