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BEDSHEARINEVOLVINGSCOURATACYLINDER:ATHEORETICALAPPROACHSubhasishDEY1andSrijibK.KAR2Abstract:Thetemporalvariationofshearstress...  相似文献   
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We here study the scouring processes that evolve around a submarine pipeline placed on a weakly cohesive seabed. We first analyze some laboratory tests carried out by Vijaya Kumar et al. [21], Xu et al. [25] and Zhou et al. [28] that focused on the scouring around a horizontal cylinder lying on a cohesive bed, subject to waves and currents. The specific purpose is that of finding a new formula for the prediction of the equilibrium scour depth under submarine pipelines. After a theoretical analysis of the main parameters, the sought formula has been found to be a function of: (i) the hydrodynamic forces acting on the cylinder (through the Keulegan–Carpenter parameter KC), (ii) the clay content of the soil Cc, and (iii) the burial depth e0/D. In the presence of small amounts of clay (Cc< 5 %), the scour depth depends directly on KC (as confirmed by many literature works for pipelines lying on sandy soils, e.g. [18]) and inversely on Cc (as already seen for bridge abutments on cohesive soils, e.g. [1]), the best-fit law being characterized by a coefficient of determination R2 = 0.62. If some burial depth is accounted for, this being a novelty of the present work, a more general formulation can be used, valid in the presence of weakly-cohesive soils and with burial depths of the pipe smaller than 0.5 (R2 = 0.79). For large clay-content ranges (2% < Cc < 75 %), the scour depth depends directly on both KC and Cc, this giving R2 = 0.79 (no burial depth) and 0.91 (some burial depth). However, this finding is at odds with the main literature, because, for large amounts of clay, it is fundamental to consider the liquidity index LI, which accounts for some important clay properties, like the plasticity. We argue that the absence of LI is balanced by the direct dependence of the scour depth on Cc. Notwithstanding the small number of available data, a formula for the prediction of the scour depth under pipelines lying on cohesive soils is fundamental for several engineering applications. The present contribution represents the first attempt to build such a formula, when the pipeline is subject to the wave-current forcing and the seabed is characterized by a relatively small clay content.  相似文献   
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1 INTRODUCTIONIn the vicinity of smictUres the local velocity of the flow increases, and three-dimensional effects occur,leading to higher shear stresses at the bottom. In case of a movable bed, sediment transport is enhanced.Erosion leads to a scour which can be dangerous for the stability of the strUctUre. The Predichon of a.maximum scour dePth is of vital imPortance for civil engineering. Generally, the maximum scour dePth iseshmated using an emPincal formula (Jolinson, l995). An a…  相似文献   
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1. INTRODUCTIONThe Yellow River is a heavily sediment--laden river. Floods at Hyperconcentrationso f sediment (hereinafter simply referred to as hyperconcentrated flood) frequently occurring in the main river and its tributaries possess different characteristics of sedimenttransport. Sometimes they cause severe deposition whereas at other times they are capable of carrying substantial amount of sediment over long distances. The study on the lawof sediment transport is of significance to …  相似文献   
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典型冰水堆积体浪蚀作用下变形破坏机制研究   总被引:1,自引:1,他引:0  
大渡河中游沿岸中海拔地区广泛分布的一层冰水堆积体大多具有较为密实的结构和一定程度的胶结, 在风浪作用下的变形破坏机制与其他堆积体存在较大差别。通过对某电站库区高速公路冰水堆积路基岸坡调查和试验分析认为, 该冰水堆积体属级配良好的含细颗粒的粗粒~巨粒混合土, 颗粒之间嵌合紧密, 一般呈中密~密实状, 具有不同程度的泥质、钙质胶结, 其强度明显较其他松散堆积体高。通过采用地质过程定性分析和有限元半定量评价相结合的手段对该冰水堆积体在风浪作用下的变形破坏机制进行了分析和研究, 认为该类冰水堆积体在风浪作用下主要表现为淘蚀- 坍塌型失稳模式。  相似文献   
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Spur dike is an important element in fiver training that creates rapid variations in flow field, sediment transport and bed topography. The mechanism of flow and sediment transport in a channel bend is very complex, especially when a spur dike is constructed in a bend. Most of previous investigations on flow behavior and scour around spur dike were carried out in straight channels. In this paper results of experiments on flow field and scour around a spur dike in a 90 degree channel bend are presented, Sand with uniform grain size was used as the bed material, Experiments were conducted for different locations and different lengths of spur dikes at the bend with different values of discharge, The three dimensional flow fields around a spur dike were investigated, The maximum depth of scour was correlated to the Froude numbers, lengths and the locations of spur dike in the bend.  相似文献   
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长江河口最大浑浊带的泥沙特性和输移规律*   总被引:19,自引:0,他引:19  
本文通过对不同河段的泥沙特性和输移规律的对比分析,确认长江河口来沙丰富,在河口潮流不对称和重力环流的作用下,大量泥沙向滞流点辐聚,形成最大浑浊带。最大浑浊带含沙量高,泥沙絮凝沉速快。潮流强劲,引起床沙再悬浮,输沙能力强。长江河口最大浑浊带活动区与河口拦门沙位置基本一致。本研究成果对于加深认识河口拦门沙的成因和变化,以及航槽治理具有重大的现实间义。  相似文献   
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关于物理潜蚀作用及其概念模型的讨论   总被引:2,自引:0,他引:2  
在对国内外物理潜蚀作用相关文献进行调研的基础上回顾了潜蚀作用的研究历史,对目前物理潜蚀作用研究中存在的问题进行了总结。指出潜蚀工程地质问题在各类工程建设活动中已经变得越来越突出,但由于潜蚀作用发生环境的多样性、作用方式的复杂性、发生过程的随机性等原因,造成实际应用中将各种潜蚀作用尤其是物理潜蚀作用过程的概念经常混淆。对"管涌"、"渗透压密"、"接触管涌"、"接触冲刷"、"流土"、"突涌"、"接触流土"、"流砂"、"流滑"等物理潜蚀作用的发生机理进行了深入细致的分析,在此基础上对目前一些界定不严格的物理潜蚀相关概念进行了辨析和澄清,初步建立了清晰的物理潜蚀作用概念模型,为潜蚀工程地质进一步研究奠定了基础。  相似文献   
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