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1.
受地形、地质等条件影响,明渠收缩过渡段在输水工程中十分常见,过渡段长度过短,会导致水面波动,水体紊动加剧。为研究明渠不同长度过渡段内纵向时均流速及紊动强度的分布规律,通过室内模型试验,利用二维电磁流速仪ACM2-RS测量了渠道内沿程中垂线不同深度处瞬时流速。试验结果表明:收缩段内,纵向时均流速沿程增加,紊动强度沿程降低,遵循涡旋的拉伸机制和线性扭曲理论;受二次流影响,最大流速位于水面以下,且最大流速的位置随二次流作用的增强而降低;不同长度过渡段对下游纵向流速分布和紊动强度影响不同,过渡段越短,下游水流紊动越强,但非渠底附近紊动强度沿垂向先减后增的规律不变。  相似文献   

2.
弯槽段冰塞形成及其厚度分布的试验研究   总被引:4,自引:1,他引:3  
河流冰塞是寒冷地区河流的共性问题,弯槽段易于卡封是客观存在的现象,但对其形成机理的认识尚有待探索.借助于实验室的试验水槽,通过改变水流条件和冰流量条件,研究了弯槽段冰塞形成和厚度分布的规律.结果表明:当弯槽段先铺有模拟冰盖时,初始冰塞头部向下游推进的速度随水流的Fr增加而增加;当在弯槽尾部加上模拟的初封条件时,水流条件的变化可以产生冰塞发展的两种不同顺序,提出了实验室条件下的弯槽段冰塞体形成与否的临界Fr数.  相似文献   

3.
黄河源黑河下游于2018年7月汛期发生1次颈口裁弯的极端地貌过程,裁弯河段的水流结构发生强烈调整,开展原型观测裁弯后河道水流结构具有重要科学意义。2019年和2020年采用声学多普勒流速剖面仪对裁弯河段共计45个横断面进行野外测量,对比分析裁弯后河道三维水流结构与环流强度。结果表明:受河道形态、边界条件、水文条件等因素影响,裁弯口上游顺直河段的水流结构受颈口裁弯的影响较小,而弯道段水流结构于裁弯后明显调整。具体表现为颈口裁弯对顺直河段的流速、环流强度空间分布无较大影响,会改变弯顶段最大流速的横向分布和环流结构的断面分布、影响分离区的规模和分布位置。研究结果加深了颈口裁弯后水流结构调整对牛轭湖淤积、分离区河床冲淤以及新河道冲刷影响的认识。  相似文献   

4.
连续弯道水流模拟中二次流修正效果评价   总被引:1,自引:0,他引:1       下载免费PDF全文
为了选择适用于复杂连续弯道的二次流修正方法,选取了线性方法中两种典型的计算模式,通过在正交曲线坐标系二维浅水动量方程中增加扩散应力项开发了考虑二次流影响的平面二维水流模型。基于不同复杂度的4个连续弯道试验的水位和流速分布资料,通过理论分析和数值试验对比定量评估了传统二维模型和两种二次流修正方法在连续弯道水流模拟中的效果。测试结果表明,Delft3D模型的二次流修正方法自由度较高,适用于不同复杂度的连续弯道水流模拟,而Lien模型二次流修正方法适用于微弯或中弯,应用于中弯时需要慎重选用,不适用于急弯连续弯道模拟。两种方法比较,建议连续弯道水流模拟中优选Delft3D模型的二次流修正方法。  相似文献   

5.
许传新 《世界地质》2017,36(1):311-315
潍坊森达美港航道受2015年3月18日黄渤海风暴潮影响导致航道泥沙淤积,为推算泥沙淤积的数量,根据航道的吨级、长度、淤积程度,选取距离海岸线远近不同、淤积程度不同的三段航道采用多波束测深系统进行海下地形测量,与风暴潮到来之前的航道地形数据进行比对,计算出三段航道受风暴潮影响后泥沙的淤积数量,推算整个航道受风暴潮影响淤积量,从而评估风暴潮给航道施工单位带来的损失。  相似文献   

6.
进口水流条件及河道周界特征的改变是促使分汊河道主支汊交替的两大主要因素,不同类型的汊道对两者敏感性存在差异,辨析不同汊道主支汊交替的主导因素是预测汊道演变的前提。以长江中游分汊河道为参考,通过调整进口水流动力轴线走向及两汊的长度比设置了30种概化方案,采用平面二维水沙数学模型探讨上述两种因素对主支汊交替的影响。结论表明:两汊长度比存在一个临界值,当汊长比低于此临界值时,进口主流动力轴线的偏移是影响主、支汊交替的主要动力因素;超过此临界值后,进口水流条件变化对汊道分流格局的影响将会明显减弱,影响主支汊交替的主导因子将转换为汊道间的阻力对比关系;通过概化计算得到此临界值约为1.5。  相似文献   

7.
长江口九段沙下段冲淤演变水动力机制分析   总被引:5,自引:0,他引:5       下载免费PDF全文
概述了长江口深水航道整治一期工程及工程对九段沙下段地形冲淤的影响.根据已建立的σ坐标系下三维非线性水流数学模型,用新测水文资料对模型进行验证.利用所建立的模型,结合由现场测量得到一期工程前后九段沙下段近期地形演变,数值模拟了北槽区域流通量、底层欧拉余流和北槽中下段平面水流特征,以综合分析北槽水域水动力变化对九段沙下段地形冲淤变化的影响.  相似文献   

8.
进口水流条件及河道周界特征的改变是促使分汊河道主支汊交替的两大主要因素,不同类型的汊道对两者敏感性存在差异,辨析不同汊道主支汊交替的主导因素是预测汊道演变的前提。以长江中游分汊河道为参考,通过调整进口水流动力轴线走向及两汊的长度比设置了30种概化方案,采用平面二维水沙数学模型探讨上述两种因素对主支汊交替的影响。结论表明:两汊长度比存在一个临界值,当汊长比低于此临界值时,进口主流动力轴线的偏移是影响主、支汊交替的主要动力因素;超过此临界值后,进口水流条件变化对汊道分流格局的影响将会明显减弱,影响主支汊交替的主导因子将转换为汊道间的阻力对比关系;通过概化计算得到此临界值约为1.5。  相似文献   

9.
通过不同时期实测地形资料,对比分析射阳港拦门沙航道一期整治工程建设后航道的回淤分布特征;利用实测水文泥沙资料和潮流数学模型计算分析射阳河口拦门沙航道开挖后的水流、含沙量特征;探讨了射阳港拦门沙航道淤积的泥沙来源和淤积成因。研究表明:航道开挖后沿程普遍淤积,尤其是口门及堤根区段航道淤积严重。导致航道淤积的主要原因为:有掩护航道内涨潮流速大、落潮流速小,口门外高含沙量水体进入航道后泥沙很难被带出航道,导致航道内普遍淤积;口门内2 km范围内回淤较大是由于越堤流输沙和口门内侧涨潮期间存在明显回流;导堤根部航道段回淤较大是由于射阳河与黄沙港河汇流后河道放宽,落潮期间出河口的水体挟沙力突然降低。  相似文献   

10.
粘性泥沙分层运动特征的试验研究   总被引:6,自引:5,他引:1       下载免费PDF全文
应用水槽试验研究了粘性泥沙的运动特性及水流条件和泥沙浓度对粘性泥沙运动的影响。实验结果表明,在一定的水流和泥沙浓度条件下,粘性泥沙运动存在着特殊运动形式——"分层运动","分层运动"形成时水槽中泥沙浓度沿垂线分布成"阶梯"形状,水流流速沿垂线分布为中部最大,向水面和水槽底部方向流速减小。分层运动的形成及其特征与水流条件泥沙浓度等因素密切相关,不同的泥沙浓度下形成分层运动的水动力条件不同,泥沙浓度增加,形成分层运动的水流强度也相应增加。  相似文献   

11.
为解决河道水动力模拟中由于局部急、缓流态交替可能导致计算不稳定、模拟过程无法实施的问题,提出根据实际河段存在的缓流、急流、水跌以及水跃4种流态,采用基于特征线、水量平衡等原理在各流态分界处添加内部边界的思路,建立基于Preissmann方法的复杂流态自适应模拟模型。所构建的模型能保持Preissmann方法的特点,即相邻断面离散模板以及河道首末断面各需给定一个边界条件,该特点有利于方法直接与现有成熟河网水动力模型连接。理想算例的计算结果表明方法能够模拟急、缓流之间的渐变过渡;而石亭江的实际算例表明在急、缓流态频繁交替时,采用单河道模式及河网模式均能收敛到恒定状态,满足模拟实际复杂流态时的稳定性要求。  相似文献   

12.
李兆华  胡杰  冯吉利  龚文俊 《岩土力学》2018,39(Z1):513-520
泥石流是一个世界范围的地质灾害问题,多年来受到广泛而深入的研究。大多数工作致力于分离地研究岩土材料破坏前的失稳机制和失稳后的快速流动扩展。尝试以一种连续方法模拟完整的泥石流过程,仅用一个本构模型描述泥石流的起始、扩展和停滞。首先讨论了重力增大和基质吸力降低诱发泥石流的力学机制,描述了泥石流过程中岩土材料力学性质的弹塑性–黏性转变现象,对泥石流进行了黏弹塑性的全程模拟,并对挡土墙的冲击效应进行了启发性研究,证明了研究中所使用的本构模型可以准确地描述岩土材料的固流转化现象,数值方法可以很好地对均质连续介质进行大位移模拟。  相似文献   

13.
The performance of a new constitutive model called ‘kinematic hardening modified Cam clay’ (KHMCC) is presented. The model is described using the ‘continuous hyperplasticity’ framework. Essentially this involves an infinite number of yield surfaces, thus allowing a smooth transition between elasticity and plasticity. The framework allows soil models to be developed in a relatively succinct mathematical form, since the entire constitutive behaviour can be determined through the specification of two scalar potentials. An implementation of the continuous hyperplasticity model is also described. The model requires eight parameters plus a viscosity coefficient for rate-dependent analysis. The model is defined in terms of triaxial stress–strain variables for this study, and is used to model monotonic triaxial tests on Bangkok clay. Comparisons of the theoretical predictions with the results of cyclic undrained triaxial compression tests on Bangkok clay are also presented.  相似文献   

14.
The control exerted by the hydrostratigraphic structure on aquifer recharge, groundwater flow and discharge along the coastal areas of a Mediterranean basin (Salento peninsula, about 5,000?km2 wide, southern Italy) is assessed through the development and application of a groundwater flow model based on the reconstruction of the hydrostratigraphic architecture at the regional scale. The hydrostratigraphic model, obtained by processing surface and subsurface data, is applied to map the top of the main aquifer, which is hosted in the deep hydrostratigraphic unit corresponding to Cretaceous and Oligocene limestones with complex geometrical relationships with the sea. It is also used to estimate the aquifer recharge, which occurs by percolation through overlying younger sediments with low permeability. These data are completed with information about the soil use to estimate water abstraction for irrigation and with literature data to estimate the water abstraction for drinking and industrial purposes. The above-sketched conceptual model is the basis for a finite difference groundwater 2D pseudo-stationary flow model, which assumes the following fundamental approximations: the fractured and karst limestone hydrostratigraphic unit can be approximated, at the model scale, as a continuous medium for which the discrete Darcy??s law is valid; the transition zone between salt and fresh water is so small with respect to the grid spacing that the Ghyben?CHerzberg??s approximation for a sharp interface can be applied. Along the coastline different boundary conditions are assigned if the top of the limestone hydrostratigraphic unit lies either above the sea level (the aquifer has a free surface and fresh water is drained), or below the sea level (the aquifer is under pressure and the contact with sea occurs off-shore). The groundwater flow model correctly predicts the areas where the aquifer is fully saturated with salt water.  相似文献   

15.
To investigate the relative importance of projected sea-level rise, climate change effects on recharge, and groundwater extraction on seawater intrusion in important coastal aquifers in Atlantic Canada, a three-dimensional numerical model of density-dependent groundwater flow coupled with solute transport was developed for the Richibucto region of New Brunswick. The model was used, with an efficient 2k factorial design approach, to perform simulations for the period 2011–2100. The results of the factorial analyses indicate that the relative importance of the three factors investigated varies depending on the model location considered. The effect of declining recharge is most significant at shallow to intermediate depths along the freshwater–seawater transition zone, while the effect of increasing pumping rates dominates at a location relatively close to the well field. The effect of sea-level rise is shown to be significant only at the much deeper inland toe of the transition zone. The spatial variation in importance is related to how different model boundary conditions influence freshwater flow at the different locations within the model domain. This investigation indicates that sea-level rise has the least significant effect (of the three factors considered) on future seawater intrusion in sandstone aquifers in the Richibucto region.  相似文献   

16.
新疆火山岩双重介质气藏供排气机理数值模拟研究   总被引:1,自引:0,他引:1  
根据火山岩气藏特点建立了反映气藏渗流特征的双重介质数学模型,应用数值模拟的方法研究基质孔隙-裂缝-井筒之间的供排气机制,定量分析了不同产量的气井定产条件下,窜流系数? 对火山岩气藏稳产的影响程度。数值模拟结果表明,双重介质气藏气体窜流过程包括过渡段和稳定段,过渡段基质窜流量小于井底产出量,井底压降快,稳定段窜流量与井底产量相当,井底压降变缓,气体窜流进入稳定段所需时间决定于窜流系数。当窜流系数大于10-7时,窜流对气井生产影响较小;但当窜流系数小于10-8时,气井稳产受窜流影响严重,此时根据气井窜流系数的大小合理配产显得十分重要。结合新疆某口井的实例进行计算,验证了数值模拟结果的可靠性,证明供排气机理数值模拟对气藏高效稳产开采有一定的指导意义。  相似文献   

17.
Abstract

Compaction driven fluid flow is inherently unstable such that an obstruction to upward fluid flow (i.e. a shock) may induce fluid-filled waves of porosity, propagated by dilational deformation due to an effective pressure gradient within the wave. Viscous porosity waves have attracted attention as a mechanism for melt transport, but are also a mechanism for both the transport and trapping of fluids released by diagenetic and metamorphic reactions. We introduce a mathematical formulation applicable to compaction driven flow for the entire range of rheological behaviors realized in the lithosphere. We then examine three first-order factors that influence the character of fluid flow: (1) thermally activated creep, (2) dependence of bulk viscosity on porosity, and (3) fluid flow in the limit of zero initial connected porosity. For normal geothermal gradients, thermally activated creep stabilizes horizontal waves, a geometry that was thought to be unstable on the basis of constant viscosity models. Implications of this stabilization are that: (1) the vertical length scale for compaction driven flow is generally constrained by the activation energy for viscous deformation rather than the viscous compaction length, and (2) lateral fluid flow in viscous regimes may occur on greater length scales than anticipated from earlier estimates of compaction length scales. In viscous rock, inverted geothermal gradients stabilize vertically elongated waves or vertical channels. Decreasing temperature toward the earth’s surface can induce an abrupt transition from viscous to elastic deformation-propagated fluid flow. Below the transition, fluid flow is accomplished by short wavelength, large amplitude waves; above the transition flow is by high velocity, low amplitude surges. The resulting transient flow patterns vary strongly in space and time. Solitary porosity waves may nucleate in viscous, viscoplastic, and viscoelastic rheologies. The amplitude of these waves is effectively unlimited for physically realistic models with dependence of bulk viscosity on porosity. In the limit of zero initial connected porosity, arguably the only model relevant for melt extraction, travelling waves are only possible in a viscoelastic matrix. Such waves are truly self-propagating in that the fluid and the wave phase velocities are identical; thus, if no chemical processes occur during propagation, the waves have the capacity to transmit geochemical signatures indefinitely. In addition to solitary waves, we find that periodic solutions to the compaction equations are common though previously unrecognized. The transition between the solutions depends on the pore volume carried by the wave and the Darcyian velocity of the background fluid flux. Periodic solutions are possible for all velocities, whereas solitary solutions require large volumes and low velocities. © Elsevier, Paris  相似文献   

18.
Distal pillows occur associated with a sheet flow and megapillows in the me?akoz outcrops of the Basque–Cantabrian Basin (N Spain). Basaltic volcanic rocks are interbedded with Turonian sediments and depict typical features of shallow submarine emissions. An exceptional basaltic flow displays four types of morphology: (1) sheet lava with columnar jointing, (2) welded columnar breccia, (3) megapillows, and (4) pillow lavas with sparse megapillows. The field data from me?akoz combined with experimental and field data from the literature for similar volcanic facies can be integrated into a new propagation model for the transition from sheet flows to pillow lavas in underwater environments. At near vent high emission rates, lava flows develop a thin crust immediately after its emplacement and break at the front under the magma pressure allowing for the massive propagation of lava as a sheet flow. Increased cooling promotes thickening of the lava outer crust far from the vent while continuous supply of fresh magma increases the pressure onto the thick crust until its rupture. The lava emitted in small volumes from the flow front promotes the formation of megapillows and pillow lavas that are later on covered by the advancing sheet flow. The lava flow freezes progressively toward more distal parts, gradually increasing its viscosity until it stops. The crust temporarily holds the residual melt pressure increasing the volume of the flow distal section by inflation. Finally, the internal magma pressure breaks the crust and liberates lava at moderate-to-low flow rates producing pillows, while lava drainage inside the inflated sheet flow produces lava tunnels and gravitational collapse of the roofs by hydrostatic pressure to form breccias nurtured by columnar lava fragments.  相似文献   

19.
The Baluti Formation is exposed succession of the Rhaetian age (Upper Triassic). These strata are interpreted herein for the first time to redeposit in a deep marine setting (distally steepened carbonate ramp/medial to distal slope) on the northwestern margin of the Neo-Tethys. The Galley Derash section is apparently continuous with no evidence for either subaerial exposure or submarine erosion. The absence of erosional scours in the study area confirms emplacement of these strata below both fair-weather and storm wave base. Event beds, particularly those resulting from sediment gravity flows, dominate the Rhaetian interval. The Upper Rhaetian strata are primarily assigned to the Galley Derash Valley. It records an upward transition from moderate-scale, olistolith-bearing debris flow deposits (debrite) to medium-/thin-bedded turbidites remobilized as sediment slumps/slides. The succession is dominated by medium- to thin-bedded calcareous turbidites and hemipelagic suspension deposits. Very low fossil assemblages, particularly stromatolite fragments, and planktonic bivalves occur within some intervals in the section. Rapid and relatively continuous sedimentation is attested to by the thickness of the section, the abundance of calcareous turbidites, and the thin nature of the intercalated hemipelagic beds. Low content of badly preserved fossils and evidence of continuous and rapid sedimentation refer to alteration by tectonic disturbances or diagenesis. This makes the Baluti Beds as a supplementary section for the Rhaetian successions in Iraq.  相似文献   

20.
Artificial ground freezing is an environmentally friendly technique to provide temporary excavation support and groundwater control during tunnel construction under difficult geological and hydrological ground conditions. Evidently, groundwater flow has a considerable influence on the freezing process. Large seepage flow may lead to large freezing times or even may prevent the formation of a closed frozen soil body. For safe and economic design of freezing operations, this paper presents a coupled thermo-hydraulic finite element model for freezing soils integrated within an optimization algorithm using the Ant Colony Optimization (ACO) technique to optimize ground freezing in tunneling by finding the optimal positions of the freeze pipe, considering seepage flow. The simulation model considers solid particles, liquid water and crystal ice as separate phases, and the mixture temperature and liquid pressure as primary field variables. Through two fundamental physical laws and corresponding state equations, the model captures the most relevant couplings between the phase transition associated with latent heat effect, and the liquid transport within the pores. The numerical model is validated by means of laboratory results considering different scenarios for seepage flow. As demonstrated in numerical simulations of ground freezing in tunneling in the presence of seepage flow connected with the ACO optimization algorithm, the optimized arrangement of the freeze pipes may lead to a substantial reduction of the freezing time and of energy costs.  相似文献   

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