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1.
沙坝海岸沿岸流速度剖面特征研究   总被引:1,自引:0,他引:1  
王彦  邹志利 《海洋学报》2014,36(11):120-130
通过对两个坡度沙坝地形沿岸流实验测量和基于能量方程的沿岸流数值模拟,研究了沙坝海岸平均沿岸流速度剖面的双峰剖面特征,重点分析了第二个峰值的特征和两峰值的比值。综合考虑入射波高、入射波类型和坡度对波生沿岸流垂直岸线速度剖面的影响。结果表明,平均沿岸流速度剖面出现双峰剖面特征:第一峰值发生在沙坝向岸侧面的中部,第二个峰值发生在靠近岸线处;同一坡度情况两个峰值的位置和比值,不受入射波类型、入射波高的影响。数值模型中包括了侧混、底摩擦和水滚等因素,其数值模拟结果和实验值拟合较好,并讨论了有无侧混和水滚对速度剖面的影响。  相似文献   

2.
砂质海滩剖面形态受到泥沙粒径、海洋动力的影响。自然或人工海滩一般由粒径不同的级配泥沙组成,其海滩剖面形态应与海滩砂的级配有关。本文用不同粒径和级配的砂铺设海滩,进行了不同波浪动力作用下滩形形成的水槽试验,探究海滩剖面与波浪动力、泥沙粒径以及级配之间的关系。结果表明:波高越大越容易形成沙坝型剖面,波高越小越容易形成滩肩型剖面,沙床粒径越细,泥沙横向输移量越大,沙坝宽度越大,沙坝位置更为向海,滩肩更为向岸;波周期越大,滩肩位置越容易淤积;级配沙床中,对沙坝形态起主要影响作用的为粗颗粒泥沙。试验得到的水下沙坝形态参数奎利根比并非已有研究给出的定值,与泥沙组成和波参数有关。  相似文献   

3.
通过波浪水槽实验,对海平面变化造成的波浪动力因素改变引起的沙质岸滩形态响应开展机理性研究。实验采用1∶10单一沙质斜坡概化岸滩,利用3种不同实验水深模拟海平面变化,考虑椭圆余弦波、非规则波、规则波和孤立波4种类型波浪作用。实验对波浪在斜坡上的传播变形、破碎、上爬和回落过程的波高及波浪作用后的岸滩地形进行了测量。实验结果表明,椭圆余弦波、规则波和非规则波作用下,平衡岸滩呈现出滩肩形态,孤立波作用下则呈沙坝形态。海平面上升造成波浪动力增强,沙质岸滩平衡剖面形状基本保持不变向岸平移,槽谷、滩肩、沙坝位置以及岸线蚀退距离,均呈现出良好规律性。  相似文献   

4.
海岸波浪多次破碎波能耗散模型   总被引:1,自引:0,他引:1  
闫圣  邹志利 《海洋学报》2020,42(9):30-37
在坡度很缓(接近或小于1∶100)的海岸,波浪在向海岸传播的过程中,可能经历多次破碎,而在两次波浪破碎之间将伴随着波浪恢复(波浪恢复到不破碎状态)。在现有海岸波高计算模型中,波浪破碎是通过波能耗散来模拟的,但所采用的波能耗散模型都不能自动考虑波浪出现多次破碎的过程,特别精确模拟这一过程中出现的波浪恢复。本文提出了解决这一问题的新的波能耗散模型,模型的建立是通过在Dally模型中重新建立稳定波能、饱和波高水深比和波能耗散系数,并引入了波浪恢复的判断条件实现的。该模型的波能耗散在波浪恢复区的值很小故能描述波浪恢复区的波浪运动。与实验结果的对比表明,新模型可以适合缓坡情况波浪多次破碎的波高模拟,而且对不同坡度的平坡和沙坝海岸(1∶100~1∶10)的破碎波模拟都可以给出与实验结果符合的结果,并且可以自动识别多次波浪破碎的存在和波浪恢复的发生。  相似文献   

5.
近年来风暴潮等海洋灾害日趋频发,沙质海岸侵蚀问题也愈发突出,沙滩稳定防护显得日益重要。为研究风暴浪作用下沙质岸滩稳定机制问题,设计了一系列的水槽试验,对风暴浪作用下沙质岸滩的稳定机制和演变过程进行了录像观察和研究分析。试验中采用图像处理技术,根据水和岸滩床面的像素值差异,对岸滩整体剖面进行实时动态提取;对比和分析了不同入射波高、波周期、水深、岸滩初始坡度以及波高连续变化下沙质岸滩演变过程。试验结果表明,岸滩稳定与岸滩初始坡度和沙坝的发育直接相关,而波参数主要影响岸滩扰动幅度和沙坝以及前滩侵蚀边界的位置变化。当入射波高连续变化时,沙坝迅速响应并向离岸迁移。岸滩变化幅值与入射波能流存在明显正相关关系,波能流越大对岸滩稳定性的危害越大。而水位升高会增强前滩向岸侵蚀风险。此外,在本试验尺度下,前滩以侵蚀为主。当岸滩初始坡度小于稳定坡度且波陡较小时,即Dean参数Ω''较小时,岸滩才发生明显的前滩淤积,这对于试验尺度下岸滩恢复工况研究至关重要。具体来说,当岸滩整体坡度为1:10且前滩坡度达到1:5~1:2.5时,岸滩稳定性最好,岸滩形态最接近最终平衡剖面,岸滩趋于稳定的时间最短。  相似文献   

6.
红树林广泛分布于我国南方沿海地区,可有效减小波浪对岸滩的破坏,研究其在规则波作用下对岸滩变化的影响具有重要意义。基于波浪水槽实验,采用PVC圆管模拟红树林,选取无黏性沙堆砌而成的1/10~1/20组合坡概化岸滩。实验结果表明,在规则波作用下,红树林的存在对岸滩剖面变化产生了较大影响;并分析了规则波波陡、植物分布密度和排列方式对岸滩剖面变化的影响。基于实验数据,建立了在实验条件下的岸滩冲刷坑尺度、淤积沙坝尺度、最大冲刷深度、最大淤积高度与规则波波陡、红树林的分布密度和排列方式之间的关系式,结果呈幂指数函数关系。揭示了岸滩剖面变化与规则波水动力特性、红树林、泥沙颗粒和岸滩坡度之间的联系。引入植物综合系数,预测给定规则波波陡和波长情况下的岸滩冲淤演变特征值,为海岸生物防护工程的建设提供科学依据。  相似文献   

7.
通过波浪水槽实验,开展不同类型波浪作用下的沙质岸滩演化规律研究工作。本次实验研究不考虑比尺,采用1:10与1:20组成的复合沙质斜坡对岸滩进行概化,选取规则波和椭圆余弦波两种典型波浪作用,对波浪的传播、变形和破碎、上爬、回落过程以及波浪作用前后沙质岸滩床面地形进行了观测,探讨波浪作用下沙质岸滩剖面演化规律。本文实验工况中,规则波作用下,岸滩剖面呈现出沙坝剖面和滩肩剖面,椭圆余弦波作用下的岸滩剖面均呈滩肩形态,发现岸滩剖面形态不仅与波浪作用类型、强度、周期等因素相关,还与波浪破碎的强度等因素有关。通过对实验过程中现象的进行观察和分析,引入了卷破波水舌冲击角的概念。对波浪卷破破碎后形成的水流挟沙运动与岸滩剖面形态的关系进行定性分析,对水舌冲击角与Irribarren参数之间的关系进行定量分析,基于Irribarren参数与岸滩剖面形态的关系初步建立了波浪作用下沙质岸滩剖面形态判别关系式。通过本文实验结果和前人实验结果对趋势线进行拟合,求得其判别系数,判别式能够较好地划分淤积型岸滩、侵蚀型岸滩及过渡型岸滩三种岸滩形态。  相似文献   

8.
波浪作用下沙坝不稳定性实验研究   总被引:2,自引:0,他引:2  
尹晶  邹志利  李松 《海洋工程》2008,26(1):40-50
对波群、规则波和不规则波作用下沙质海岸上沙坝运动进行了实验研究。研究沙坝产生的机理和不稳定性,以及不同波浪下所产生的海岸平衡剖面形状。实验中发现,波浪作用下沙坝处于向岸和离岸运动的不稳定状态,其原因可由地形不稳定性分析。探讨了波群调制系数对沙坝运动的影响,讨论了不同波况对海岸剖面形态的影响。  相似文献   

9.
海滩形态是近岸过程与海岸工程的一个重要研究内容,为探讨人工沙滩平衡剖面的形成及其形态特征和波浪作用下的滩面泥沙运动,从泥沙与波浪运动的相似规律出发,采用天然沙以正态整体模型进行二维沙质海滩的形态试验.试验证明人工沙质海滩在波浪作用一定时间之后,其剖面基本趋于一种平衡状态,沙源的向岸推移和向海下拉的情况也基本稳定.试验显示混合波的冲刷要大于单纯斜向波,单纯斜向波的冲刷大于单纯正向波,因此人工沙质海滩施工时应考虑到不同来波方向对剖面的影响.对比各个系列的整个人工沙质海滩剖面变化情况,可以看出整个沙滩剖面呈冲刷形态:从岸向海方向,在滩肩平台上形成一定的沙源堆积体;在滩肩缘到斜坡中部侵蚀最大,在斜坡下部侵蚀较小且向海呈逐渐减小趋势.  相似文献   

10.
砂质海滩的泥沙具有一定的级配,在波浪作用下,滩面泥沙粒径将发生分选,引起海滩质量变化。在水槽中用不同波高和周期的波浪分别对不同级配的沙滩进行作用,探究滩面在波浪外动力作用下的变化规律。结果表明:全级配沙滩在相同波高波浪作用下形成的沙坝型海滩滩型中,破波点向海的区域表层泥沙分选会随波浪周期增大变差;相同周期(T=1.68s)波浪作用下,全级配沙滩在大波高(H=13.2cm)和小波高(H=6.7cm)的波浪作用下分别形成沙坝型和滩肩型海滩,滩面泥沙分选变好;原始沙滩级配与滩面泥沙变化密切相关,同种波浪动力作用下,中细、粗中沙滩沙坝表层泥沙迎波面粗于背波面,粗细沙滩粗颗粒集中在沙坝和滩顶之间。  相似文献   

11.
Berm breakwaters are rubble mound structures in which the seaward slope of the initial profile may be reshaped to become more stable under severe wave attack. The stones in the seaward slope move from the initial slope to an equilibrium profile. A 2D experimental study has been carried out in a wave flume at a hydraulic laboratory of Tarbiat Modares University to study the effects of sea state and structural parameters on the reshaped profile parameters of such breakwaters. A series of 287 tests have been performed to cover the effect of various sea state conditions such as wave height, wave period, number of waves and water depth at the toe of the structure, and structural parameters such as berm width, berm elevation above still water level and armor stone size. All the tests have been done employing irregular waves with a JONSWAP spectrum. In this paper, first the reshaped profiles are schematized, and then the key parameters of the reshaped seaward profiles such as step height, step length and depth of intersection point of initial and reshaped profile are investigated, using results of this experimental work. Eventually, formulae that include some sea state and structural parameters are derived for estimation of the reshaped profile parameters. To assess the validity of the proposed formulae, comparisons are made between the estimated parameters of reshaped profiles by these formulae and earlier formulae given by other researchers. The comparisons show that the estimation procedure foretells reshaping parameters well and with less scatter according to the present data and also other experimental results within the range of parameters tested.  相似文献   

12.
The loss of beach sand from berm and dune due to high waves and surge is a universal phenomenon associated with sporadic storm activities. To protect the development in a coastal hazard zone, hard structures or coastal setback have been established in many countries around the world. In this paper, the requirement of a storm beach buffer, being a lesser extent landward comparing with the coastal setback to ensure the safety of infrastructures, is numerically assessed using the SBEACH model for three categories of wave conditions in terms of storm return period, median sand grain size, berm width, and design water level. Two of the key outputs from the numerical calculations, berm retreat and bar formation offshore, are then analysed, as well as beach profile change. After having performed a series of numerical studies on selected large wave tank (LWT) test results with monochromatic waves using SBEACH, we may conclude that: (1) Berm erosion increases and submerged bar develops further offshore as the storm return period increases for beach with a specific sand grain size, or as the sand grain reduces on a beach under the action of identical wave condition; (2) Higher storm waves yield a large bar to form quicker and subsequently cause wave breaking on the bar crest, which can reduce the wave energy and limit the extent of the eroding berm; (3) A larger buffer width is required for a beach comprising small sand grain, in order to effectively absorb storm wave energy; and (4) Empirical relationships can be tentatively proposed to estimate the storm beach buffer width, from the input of wave conditions and sediment grain size. These results would benefit a beach nourishment project for shore protection or design of a recreational beach.  相似文献   

13.
An experimental investigation of coastal erosion generated by the action of regular and irregular waves was carried out in laboratory channels. Natural beach sand, with medium diameter of 0.35 mm and specific gravity of 2.63, was used in this study. A 1:5 initial beach slope was selected for the model tests. Different wave groups were generated over the initially flat beach, and the characteristics of coastal erosion geometry such as erosion lengths, erosion depths, location of maximum erosion point, and total erosion areas were measured. The most important parameters governing coastal erosion were evaluated by using earlier investigations and experimental results. These parameters were expressed as a dimensionless group by using π theory. The empirical relationships between the geometric characteristics of coastal erosion and the dimensionless group are proposed through regression analysis for pure regular waves, pure irregular waves, and regular-irregular waves. The parameters, which were used to define geometric characteristics of coastal erosion, were evaluated and some ratios of these parameters gave a constant value.  相似文献   

14.
不同沉积物养护海滩对台风响应的差异性研究   总被引:2,自引:2,他引:0  
本文通过对厦门天泉湾人工卵石滩和会展人工沙滩在1614“莫兰蒂”超强台风影响前后的典型剖面监测,结合水文动力要素的观测和数值模拟,计算了台风影响过程的波浪场、总水位,分析了剖面形态和台风过程的剖面平均变化量。结果表明,强潮海岸人工卵石滩与人工沙滩对台风响应的特征明显不同,人工卵石滩横向上大部分卵石向岸输移堆积,滩面侵蚀,滩肩堆积形成更高的风暴滩肩,坡度明显变陡。而人工沙滩则表现为明显的沉积物离岸输运,上部滩面侵蚀,下部滩面淤积,滩面坡度明显变缓,受台风登陆后的强烈向岸风作用,滩肩顶有所夷平,滩肩高度变化很小。海滩滩肩在台风过程中是否侵蚀与台风登陆和影响过程的总水位(天文潮、风暴增水、波浪爬高)密切相关,两个人工海滩的风暴响应模式均为冲蚀;台风影响过程中,波浪能量相对强、滩面坡度相对陡的人工卵石滩比人工沙滩的剖面平均变化量小,对于台风的响应程度小,在强侵蚀高能海岸采用砾石等粗粒径沉积物进行海滩养护是减缓砂质海滩侵蚀的一种有效手段。  相似文献   

15.
近岸海域波浪场中污染物运动的实验研究   总被引:2,自引:1,他引:1  
通过实验模拟,研究了缓坡海岸带(坡度为1:100和1:40)波浪场中污染物的运动.给出了污染物在波浪破碎区和非破碎区运动范围的变化,讨论了在规则波和非规则波作用下波浪破碎区和非破碎区污染物运动的宏观变化趋势.  相似文献   

16.
A process-based 3D numerical model for surfzone hydrodynamics and beach evolution was established. Comparisons between the experimental data and model results proved that the model could effectively describe the hydrodynamics, sediment transport feature and sandbar migration process in the surfzone with satisfactory precision. A series of numerical simulations on the wave breaking and shoaling up to a barred beach were carried out based on the model system. Analyzed from the model results, the wave-induced current system in the surfzone consists of two major processes, which are the phase-averaged undertow caused by wave breaking and the net drift caused by both of the nonlinear wave motion and surface roller effect. When storm waves come to the barred beach, the strong offshore undertow along the beach suppresses the onshore net drift, making the initial sandbar migrate to the seaside. Under the condition of calm wave environment, both the undertow and net drift flow to the shoreline at the offshore side of the sandbar, and then push the initial sandbar to the shoreline. The consideration of surface roller has significant impact on the modeling results of the sandbar migration. As the roller transfer rate increases, the sandbar moves onshore especially under the storm wave condition.  相似文献   

17.
Wave elevations and water particle velocities were measured in a laboratory surf zone created by the breaking of a narrow-band irregular wave train on a 1/35 plane slope. The incident waves form wave groups that are strongly modulated. It is found that the waves that break close to the shoreline generally have larger wave-height-to-water-depth ratios before breaking than the waves that break farther offshore. After breaking, the wave-height-to-water-depth ratio for the individual waves approaches a constant value in the inner surf zone, while the standard deviation of the wave period increases as the still water depth decreases. In the outer surf zone, the distribution of the period-averaged turbulent kinetic energy is closely correlated to the initial wave heights, and has a wider variation for narrow-band waves than for broad-band waves. In the inner surf zone, the distribution of the period-averaged turbulent kinetic energy is similar for narrow-band waves and broad-band waves. It is found that the wave elevation and turbulent kinetic energy time histories for the individual waves in a wave group are qualitatively similar to those found in a spilling regular wave. The time-averaged transport of turbulent kinetic energy by the ensemble-averaged velocity and turbulence velocity under the irregular breaking waves are also consistent with the measurements obtained in regular breaking waves. The experimental results indicate that the shape of the incident wave spectrum has a significant effect on the temporal and spatial variability of wave breaking and the distribution of turbulent kinetic energy in the outer surf zone. In the inner surf zone, however, the distribution of turbulent kinetic energy is relatively insensitive to the shape of the incident wave spectrum, and the important parameters are the significant wave height and period of the incident waves, and the beach slope.  相似文献   

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