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1.
通过黄河三角洲埕岛海域2个典型平台桩柱周围实测水深及海流、波浪资料,研究了淤泥质粉砂海底桩柱周围局部冲刷坑的特征及其发展演化情况,并结合水动力条件对其形成机制进行分析。  相似文献   

2.
对埕岛油田典型平台周边多年的水深地形资料进行分析对比,研究平台桩基周围冲刷过程,探讨桩柱周围形成冲刷坑的冲刷深度、几何形态和分布特征,分析其冲刷机理。结果表明,平台建成初期桩基冲刷剧烈,周围海底形成以平台为中心的盆状地形,经历近1年的时间逐步达到冲淤平衡。冲刷坑形态特征主要由水动力条件控制。  相似文献   

3.
基于海底管线周围流场复杂,管线运行过程中易于出现冲刷悬空破坏等诸多特征。本文根据导流板作用下海底管线的冲刷防护机理,提出了一种透空导流板与海底管线结合的防冲刷措施。通过量纲分析得到了影响海底管线冲刷深度的无量纲公式,并通过物理模型试验,研究了单向流作用时,不同流速、不同管孔比、不同透水比的工况下透空导流板对海底管线的冲刷防护的影响。研究发现,由于透空导流板的存在,泥沙受到的推移力减小,导致泥沙淤积,海底管线的冲坑深度小于无导流板防护的冲坑深度,透空导流板防护的管线最大冲刷深度在管轴线前0.3 D处,且在管线下方冲刷坑深度明显减小。基于试验资料分析,拟合得到了平衡冲刷深度的计算公式,其公式与实测资料拟合较好,说明该公式具有较好的适用性。  相似文献   

4.
胜利埕岛海域海底松软沉积物声学探测方法探讨   总被引:1,自引:1,他引:0  
胜利埕岛海域位于复杂的黄河三角洲沉积体系中.由于黄河的断流,在风浪和海流作用下原三角洲体系受到侵蚀.在部分海底具有松散沉积物沉积。采用侧扫声纳、双频测深仪及浅地层剖面仪3种海上物探方法,对埕岛海域海底松软沉积物进行声学探测,确定了浮泥、软土层顶、海底界面及浮泥和软土层和海底界面及浮泥和软土层的厚度,研究了埕岛海域海底松软沉积物的基本分布变化规律,为今后海洋工程地质勘察海底松软沉积物奠定了基础。  相似文献   

5.
基于1976,1993年埕岛油田海域测深资料,应用HISWA浅水海浪数值计算模式,研究风暴浪入侵该海域导致的波-底相互作用后果。数值计算结果表明,海区固定点海底冲刷导致波场强化;波参数增量与冲刷深度有关;海底水质点轨道流速峰值,底摩擦耗散峰值及临界波高值相对水深分布均表明,该海域深水区海底冲刷将减弱,浅水区海底冲刷将加强。  相似文献   

6.
推进波作用下海底管线周围局部冲刷试验研究   总被引:1,自引:1,他引:1  
考虑行波作用下的海底管线的局部冲刷问题。采用波浪水槽模型试验的方法,研究波浪荷载引起的管线周围局部冲刷机理和冲刷形态,探讨行波作用下管线周围局部冲刷的演化规律,包括冲刷起动、水土界面沙波的形成以及平衡冲刷深度与KC数(keulegan-carpenter number)和相对埋置深度的关系。  相似文献   

7.
风暴浪对埕岛油田海域海底冲刷的影响   总被引:3,自引:0,他引:3  
基于1976、1993年埕岛油田海域测深资料,采用浅水海浪数值计算模式,风暴浪对该海域海底冲刷和岸滩侵蚀的影响,分析了海底冲刷机理,提出了采用数值模式预测海底冲刷的方法。  相似文献   

8.
运用ECOMSED(水动力泥沙)三维模型模拟潮流、波浪(施加风)作用条件下威海靖海湾港区张家埠新港建设前后周围海域海底地形的演化,分析其冲淤变化.并利用冲淤平衡时波潮流共同作用下对海底的切应力与沉积物临界起动剪切力相等的原理,对新港建设后的极限冲刷深度进行预测.结果表明,在引堤透空段附近和防波堤端头冲刷较严重,50年一...  相似文献   

9.
现代黄河三角洲埕岛油田海底管线的调查发现了许多管线悬空现象。分析表明,悬空主要在3种条件下产生,其中平台周围冲刷坑导致的管线悬空是最主要的。经计算可知,所调查管线的最大允许悬空长度为18.6m,其中有3条管线悬空长度已超过此值,应及时进行治理。  相似文献   

10.
杨少鹏  拾兵  杨立鹏 《海洋工程》2020,38(1):154-161
基于泥沙突变理论,针对海底管线冲刷下泥沙的运动特征,建立恒定流作用下的泥沙起动模式,确定希尔兹数、无量纲参数、冲刷坑深度之间相互作用的非线性方程,推导了恒定流作用下海底管线冲刷坑深度的预测公式。将相同条件下该公式的计算结果与前人的试验资料进行了对比,可发现尽管计算结果存在一定的误差,但也基本能满足对冲刷坑深度的预测和判断,从而证明了泥沙突变模型在预测海底管线冲刷坑深度中的适用性。  相似文献   

11.
桥墩基础冲刷是桥梁毁坏的重要因素,是桥梁基础设计的关键指标之一。目前国内外对于桥墩基础在复杂动力条件下冲刷深度的研究常采用物理模型试验方法,利用正态系列模型方法,在波流水槽中研究了水流、潮流和波流共同作用下青州航道桥索塔基础周围流态变化和局部冲刷特征。研究结果表明,桥墩最大冲刷深度和冲淤范围与水流流速、桥墩轴线与水流夹角和波浪等因素有关;在潮流最大流速和恒定流流速一致情况下,桥墩局部冲刷深度达到平衡后,将会达到与恒定流基本一致的最大冲深;波流共同作用下的最大冲刷深度比恒定流增加10%左右。设计桥墩形状在100年一遇水流和波浪共同作用下桥墩基础局部最大冲刷深度为13.7 m。  相似文献   

12.
由于海床起伏不平,斜坡的存在必然改变波浪对管线及海床的作用特性,进而影响管线三维冲刷。基于波浪港池实验,考虑规则波的作用,采用中值粒径为0.22mm的原型沙铺设与波浪传播方向成45°夹角的斜坡,研究斜向波作用下斜坡上海底管线的三维冲刷特性。通过测量管线下方冲刷坑宽度和深度的差异,分析管线三维冲刷的不均衡性。实验表明:管线的存在使斜坡上的波高有所降低;斜向波作用下管线三维冲刷的不均衡性表现为深度不均衡性和宽度不均衡性,宽度不均衡性主要是管后淤积泥沙的后移引起的,周期对三维冲刷不均衡性的影响比波高对其的影响程度大;管线自深海向近岸延展时,随水深的减小,冲刷深度分为缓慢发展阶段和快速发展阶段。  相似文献   

13.
The scour around submarine pipelines may influence their stability; therefore scour prediction is a very important issue in submarine pipeline design. Several investigations have been conducted to develop a relationship between wave-induced scour depth under pipelines and the governing parameters. However, existing formulas do not always yield accurate results due to the complexity of the scour phenomenon. Recently, machine learning approaches such as Artificial Neural Networks (ANNs) have been used to increase the accuracy of the scour depth prediction. Nevertheless, they are not as transparent and easy to use as conventional formulas. In this study, the wave-induced scour was studied in both clear water and live bed conditions using the M5’ model tree as a novel soft computing method. The M5’ model is more transparent and can provide understandable formulas. To develop the models, several dimensionless parameter, such as gap to diameter ratio, Keulegan-Carpenter number and Shields number were used. The results show that the M5’ models increase the accuracy of the scour prediction and that the Shields number is very important in the clear water condition. Overall, the results illustrate that the developed formulas could serve as a valuable tool for the prediction of wave-induced scour depth under both live bed and clear water conditions.  相似文献   

14.
为研究水流作用下斜桩周围局部冲刷特性及流场变化并掌握斜桩同垂直桩的差异,本研究在不同流速条件下开展了包含反斜桩、垂直桩、正斜桩等多种工况的水槽试验,测量分析了斜桩的冲刷历时曲线、床面形态、沿程流速分布、最大冲刷深度等数据.结果表明:清水条件下斜桩周围局部冲刷坑及桩后沙丘尺度明显减小;斜桩桩前最大冲刷深度随倾角的增加而逐...  相似文献   

15.
Abstract

The mechanism of local scour under two vibrating pipelines is investigated numerically in this research. A sediment scour model is adopted to estimate the motion of sediment. The general moving objects model, which is dynamically coupled with fluid flow, is set up to simulate the vortex-induced vibration (VIV) of the pipeline. The sediment scour model and pipeline vibration model are verified with the previous experimental results and show good agreement. Then, the coupling effects between the pipeline vibration and the local scour are investigated numerically. The effects of G/D (the ratio of the distance between the two pipelines to the diameter of the pipelines) on the local scour and the VIV of the pipeline are examined. The results indicate that the maximum scour depth under the vibrating pipelines is much larger than the scour depth under the fixed pipelines. Due to the shadowing effect of the upstream pipeline, the maximum scour depth under the upstream pipeline is deeper than that under the downstream pipeline. The pipeline vibration magnitude is closely related to the strength of the vortex that sheds behind the pipeline. The effect of G/D on the shape and strength of the vortices that shed behind the pipelines is significant.  相似文献   

16.
In order to understand the dynamic behavior of submarine pipelines exposed to current andthe mechanism of the interaction between current-induced vibration and scour of pipelines on a sandy bot-tom,an experimental investigation is conducted with a small scale model.A test model which can be testedin the flume is set up by taking into account the typical working conditions of the pipelines and by ap-plying the similarity theory.The interactions between the shape of the scour hole and the behavior of thepipeline as well as the flow patterns of the current are detailed,and the interaction mechanism outlined.The effect of vibration of the pipeline on the development of dynamic scour at different stages is foundout.The proposed experimental method and test results provide an effective means for design of marinepipelines against scouring.  相似文献   

17.
Submarine pipelines are widely used coastal structures, and scour around them can influence their stability. In this study, scour around rigid submarine pipelines under normal-incidence irregular wave attack on horizontal and (1/10) sloping beaches is studied. This paper presents experimental results concerning scour under irregular wave attack. Multiple regression analysis is used to develop models to predict the scour depth under pipelines under the influence of irregular wave attack. The representative wave parameters that characterize the irregular sea state that causes the same scour depth as regular wave attack were determined.  相似文献   

18.
单向流条件下单桩桩周冲刷过程特征试验研究   总被引:2,自引:1,他引:1  
水流引起桩基周围地基冲刷是海洋工程中的经典课题,由于问题涉及流体动力学和土力学的交叉内容,加之试验技术和计算能力的限制,这一冲刷过程仍有很多方面尚待进一步厘清。开展10组室内水槽试验,研究了不同水深情况下定床和动床冲刷时单桩桩周局部冲刷深度的发展过程。在试验过程中,通过模型桩内放置摄像机实时监测桩周冲刷深度变化,得到桩周冲深边界及最大和最小冲深方位随时间的变化曲线。试验研究发现这一冲刷过程主要特征为:局部冲刷首先发生在桩(侧)前方并逐渐向桩周扩展,而桩后则先发生淤积后再冲刷;水深越大,流速越大,桩后淤积现象持续时间越短,桩周冲刷发展迅速、均匀,但达到稳定所需时间越久;桩周最大、最小冲深点首先分别位于桩的侧前方、桩后区域,随着试验进行会发生转变或波动。  相似文献   

19.
从管道尾流区泥沙颗粒的受力平衡着手,探讨了管道冲刷的临界压力差。在此基础上,提出了一种防止或减少管道冲刷的新方法,即在管道下方安装柔性阻流器。通过物理模型试验,研究了单向恒定流及规则波作用下,柔性阻流器对管道两侧床面压力、冲刷深度的影响。试验结果表明:柔性阻流器的安装能明显减小管道两侧床面的压力差。在单向恒定流作用下,管道的冲刷深度随阻流器长度的增加而减小;当阻流器达到临界长度时,冲刷消失。规则波时,因阻流器的扰动作用,冲刷深度有所增加;但随阻流器长度的增加,其扰动作用减小,对床面的防护作用增加,因而冲刷深度减小。  相似文献   

20.
Pile groups are frequently used to support bridge decks. Scour in the vicinity of piles is the main cause for the bridges failure. In this research, to address the effects of uniform and nonuniform pile spacing on the equilibrium scour depth, laboratory experiments were carried out under steady clear-water conditions. For this purpose, scour depth produced by pile group with various pile spacing and arrangement was investigated using a laboratory flume. Flume bed was covered by uniform sediments with a median size of 0.9?mm and 0.2?m thickness. Flow discharge and velocity as well as scour depth were recorded in each experiment and the data were analyzed. The results showed that the pile spacing influences the local scour depth and with increase in uniform and transverse (perpendicular to the flow) spacing, the maximum scour depth was reduced. The pile spacing variation in line with the flow has a minor effect on scour depth. In addition, the pile spacing perpendicular to the flow was with the most influences on scour depth. The results of this research can be used by engineers to optimize the design of bridges.  相似文献   

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