首页> 外文会议>International Conference on Environment Problems in Coastal Regions; 2004; Alicante; ES >The geotechnical properties of the sediment body in the estuary of the Rasa River, Croatia
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The geotechnical properties of the sediment body in the estuary of the Rasa River, Croatia

机译:克罗地亚拉萨河口河口沉积物的岩土特性

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The RaSa River valley and its estuary are located on the eastern part of Istrian peninsula (north-eastern coast of the Adriatic Sea). Intensive sedimentation in microtidal estuary environment started due to a lowering of sea level during the Holocene. Most of the sediments were brought over by erosion of Paleogene flysch rock mass on the uperstream catchments area and Quaternary deposits from the ancient Cepic Lake. Slow sea level rise during the last 6.000 years created the conditions for filling the earlier formed karstic estuary. Because of intensive sedimentation the mouth of the RaSa River was shifted for approximately 4 km in the last 240 years. The sediment body has uniform granulometric composition, where silt and clay material prevails. The process of consolidation by gravitational compaction is not finished yet. Liquid consistency at the surface of all profiles is a result of high water contents. Substitution of fresh-water by salt seawater in pores causes new changes of cation substitution and changes in clay plasticity properties. The Rasa River estuary is a typical model of river-dominated disequilibrium estuary. The sedimentation occurs under micro tidal conditions and low wave energy. An average sedimentation rate is approximately 78.000 t/yr of terrigenous matter, and average deposition rate is 0.15 m/yr. Today the Rasa River valley is one of the best locations for the harbour and the industrial development in the North Adriatic area. But, unfavourable geotechnical properties of the sediment deposit will be the main problem for the construction of the future frames. In this work are presented results of executed geotechnical investigations in the area of the RaSa River estuary and indicated properties of soils in the sediment body.
机译:拉萨河谷及其河口位于伊斯特拉半岛的东部(亚得里亚海的东北海岸)。由于全新世期间海平面的下降,潮汐河口环境开始出现强烈的沉积。大部分沉积物是由上游集水区的古近系复理石岩质侵蚀和古代塞皮克湖的第四纪沉积带出的。在过去的6000年中,缓慢的海平面上升为填充较早形成的岩溶河口创造了条件。由于密集的沉积,在过去的240年中,拉萨河的河口移动了大约4公里。沉积物的颗粒组成均匀,主要是淤泥和粘土物质。通过重力压实的固结过程尚未完成。所有型材表面的液体稠度是高含水量的结果。盐水在孔隙中替代淡水会引起阳离子取代的新变化以及粘土可塑性的变化。拉沙河河口是河流主导的不平衡河口的典型模型。沉积发生在微潮条件和低波能下。陆源性物质的平均沉积速率约为78,000吨/年,平均沉积速率为0.15 m / yr。今天,Rasa河谷是北亚得里亚海地区港口和工业发展的最佳地点之一。但是,沉积物不良的岩土工程性质将是建造未来框架的主要问题。在这项工作中,提出了在拉萨河河口地区进行的岩土工程研究的结果,并指出了沉积物中土壤的特性。

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