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Prediction models for scour depth around circular compound bridge piers
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作者 Siva Krishna Reddy Venu Chandra 《Water Science and Engineering》 2025年第3期378-390,共13页
Scour around bridge pier foundations is a complex phenomenon that can threaten structural stability.Accurate prediction of scour depth around compound piers remains challenging for bridge engineers.This study investig... Scour around bridge pier foundations is a complex phenomenon that can threaten structural stability.Accurate prediction of scour depth around compound piers remains challenging for bridge engineers.This study investigated the effect of foundation elevation on scour around compound piers and developed reliable scour depth prediction models for economical foundation design.Experiments were conducted under clear-water conditions using two circular piers:(1)a uniform pier(with a diameter of D)and(2)a compound pier consisting of a uniform pier resting on a circular foundation(with a foundation diameter(D_(f))of 2D)positioned at various elevations(Z)relative to the channel bed.Results showed that foundation elevation significantly affected scour depth.Foundations at or below the bed(Z/D≥0)reduced scour,while those projecting into the flow field(Z/D<0)increased scour.The optimal foundation elevation was found to be 0.1D below the bed level,yielding a 57%reduction in scour depth compared to the uniform pier due to its shielding effect against downflow and horseshoe vortices.In addition,regression,artificial neural network(ANN),and M5 model tree models were developed using experimental data from this and previous studies.The M5 model outperformed the traditional HEC-18 equation,regression,and ANN models,with a coefficient of determination greater than 0.85.Sensitivity analysis indicated that flow depth,foundation elevation,and diameter significantly influenced scour depth prediction,whereas sediment size had a lesser impact. 展开更多
关键词 Local scour Uniform piers Compound piers scour depth prediction ANN M5 model
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Prediction of Scour Depth around Offshore Pipelines in the South China Sea 被引量:3
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作者 Yonggang Cao Yuchuan Bai +2 位作者 Junqin Wang Shizhi Liao Dong Xu 《Journal of Marine Science and Application》 CSCD 2015年第1期83-92,共10页
Scour depth prediction of offshore pipelines is of great significance to the design and construction of the submarine pipeline projects. In this paper, based on the CFD software package FLUENT and User Defined Functi... Scour depth prediction of offshore pipelines is of great significance to the design and construction of the submarine pipeline projects. In this paper, based on the CFD software package FLUENT and User Defined Function (UDF), an Eulerian two-phase model, which includes an Euler-Euler coupled model for water and sediment phases, and a turbulent model for the fluid phase, is adopted to predict the scour depth around pipelines. The model is verified by observation data obtained from laboratory experiments. On the basis of the simulations, the factors affecting the scour depth, including the effects of incipient velocity, pipe diameter and sediment particle size and so on, were investigated. Meanwhile, according to formulas of incipient velocity of various sediments, approximate calculation on theoretical scour depths is developed for pipelines of seven stations in the South China Sea, where engineering application information is available. 展开更多
关键词 PIPELINE offshore pipelines SEDIMENT scour depth numerical simulation theoretical calculation South China Sea
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An Innovative Approach to Predicting Scour Depth Around Foundations Under Combined Waves and Currents in Large-Scale Tests Based on Small-Scale Tests 被引量:2
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作者 HU Ruigeng LIU Hongjun +2 位作者 LU Yao WANG Xiuhai SHI Wei 《Journal of Ocean University of China》 SCIE CAS CSCD 2023年第3期637-648,共12页
This study presents an innovative theoretical approach to predicting the scour depth around a foundation in large-scale model tests based on small-scale model tests under combined waves and currents.In the present app... This study presents an innovative theoretical approach to predicting the scour depth around a foundation in large-scale model tests based on small-scale model tests under combined waves and currents.In the present approach,the hydrodynamic parameters were designed based on the Froude similitude criteria.To avoid the cohesive behavior,we scaled the sediment size based on the settling velocity similarity,i.e.,the suspended load similarity.Then,a series of different scale model tests was conducted to obtain the scour depth around the pile in combined waves and currents.The fitting formula of scour depth from the small-scale model tests was used to predict the results of large-scale tests.The accuracy of the present approach was validated by comparing the prediction values with experimental data of large-scale tests.Moreover,the correctness and accuracy of the present approach for foundations with complex shapes,e.g.,the tripod foundation,was further checked.The results indicated that the fitting line from small-scale model tests slightly overestimated the experimental data of large-scale model tests,and the errors can be accepted.In general,the present approach was applied to predict the maximum or equilibrium scour depth of the large-scale model tests around single piles and tripods. 展开更多
关键词 scour scour depth prediction Froude similarity scale effects combined waves and currents
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Multi-approach analysis of maximum riverbed scour depth above subway tunnel
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作者 Jun CHEN Hong-wu TANG +1 位作者 Zui-sen LI Wen-hong DAI 《Water Science and Engineering》 EI CAS 2010年第4期431-442,共12页
When subway tunnels are routed underneath rivers, riverbed scour may expose the structure, with potentially severe consequences. Thus, it is important to identify the maximum scour depth to ensure that the designed bu... When subway tunnels are routed underneath rivers, riverbed scour may expose the structure, with potentially severe consequences. Thus, it is important to identify the maximum scour depth to ensure that the designed buried depth is adequate. There are a range of methods that may be applied to this problem, including the fluvial process analysis method, geological structure analysis method, scour formula method, scour model experiment method, and numerical simulation method. However, the application ranges and forecasting precision of these methods vary considerably. In order to quantitatively analyze the characteristics of the different methods, a subway tunnel passing underneath a river was selected, and the aforementioned five methods were used to forecast the maximum scour depth. The fluvial process analysis method was used to characterize the river regime and evolution trend, which were the baseline for examination of the scour depth of the riverbed. The results obtained from the scour model experiment and the numerical simulation methods are reliable; these two methods are suitable for application to tunnel projects passing underneath rivers. The scour formula method was less accurate than the scour model experiment method; it is suitable for application to lower risk projects such as pipelines. The results of the geological structure analysis had low precision; the method is suitable for use as a secondary method to assist other research methods. To forecast the maximum scour depth of the riverbed above the subway tunnel, a combination of methods is suggested, and the appropriate analysis method should be chosen with respect to the local conditions. 展开更多
关键词 high flow subway tunnel scour depth scour model numerical simulation
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Application of Artificial Neural Network, Kriging, and Inverse Distance Weighting Models for Estimation of Scour Depth around Bridge Pier with Bed Sill 被引量:2
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作者 Homayoon Seyed Rahman Keshavarzi Alireza Gazni Reza 《Journal of Software Engineering and Applications》 2010年第10期944-964,共21页
This paper outlines the application of the multi-layer perceptron artificial neural network (ANN), ordinary kriging (OK), and inverse distance weighting (IDW) models in the estimation of local scour depth around bridg... This paper outlines the application of the multi-layer perceptron artificial neural network (ANN), ordinary kriging (OK), and inverse distance weighting (IDW) models in the estimation of local scour depth around bridge piers. As part of this study, bridge piers were installed with bed sills at the bed of an experimental flume. Experimental tests were conducted under different flow conditions and varying distances between bridge pier and bed sill. The ANN, OK and IDW models were applied to the experimental data and it was shown that the artificial neural network model predicts local scour depth more accurately than the kriging and inverse distance weighting models. It was found that the ANN with two hidden layers was the optimum model to predict local scour depth. The results from the sixth test case showed that the ANN with one hidden layer and 17 hidden nodes was the best model to predict local scour depth. Whereas the results from the fifth test case found that the ANN with three hidden layers was the best model to predict local scour depth. 展开更多
关键词 Artificial Neural Network scour depth Ordinary KRIGING INVERSE Distance Weighting Bridge PIERS
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Comparison of Three Commonly Used Equations for Calculating Local Scour Depth around Bridge Pier under Ice Covered Flow Condition
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作者 Mohammad Reza Namaee Yuquan Li +1 位作者 Jueyi Sui Todd Whitcombe 《World Journal of Engineering and Technology》 2018年第2期50-62,共13页
A precise prediction of maximum scour depth around bridge foundations under ice covered condition is crucial for their safe design because underestimation may result in bridge failure and over-estimation will lead to ... A precise prediction of maximum scour depth around bridge foundations under ice covered condition is crucial for their safe design because underestimation may result in bridge failure and over-estimation will lead to unnecessary construction costs. Compared to pier scour depth predictions within an open channel, few studies have attempted to predict the extent of pier scour depth under ice-covered condition. The present work examines scour under ice by using a series of clear-water flume experiments employing two adjacent circular bridge piers in a uniform bed were exposed to open channel and both rough and smooth ice covered channels. The measured scour depths were compared to three commonly used bridge scour equations including Gao’s simplified equation, the HEC-18/Jones equation, and the Froehlich Design Equation. The present study has several advantages as it adds to the understanding of the physics of bridge pier scour under ice cover flow condition, it checks the validity and reliability of commonly used bridge pier equations, and it reveals whether they are valid for the case of scour under ice-covered flow conditions. In addition, it explains how accurately an equation developed for scour under open channel flow can predict scour around bridge piers under ice-covered flow condition. 展开更多
关键词 ICE COVER Local scour Bridge PIERS Maximum scour depth
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Large-scale experimental study on scour around both slender and large monopiles under irregular waves
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作者 En-yu Gong Song-gui Chen +2 位作者 Xin Chen Da-wei Guan Jin-hai Zheng 《Water Science and Engineering》 2025年第3期369-377,共9页
Offshore wind power plays a crucial role in energy strategies.The results of traditional small-scale physical models may be unreliable when extrapolated to large field scales.This study addressed this limitation by co... Offshore wind power plays a crucial role in energy strategies.The results of traditional small-scale physical models may be unreliable when extrapolated to large field scales.This study addressed this limitation by conducting large-scale(1:13)experiments to investigate the scour hole pattern and equilibrium scour depth around both slender and large monopiles under irregular waves.The experiments adopted KeuleganeCarpenter number(NKC)values from 1.01 to 8.89 and diffraction parameter(D/L,where D is the diameter of the monopile,and L is the wave length)values from 0.016 to 0.056.The results showed that changes in the maximum scour location and scour hole shape around a slender monopile were associated with NKC,with differences observed between irregular and regular waves.Improving the calculation of NKC enhanced the accuracy of existing scour formulae under irregular waves.The maximum scour locations around a large monopile were consistently found on both sides,regardless of NKC and D/L,but the scour hole topography was influenced by both parameters.Notably,the scour range around a large monopile was at least as large as the monopile diameter. 展开更多
关键词 scour KeuleganeCarpenter number Irregular waves Equilibrium scour depth Large-scale test
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Experimental Study on Local Scour Around Mono-Column Composite Bucket Foundation Under Unidirectional Flow
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作者 TANG Can HUA Xia +4 位作者 TAO Si-chen ZHANG Lei HAN Xue-jian XU Ke GUO Xiang-chen 《China Ocean Engineering》 2025年第3期484-492,共9页
The composite bucket foundations of offshore wind turbines penetrate minimally into the seabed, making local scour a significant threat to wind turbine stability. This study develops a physical model to examine local ... The composite bucket foundations of offshore wind turbines penetrate minimally into the seabed, making local scour a significant threat to wind turbine stability. This study develops a physical model to examine local scour patterns around a novel mono-column composite bucket foundation(MCCBF) under unidirectional flows. The experiments reveal that under weak-flow conditions, no significant scour pits develop at the front or lateral sides of the MCCBF,while two distinct scour pits form behind the lateral sides. Under strong-flow conditions, substantial scour pits emerge at both frontal and lateral sides of the bucket foundation, with two scour pits extending downstream on either side. The research demonstrates that both the range and depth of local scour increase with higher flow velocity and decreasing water depth, though the mechanisms influencing local scour around the MCCBF prove more complex than those affecting monopiles. The distinctive structural features of the MCCBF necessitate particular consideration of effects related to bucket foundation exposure. The study concludes by proposing an empirical formula for predicting maximum scour depth around the MCCBF. 展开更多
关键词 local scour mono-column composite bucket foundation(MCCBF) equilibrium scour topography maximum scour depth
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Equilibrium scour depth at offshore monopile foundation in combined waves and current 被引量:21
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作者 QI WenGang GAO FuPing 《Science China(Technological Sciences)》 SCIE EI CAS 2014年第5期1030-1039,共10页
Unlike the pier scour in bridge waterways,the local scour at offshore monopile foundations should take into account the effect of wave-current combination.Under the condition of wave-current coexistence,the water-soil... Unlike the pier scour in bridge waterways,the local scour at offshore monopile foundations should take into account the effect of wave-current combination.Under the condition of wave-current coexistence,the water-soil interfacial scouring is usually coupled with the pore-pressure dynamics inside of the seabed.The aforementioned wave/current-pile-soil coupling process was physically modeled with a specially designed flow-structure-soil interaction flume.Experimental results indicate that superimposing a current onto the waves obviously changes the pore-pressure and the flow velocity at the bed around the pile.The concomitance of horseshoe vortex and local scour hole around a monopile proves that the horseshoe vortex is one of the main controlling mechanisms for scouring development under the combined waves and current.Based on similarity analyses,an average-velocity based Froude number(Fra)is proposed to correlate with the equilibrium scour depth(S/D)at offshore monopile foundation in the combined waves and current.An empirical expression for the correlation between S/D and Fra is given for predicting equilibrium scour depth,which may provide a guide for offshore engineering practice. 展开更多
关键词 MONOPILE pore-pressure scour depth combined waves and current Froude number
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NEURAL NETWORK MODELING FOR ESTIMATION OF SCOUR DEPTH AROUND BRIDGE PIERS 被引量:13
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作者 LEE T. L. JENG D. S. +1 位作者 ZHANG G. H. HONG J. H. 《Journal of Hydrodynamics》 SCIE EI CSCD 2007年第3期378-386,共9页
It is essential to predict the scour depth around bridge piers for hydraulic engineers involved in the economical design of bridge pier foundation. Conventional investigations have long been of the opinion that empiri... It is essential to predict the scour depth around bridge piers for hydraulic engineers involved in the economical design of bridge pier foundation. Conventional investigations have long been of the opinion that empirical scour prediction equations based on laboratory data over predict scour depths. In this article, the Back-Propagation Neural Network (BPN) was applied to predict the scour depth in order to overcome the problem of exclusive and the nonlinear relationships. The observations obtained from thirteen states in USA was verified by the present model. From the comparison with conventional experimental methods, it can be found that the scour depth around bridge piers can be efficiently predicted using the BPN. 展开更多
关键词 Back-Propagation Neural Network (BPN) PREDICTION bridge pier scour depth
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Calculation of the ultimate depth of a scour pit after debris flow through drainage canal ribs 被引量:4
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作者 LIU Shu-liang YOU Yong +2 位作者 ZHANG Guang-ze ZHAO Hai-xin SUN Hao 《Journal of Mountain Science》 SCIE CSCD 2016年第2期246-254,共9页
Drainage canals are engineering structures widely used for debris flow mitigation.When passing through a drainage canal,debris flow usually scours the gully bed at the back of the rib sill of the drainage canal,which ... Drainage canals are engineering structures widely used for debris flow mitigation.When passing through a drainage canal,debris flow usually scours the gully bed at the back of the rib sill of the drainage canal,which leads to failure of the rib sill.Therefore,the scour depth at the back of the rib sill is an important design problem and it is related to the economic benefits of engineering and service years.To explore the law of the depth of the scour pit after debris flow through drainage canal ribs,we first proposed a formula for the calculation of the maximum scour depth at the back of a rib sill based on energy conservation.We then conducted a series of simulation experiments to test the proposed formula.The experimental results show that the scour depth,trench slope and the distance between ribs all increase with a decrease in debris flow density.We then compared the results of experiments and formula calculations.Through the testing analysis,we found that the calculation results of the conductedformula correspond with the experimental results better.Finally,taking Qipan Gully as an example,we designed the ultimate depth of a drainage canal for debris flow using the calculation formula. 展开更多
关键词 Debris flow Drainage canal scour depth Energy conservation method Flume experiment
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Particle swarm optimization model to predict scour depth around a bridge pier
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作者 Shahaboddin SHAMSHIRBAND Amir MOSAVI Timon RABCZUK 《Frontiers of Structural and Civil Engineering》 SCIE EI CSCD 2020年第4期855-866,共12页
Scour depth around bridge piers plays a vital role in the safety and stability of the bridges.The former approaches used in the prediction of scour depth are based on regression models or black box models in which the... Scour depth around bridge piers plays a vital role in the safety and stability of the bridges.The former approaches used in the prediction of scour depth are based on regression models or black box models in which the first one lacks enough accuracy while the later one does not provide a clear mathematical expression to easily employ it for other situations or cases.Therefore,this paper aims to develop new equations using particle swarm optimization as a metaheuristic approach to predict scour depth around bridge piers.To improve the efficiency of the proposed model,individual equations are derived for laboratory and field data.Moreover,sensitivity analysis is conducted to achieve the most effective parameters in the estimation of scour depth for both experimental and filed data sets.Comparing the results of the proposed model with those of existing regression-based equations reveal the superiority of the proposed method in terms of accuracy and uncertainty.Moreover,the ratio of pier width to flow depth and ratio of d50 (mean particle diameter)to flow depth for the laboratory and field data were recognized as the most effective parameters,respectively.The derived equations can be used as a suitable proxy to estimate scour depth in both experimental and prototype scales. 展开更多
关键词 scour depth bridge design and construction particle swarm optimization computational mechanics artificial intelligence bridge pier
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Numerical Analysis of the Influence of the Impinging Distance on the Scouring Efficiency of Submerged Jets
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作者 Hao Chen Xianbin Teng +3 位作者 Zhibin Zhang Faxin Zhu Jie Wang Zhaohao Zhang 《Fluid Dynamics & Materials Processing》 EI 2024年第2期429-445,共17页
Water jet technology is widely used in submerged buried pipes as a non-traditional trenching process,often invol-ving a complex sediment response.An important adjustable and influential engineering variable in this tec... Water jet technology is widely used in submerged buried pipes as a non-traditional trenching process,often invol-ving a complex sediment response.An important adjustable and influential engineering variable in this technol-ogy is represented by the impinging distance.In this study,the FLOW-3D software was used to simulate the jet scouring of sand beds in a submerged environment.In particular,four sets of experimental conditions were con-sidered to discern the relationship between the maximum scour depth and mass and the impinging distance.As shown by the results,a critical impinging distance h0 exists by which the static scour depth can be maximized;the scour mass ratio between dynamic and static conditions decreases as the impinging distance increases.Moreover,the profile contours are similar when the erosion parameter Ec is in the range 0.35<Ec<2.Empirical equations applicable for predicting the jet trenching contour under both dynamic and static scour modes are also provided in this study. 展开更多
关键词 Submerged jet impinging distance numerical simulation scour depth scour profile
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上游河床地形对桥墩局部冲刷的影响
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作者 魏松 戴齐超 +2 位作者 章飞凡 肖淑霞 陈清 《水利水运工程学报》 北大核心 2025年第2期74-83,共10页
河道内采砂、疏浚、筑坝等人类活动所形成高低起伏的河床地形改变了河道水流流态,会威胁下游桥梁基础安全,但河床地形对桥梁基础局部冲刷影响的研究甚少。采用概化的平床、凹床和凸床3种墩前河床地形,考虑凹凸河床地形尺寸、与桥墩间距... 河道内采砂、疏浚、筑坝等人类活动所形成高低起伏的河床地形改变了河道水流流态,会威胁下游桥梁基础安全,但河床地形对桥梁基础局部冲刷影响的研究甚少。采用概化的平床、凹床和凸床3种墩前河床地形,考虑凹凸河床地形尺寸、与桥墩间距离、来水流速等因素,进行室内水槽试验,就河床地形对下游桥墩墩周局部冲刷的影响进行研究。结果表明:与平床相比,凹床使得墩前水平流速梯度减小、凸床则增大;凹床及凸床地形均导致墩周局部冲刷进程加快、冲刷程度加剧;凹床及凸床地形对墩前流速分布和墩周冲刷坑形态的影响程度与地形相对高度呈正相关、与地形变化点和桥墩间距离呈负相关。基于试验数据,得到考虑地形因素的桥墩局部冲刷深度计算公式,提出了上游河床地形影响桥墩局部冲刷界限距离的概念及预测方法,可为实际工程管理提供参考。 展开更多
关键词 河床地形 局部冲刷 模型试验 冲刷深度 地形影响界限距离
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超大直径越江隧道河段极端洪潮冲刷深度预测
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作者 孙峰 郑亮 +1 位作者 傅宗甫 徐鼎平 《长安大学学报(自然科学版)》 北大核心 2025年第4期95-106,共12页
为确定富春江秦望通道工程过江段的合理埋深取值范围,通过数学模型模拟计算河段平面水位及流场情况,在此基础上结合物理模型试验研究上边界100年一遇洪水流量+下边界100年一遇洪水位、上边界100年一遇洪水流量+下边界最低潮水位、上边界... 为确定富春江秦望通道工程过江段的合理埋深取值范围,通过数学模型模拟计算河段平面水位及流场情况,在此基础上结合物理模型试验研究上边界100年一遇洪水流量+下边界100年一遇洪水位、上边界100年一遇洪水流量+下边界最低潮水位、上边界300年一遇洪水流量+下边界100年一遇洪水位、上边界300年一遇洪水流量+下边界最低潮水位(工况1~4)4种洪潮组合工况下隧址处河床最大冲刷深度,并与数学模型计算结果进行相互验证。研究结果表明:在相同洪水流量下,下游低潮位时河道水流量大,水位低,上下游水位差较大,因此,流速相对较大,更容易在河槽产生冲刷;在工况2和4下,数学模型极限冲刷深度计算结果分别为4.50与6.45 m;在4种工况,动床冲刷模型极限冲刷深度分别为1.50、1.95、2.40、4.50 m;动床冲刷试验反映洪水相应历时(原型70 h)及极限水文条件下的河床冲刷情况,冲刷深度比较符合实际情况,可为盾构穿越江河工程安全控制提供参考。 展开更多
关键词 隧道工程 极端洪水冲刷深度 模型试验 隧道埋深
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波流作用下裙式吸力锚基础的冲刷特征研究
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作者 刘红军 郭子贤 +1 位作者 于雅琼 朱成浩 《中国海洋大学学报(自然科学版)》 北大核心 2025年第9期80-90,共11页
裙式吸力锚是一种有着施工方便,抗冲刷性能强等优点的新型海上风机基础型式。本文通过室内波流水槽冲刷试验,将裙式吸力锚模型安装在平底砂床中,改变波流条件,记录冲刷发展的过程与冲刷坑的形态特征,并就冲刷发展规律受到不同波流因素... 裙式吸力锚是一种有着施工方便,抗冲刷性能强等优点的新型海上风机基础型式。本文通过室内波流水槽冲刷试验,将裙式吸力锚模型安装在平底砂床中,改变波流条件,记录冲刷发展的过程与冲刷坑的形态特征,并就冲刷发展规律受到不同波流因素的影响进行分析。研究成果如下:当流速增加或淹没率减小时,冲刷范围增大,冲刷发展加快,准平衡阶段冲刷深度与淤积高度增加。得到了预测不同的基础高度(淹没率)下基础周围冲刷深度历时发展规律。波高增大时,随着试验从清水冲刷阶段发展到动床冲刷阶段,最大冲刷深度先增加后减小,最大淤积高度始终增加。增加相对流速会使冲刷加剧,增加速率先提升再降低。基础前方冲刷坑为“倒勺状”,基础两侧对称出现沙丘,基础后方有马蹄状淤积沙丘。流速增加或淹没率减小时,基础前方冲刷坑,后方淤积沙丘的尺度都会增大。筒裙结构能较好地发挥抗冲刷作用。 展开更多
关键词 海上风机 裙式吸力锚 波流作用 冲刷深度 冲刷坑形态
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防波堤局部冲刷问题研究综述
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作者 孙波 俞舒展 +1 位作者 唐磊 张磊 《中国港湾建设》 2025年第2期1-9,26,共10页
防波堤在抵御波浪、保护岸线和维持港内水域稳定方面具有至关重要作用。在水流和波浪等动力因素作用下,防波堤堤身和堤头附近的泥沙易发生起动或悬浮,进而在防波堤周围形成冲刷坑。冲刷坑的存在可能引发护面块体脱落、堤身整体倾覆等问... 防波堤在抵御波浪、保护岸线和维持港内水域稳定方面具有至关重要作用。在水流和波浪等动力因素作用下,防波堤堤身和堤头附近的泥沙易发生起动或悬浮,进而在防波堤周围形成冲刷坑。冲刷坑的存在可能引发护面块体脱落、堤身整体倾覆等问题,严重威胁防波堤的完整性和结构稳定性,最终导致其功能丧失。对直立堤与斜坡堤的局部冲刷机理、影响因素、冲刷坑发展过程及冲刷形态、冲刷深度预测方法和冲刷防护措施进行了综述,归纳当前防波堤局部冲刷研究存在的问题,并展望未来的研究方向。 展开更多
关键词 防波堤 局部冲刷 冲刷坑 冲刷深度预测方法 局部冲刷防护措施
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某水利枢纽工程泄洪冲沙洞动床冲刷试验研究
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作者 罗昌辉 《吉林水利》 2025年第1期22-26,共5页
针对某水利枢纽泄洪冲沙洞,采用动床模型试验的方法对消能区下游河床冲刷情况进行模拟研究,并根据不同泄洪工况冲刷情况提出优化思路和修改方案。试验结果表明:各工况下对下游河床的冲刷深度及冲坑形状,冲坑最低点均在退水渠轴线上;在... 针对某水利枢纽泄洪冲沙洞,采用动床模型试验的方法对消能区下游河床冲刷情况进行模拟研究,并根据不同泄洪工况冲刷情况提出优化思路和修改方案。试验结果表明:各工况下对下游河床的冲刷深度及冲坑形状,冲坑最低点均在退水渠轴线上;在校核工况下最大冲坑深度可达3.84m,钢筋石笼末端冲坑深度为1.38m。因此,退水渠末端防冲齿墙深度应不小于2m,才可保证退水渠及消力池自身安全。 展开更多
关键词 泄洪冲沙洞 水工模型试验 冲刷深度
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黄河口黏性泥沙含量对底床稳定性影响研究
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作者 马俊峰 拾兵 +2 位作者 柏涛 陈柏文 王俊杰 《海洋湖沼通报(中英文)》 北大核心 2025年第4期120-127,共8页
黏性泥沙颗粒与非黏性泥沙颗粒组成的土体床面的起动流速与抗冲蚀性能一直是研究河道、明渠等水工建筑物底层床面稳定性的重要因素。本文利用黄河三角洲地区采集的黏性泥沙样本与非黏性泥沙颗粒混合重塑泥沙样本,对重塑泥沙样本进行起... 黏性泥沙颗粒与非黏性泥沙颗粒组成的土体床面的起动流速与抗冲蚀性能一直是研究河道、明渠等水工建筑物底层床面稳定性的重要因素。本文利用黄河三角洲地区采集的黏性泥沙样本与非黏性泥沙颗粒混合重塑泥沙样本,对重塑泥沙样本进行起动流速和抗冲蚀性能的试验研究,结果表明:黄河口黏性泥沙重塑黏土在黏粒含量10%~30%之间发生起动流速突变;底床冲刷坑相对深度与床面过剪切应力存在非线性关系;推导了重塑泥沙冲刷相对深度的无量纲计算公式。 展开更多
关键词 重塑黏土 起动流速 相对冲刷深度 过剪切应力 床面稳定性
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水流作用下大直径墩柱周围局部冲刷实验
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作者 王东 闫圣 李绍武 《哈尔滨工程大学学报》 北大核心 2025年第4期703-709,共7页
针对桥梁、港口水工建筑物以及近岸海洋结构墩柱基础稳定性问题,本文采用物理模型实验方法在较大宽度的造流水槽中开展了较大直径圆柱周围的局部冲刷研究。实验是在清水冲刷条件下进行的,实时观测了圆柱周围控制点的冲刷发展过程,观察... 针对桥梁、港口水工建筑物以及近岸海洋结构墩柱基础稳定性问题,本文采用物理模型实验方法在较大宽度的造流水槽中开展了较大直径圆柱周围的局部冲刷研究。实验是在清水冲刷条件下进行的,实时观测了圆柱周围控制点的冲刷发展过程,观察到冲刷坑发展达到平衡历时最长近10 d。结合实验结果对几个代表性冲刷坑深度预报公式进行了评价,发现Sheppard公式计算结果最接近实验。结果表明:在这种尺度下圆柱周围冲刷最大冲刷深度随摩阻流速的增大而增大,但受水深影响不大。对最大冲刷深度起控制作用的因素是摩阻流速,在冲刷预报公式中采用摩阻流速代替断面平均流速作为影响因素更为合理。 展开更多
关键词 水流 大直径墩柱 清水局部冲刷 大冲刷 模型实验 无粘性沙 冲刷坑深度 预报公式
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