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1.
The present study examines scour geometry and turbulent flow characteristics around circular and oblong piers in alluvial channel with downward seepage. Experiments were conducted in plane sand bed of non-uniform sand under no seepage, 10% seepage and 15% seepage conditions. Scour depth at oblong pier is significantly lesser than the scour depth at circular one.However, the scour depth at both piers reduces with downward seepage. The measurements show that the velocity and Reynolds stresses are negative near the bed at upstream of piers where the strong reversal occurs. At downstream of oblong pier near the free surface, velocity and Reynolds stresses are less positive; whereas, they are negative at downstream of circular pier. The streamline shape of oblong pier leads to reduce the strength of wake vortices and consequently reversal flow at downstream of pier. With application of downward seepage turbulent kinetic energy is decreasing. The results show that the wake vortices at oblong pier are weaker than the wake vortices at circular pier. The strength of wake vortices diminishes with downward seepage.The Strouhal number is lesser for oblong pier and decreases with downward seepage for both oblong and circular piers.  相似文献   

2.
Experimental investigations have been carried out to study morpho-hydraulic characteristics such as scour geometry and turbulent flow properties around tandem piers in alluvial channels. Experiments were carried out in a plane sand bed with two circular piers of same diameter arranged in tandem manner under no seepage, 10% seepage and 20% seepage conditions. Downward seepage minimizes the scour depth around piers and restrains the development of scour depth with time. Strong reversal flow is found near the bed at upstream of piers and near free surface at downstream of piers where velocity and Reynolds shear stress are found to be negative which reduce in magnitude with downward seepage. The flow is more critical within the gap between two piers where velocity is lesser near free surface and gradually increasing towards bed. Quadrant analysis shows that contribution of each event to the total Reynolds shear stress increases with downward seepage. Sedimentation effect prevails within the scour hole whereas outside the scour hole erosive forces become more dominant. Reduced reversal flow at upstream of pier because of downward seepage results in decreasing higher order moments and turbulent kinetic energy. At downstream of piers, secondary currents are dominant due to wake vortices. Strouhal number decreases in case of seepage runs than no seepage condition.  相似文献   

3.
In this work, experimental investigations have been pursued to analyse the influence of downward seepage on the turbulent characteristics of flow and corresponding changes in vortex structure around circular bridge pier in alluvial channel. Experiments were conducted in sand bed channel with circular piers of different sizes for no seepage, 10% seepage and 20% seepage cases. The measurement of turbulent flow statistics such as velocity and Reynolds stresses is found to be negative within the scour hole at upstream of the pier whereas application of downward seepage retards the reversal of the flow causing a decrement in the velocity and Reynolds stresses. Higher Reynolds shear stress prevails at the downstream side because of the production of wake vortices. Contribution of all bursting events to the total Reynolds shear stress production has been observed to increase with downward seepage. The analysis of integral scale suggest that size of eddies increases with seepage, which is responsible for increase in particle mobility. Initially rate of scouring is more which abatements gradually with expanding time as well as with the increased of downward seepage. Presence of downward seepage reduces the depth and length of vortex and shifts towards downstream side of the pier.  相似文献   

4.
In this work, experimental investigations have been pursued to analyse the influence of downward seepage on the turbulent characteristics of flow and corresponding changes in vortex structure around circular bridge pier in alluvial channel. Experiments were conducted in sand bed channel with circular piers of different sizes for no seepage, 10% seepage and 20% seepage cases. The measurement of turbulent flow statistics such as velocity and Reynolds stresses is found to be negative within the scour hole at upstream of the pier whereas application of downward seepage retards the reversal of the flow causing a decrement in the velocity and Reynolds stresses. Higher Reynolds shear stress prevails at the downstream side because of the production of wake vortices. Contribution of all bursting events to the total Reynolds shear stress production has been observed to increase with downward seepage. The analysis of integral scale suggest that size of eddies increases with seepage, which is responsible for increase in particle mobility. Initially rate of scouring is more which abatements gradually with expanding time as well as with the increased of downward seepage. Presence of downward seepage reduces the depth and length of vortex and shifts towards downstream side of the pier.  相似文献   

5.
往复流不同入射角条件下跨海大桥桥墩局部冲刷研究   总被引:1,自引:0,他引:1  
文章以港珠澳跨海大桥工程为依托,采用理论计算和模型试验的手段进行研究,在公式得到验证的基础上,针对往复流不同入射角条件下桥墩局部冲刷深度问题进行探讨。结果表明:潮汐往复流条件下,桥墩上下游均出现局部冲刷,且上游冲刷深度大于下游;当桥墩迎流面与往复流流向基本垂直时,桥墩局部冲刷深度理论计算值略大于模型试验值,误差均在10%以内;在顺流面长度大于迎流面宽度的矩形桩墩墩型条件不变时,桥墩局部冲刷深度随往复流来流入射角的增大以变速率增大,且当入射角大于一定值时,桥墩冲刷深度趋于稳定。  相似文献   

6.
Temporal evolutions of scour at submerged circular cylinders were investigated. Flow visualization was carried out around the cylinders over plane, under developed and equilibrium scour holes. Video analysis technique was used to formulate the equations for determining the diameter of the horseshoe vortex around the submerged cylinders, which is also verified from the vector diagrams drawn using the velocity measurements. The scour process similar to live bed scour was noticed around the downstream cylinder. The diameter of the horseshoe vortex is found to depend on the diameter of respective cylinder, submergence ratio,spacing between the cylinders and skew angle. This formulation along with the dislodgement and transportation of a single sediment particle is further incorporated in the proposed model for determining the time variation of scour around the submerged cylinders. It is evident from the results that the upstream cylinder shelters the downstream cylinder and thereby reduces the scour at the downstream cylinder. Proposed model is further extended to incorporate the effect of non-uniformity of the sediment particles on the time variation of scour depth. The results indicate significant reduction of scour depth of around 6% and 35% for upstream and downstream cylinders respectively due to the formation of the armor layer. The model is also compared with the local scour component of field data around cylindrical bridge piers to establish the differences in the scour process around a partially submerged cylinder and fully submerged tandem and skewed cylinders.  相似文献   

7.
潮汐河段桥墩局部冲刷深度的试验研究   总被引:1,自引:0,他引:1  
随着公路延伸到潮汐河道和近海海港,在桥梁设计中需要对潮汐河段桥墩的局部冲刷深度进行分析。在动床模型试验中使用了典型的潮汐水流条件和3种代表性的模型沙。使用拍照和测量记录下冲刷坑的形态和深度变化过程,得到了潮汐河段桥墩的冲刷过程,将潮流冲刷的深度与恒定流的深度进行比较,得出不同条件下冲刷深度的折减系数为0.75~0.92,建议以涨落急最大流速代替恒定流流速作为计算的标准,试验结果还表明泥沙粒径小于0.15 mm条件下的公式计算结果与试验结果有差别,建议对公式进行修正。  相似文献   

8.
桥墩紊流宽度的计算与水流雷诺数的范围关系较大,将影响到计算成果的合理性。结合山区河流超临界雷诺数条件,采用格子Boltzmann方法模拟桥墩三维紊流流场,并结合大涡模拟和运动边界处理方法,分析不同来流、河形等条件下的桥墩三维紊流宽度,由此建立了顺直河道和弯曲河道中圆型桥墩相对紊流宽度与弗劳德数之间的耦合关系。该研究成果通过四川邓家坝大桥航宽验算,与经验法及祖小勇算法比较,发现该方法得出的桥墩紊流宽度略小、其数值趋于合理。  相似文献   

9.
桥墩周围局部冲刷深度是跨海大桥基础设计的重要参数。采用系列模型试验方法,对具体工程大型桥墩在水流和波流共同作用下的局部冲刷分别进行研究,提出了冲刷坑形态和最大冲刷深度,供工程设计参考。同时,通过单向水流和波浪 水流两种情况冲深结果比较,指出在预测波流共同作用下的大型桥墩局部冲深时,不应将两种动力条件进行简单的迭加,而应具体问题具体分析。  相似文献   

10.
In order to investigate the effects of a free surface on the wake behind a rotating propeller, experiments were carried out in a circulating water channel for two cases: one with an open free surface and one with a closed free surface covered by a rigid plate. Four hundred instantaneous velocity fields were measured using a two-frame particle image velocimetry (PIV) technique at four different blade phases. These were ensemble-averaged to investigate the time-averaged flow structure in the near-wake region. For a surface ship, the flow behind the propeller is influenced by the hull wake and the free surface. The phase-averaged mean velocity fields show the potential wake and the viscous wake formed by the boundary layers developed on the blade surfaces. The interaction between the bilge vortices and the incoming flow along the ship’s hull deforms the wake structure. Tip vortices are generated periodically, and the slipstream contraction occurs in the near-wake region. The free surface was found to affect the axial velocity component and vortex structure behind the propeller. As the flow goes downstream, the tip and trailing vortices dissipate due to turbulent diffusion and active mixing with adjacent vortices.  相似文献   

11.
拟建南纪门轨道专用桥桥墩距离下游整治建筑物最小距离仅24 m,桥墩建成后将对整治建筑物自身稳定产生一定的不利影响,进而可能影响该河段航道整治效果和既定整治目标的实现。采用二维水流泥沙数学模型,计算桥墩建成后水沙条件变化,并对提出的联合守护方案效果进行分析。结果表明:桥梁建设对工程河段航道的通航水流条件影响较小,但会造成桥墩、直立式挡墙前沿和丁顺坝坝头等区域产生局部冲刷,影响桥墩、挡墙及Z#1丁顺坝自身的稳定性;联合守护方案实施后,局部冲刷范围明显减小,冲刷强度显著减弱,保障了整治建筑物和桥梁的稳定性,确保航道整治工程原设计功能的正常发挥。  相似文献   

12.
港珠澳大桥人工岛局部冲刷是大桥工程设计亟待解决的关键技术问题。在现场资料分析与物理模型验证的基础上,采用正态系列模型延伸法,在潮汐宽水槽中研究了淤泥质海床上人工岛周围流态变化和局部冲刷的发展过程。研究结果表明,在洪季大潮情况下,东、西人工岛最大冲深分别为10.3 m和9.0 m,冲刷坑集中在岛桥结合部和隧道防护段及防撞墩附近;最大冲刷深度与人工岛的几何形状、流速、工程水域的沙土特性以及水深等相关,冲刷坑的平面形态则与岛型、水流夹角、涨落潮流速差以及潮流历时有密切关系。  相似文献   

13.
枢纽下游河床清水冲刷粗化研究综述   总被引:1,自引:0,他引:1  
程小兵  李一兵 《水道港口》2008,29(2):106-112
天然河流修建水库后,下游河道发生的最大变化就是河床冲刷粗化。河床冲刷与粗化的研究在水利、水运、水电工程中有着重大的实际意义,是解决山区及丘陵区水利工程面临的河床冲刷粗化所引起的河床演变的关键问题之一。国内外众多学者专家都对冲刷粗化问题进行过研究,文章意在总结已有枢纽下游河床冲刷粗化的研究成果,包括冲刷与粗化机理、冲刷粗化起动流速计算、粗化输沙率计算、粗化层级配计算、极限冲刷深度计算及冲刷后水位降落计算等。并对现有研究成果进行了简要的述评,为后续对这一问题进行深入研究作出必要的准备。  相似文献   

14.
针对水下不分散混凝土抗冲刷性能,开展室内模型试验,得出8种典型抗分散剂掺量条件下水下不分散混凝土的抗冲刷临界流速。基于OpenFOAM的有限高度圆柱绕流三维数值模拟,分析凸起障碍物对水下不分散混凝土局部冲刷的影响机制。结果表明,增加抗分散剂掺量和减少单位用水量可以提高水下不分散混凝土的抗冲刷性能,HF-III型抗分散剂的效果比UWB-II型抗分散剂的抗冲刷效果好;凸起障碍物周围以及下游易发生局部冲刷;与松散沙床上圆柱周围的冲刷坑相比,水下不分散混凝土的冲刷坑范围较小,深度较浅,且主要位于圆柱的下游。  相似文献   

15.
The computational fluid dynamics(CFD) method is used to numerically simulate a propeller wake flow field in open water.A sub-domain hybrid mesh method was adopted in this paper.The computation domain was separated into two sub-domains,in which tetrahedral elements were used in the inner domain to match the complicated geometry of the propeller,while hexahedral elements were used in the outer domain.The mesh was locally refined on the propeller surface and near the wake flow field,and a size function was used to control the growth rate of the grid.Sections at different axial location were used to study the spatial evolution of the propeller wake in the region ranging from the disc to one propeller diameter(D) downstream.The numerical results show that the axial velocity fluctuates along the wake flow;radial velocity,which is closely related to vortices,attenuates strongly.The trailing vortices interact with the tip vortex at the blades’ trailing edge and then separate.The strength of the vortex shrinks rapidly,and the radius decreases 20% at one diameter downstream.  相似文献   

16.
At present, the method of calculating the turbulent flow width around the bridge pier is not given in the "Standard for Inland River Navigation" (GB50139-2004) in China, and the bridge designer usually increases the bridge span in order to ensure the navigation safety, which increases both of the structural design difficulty and the project investments. Therefore, it is extremely essential to give a research on the turbulent flow width around the bridge pier. Through the experiments of the fixed bed and the mobile bed, the factors influencing the turbulent flow width around the bridge pier have been analyzed, such as the approaching flow speed, the water depth, the angles between the bridge pier and the flow direction, the sizes of bridge pier, the shapes of the bridge pier, and the scouring around the bridge pier, etc. Through applying the dimension analytic method to the measured data, the formula of calculating the turbulent flow width around the bridge pier is then inferred.  相似文献   

17.
海上风机结构周围冲刷数学模型研究   总被引:1,自引:0,他引:1  
基于开源程序OpenFOAM和动网格技术,利用切应力平衡法建立水流作用下的海上风电基础局部冲刷数学模型。通过模拟结果与实验数据的对比发现,所建立的冲刷数学模型能够合理反映圆柱型单桩基础周围的水流结构,冲刷深度与实验结果吻合较好。  相似文献   

18.
针对串联双圆柱的结构特点,利用IVCBC涡方法适合高雷诺数下数值计算的特点,建立了高雷诺数下串联双圆柱绕流的数值计算模型;采用经典算例验证了IVCBC涡方法的收敛性;探索了雷诺数为2.5×104、间隙比分别为1.1,1.25,2,2.5,3,3.25和4的串联双圆柱绕流的尾流特征;清晰地展示了尾流中较小的漩涡的形成、分裂和融合,详细地阐述了串联双圆柱流体特征发生突变的原因;深刻地揭示了串联双圆在高雷诺数下的绕流机理。研究表明:尾流模式与经典的实验尾流模型吻合较好,两圆柱中间的涡对是串联双圆尾流发生突变的主要原因;间隙之间时,间隙上部小漩涡形成、间隙中间流体的振动与下游圆柱表面上涡的脱落是同步的;该流体模式能清晰地展示尾流中较小漩涡,说明与有网格方法比较,该计算模型具有较大的优越性,为进一步研究高雷诺数下串联双圆柱流体力的特征提供了重要的研究工具。  相似文献   

19.
苏通大桥有底钢吊箱设计与施工   总被引:2,自引:0,他引:2  
苏通大桥北引桥B 2标全长1.475 km,标段内共有38个承台。在宽阔水域、多墩承台、中等水深和流速条件下采用了底板无连接、可拆卸式有底钢吊箱的方法进行承台施工,并获得成功。该方法具有底板可拆卸、可周转、高灵活性、低成本等特点。  相似文献   

20.
The vortex structure of the wake behind a marine propeller was investigated in terms of loading variation by using particle image velocimetry. One hundred and fifty instantaneous velocity fields were ensemble averaged to study the spatial evolution of the wake and the behavior of the tip vortices in the region ranging from the trailing edge to one propeller diameter downstream. The trailing vorticity was found to be related to the radial velocity jump, and the viscous wake was affected by the boundary layers developed on the blade surfaces. A vortex identification method using the swirling strength was employed to extract the location of the tip vortex. The loading on the blade made a clear difference to the contraction angles. Slipstream contraction occurred in the very near wake region, and unstable oscillation occurred because of reduced interaction between the tip vortex and the wake sheet behind the maximum contraction point for each loading condition. The maximum tangential velocity around the tip vortex center revealed the average radius of its core, which was used for calculating the vortex strength. Additionally, variation of the average radius of tip vortices with the change of blade loading was related to vortex tube stretching in the wake region. The nearly constant vortex strength continued up to one diameter downstream for light loading and design loading conditions.  相似文献   

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