首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到19条相似文献,搜索用时 140 毫秒
1.
对宽浅陡槽水流特性及其对下游消能衔接影响进行了试验研究。首先通过对浅层急流边界层的发展、掺气特点的分析探讨,得到了宽浅陡槽水流阻力损失比一般陡槽急流大许多的能量损耗特点及相应流速系数的范围值。分析了不同水流、边界条件下宽浅陡槽水流动量分布的特性,发现宽深比<40而流量较大时,陡槽末端呈“马鞍型”动量横向分布,具有较强的稳定性与抗干扰性;宽深比>40而流量较小时,陡槽末端呈“椭圆型”动量横向分布,这种态势缺乏对外界干扰的遏制能力,稳定性很差。指出,宽浅陡槽末端水流不稳定源于浅层急流断面动量横向分布缺乏强大的两翼控制,形成微小干扰累加递增作用,最终导致末端水跃的不稳与消能不充分,并提出了调整动量分布改善下游衔接水流稳定性的措施。  相似文献   

2.
为研究粉质黏土堤防漫溢溃决破坏过程及其对水流要素和土体性质的响应规律,以河道流量、筑堤土体含水率和孔隙率为变量,在弯道水槽中开展了9组堤防漫溢溃决概化试验.通过试验发现,粉质黏土堤漫溢溃决溃口发展过程可分为垂向侵蚀和横向扩宽两个阶段,垂向侵蚀阶段以"陡坎"后退为主要形式;筑堤土体含水率与孔隙率不仅影响了溃口垂向侵蚀以及横向扩宽速度,而且决定了溃口最终形态,河道流量主要影响堤防溃口的横向扩宽速度;溃口处流速以及下游水位变化受溃口高度的制约.拟合得到土体黏聚力与土体含水率、孔隙率的相关关系式;通过试验数据提出了由土体黏聚力和水流参数表达的"陡坎"侵蚀后退速度计算公式,证明具有一定合理性.  相似文献   

3.
《四川地质学报》2019,(4):651-657
某水电站集镇移民点场地上部分建筑的地基基坑开挖时发现基岩中陡倾角裂隙集中发育,岩体切割破碎,建筑施工陷入停滞,为查明该移民点场地下方15m范围内不良地质体分布情况,在集镇新址采用浅层地震、高密度电法、地质雷达方法进行综合物探测试。从测试成果分析来看,测区场地自上而下可分为三层,其中由表层开挖松弛岩体或回填块碎石土与第二层强风化强卸荷岩体组成的岩体其深度一般在5~22m之间,地震波速在510~1800m/s之间,此层岩体中纵向走向的结构面较横向发育;第三层中~微风化岩体的地震波速在3300~3670m/s之间,岩体稳定性较好。  相似文献   

4.
综合物探在集镇新址场地稳定性评价中的应用   总被引:1,自引:0,他引:1  
某水电站集镇移民点场地上部分建筑的地基基坑开挖时发现基岩中陡倾角裂隙集中发育,岩体切割破碎,建筑施工陷入停滞,为查明该移民点场地下方15m范围内不良地质体分布情况,在集镇新址采用浅层地震、高密度电法、地质雷达方法进行综合物探测试。从测试成果分析来看,测区场地自上而下可分为三层,其中由表层开挖松弛岩体或回填块碎石土与第二层强风化强卸荷岩体组成的岩体其深度一般在5~22m之间,地震波速在510~1800m/s之间,此层岩体中纵向走向的结构面较横向发育;第三层中~微风化岩体的地震波速在3300~3670m/s之间,岩体稳定性较好。  相似文献   

5.
模拟降雨条件下坡面流水动力学特性研究   总被引:10,自引:0,他引:10       下载免费PDF全文
为探明降雨条件下沙黄土坡面水流水动力学特性,以流体力学和泥沙运动力学理论为依据,通过5个坡度和5个雨强组合条件下室内模拟降雨试验,系统研究了坡面水流水力参数的变化规律。结果表明,降雨条件下坡面薄层水流雷诺数均小于580,处于层流失稳区;水流流型随雨强和坡度的变化而发生转捩,当坡度较缓、雨强较小时,床面形态处于低能态区和过渡区,床面出现沙纹现象,水流宏观上呈缓流,反之,坡度较陡、雨强较大时,床面由沙纹和沙垄向动平床过渡,宏观上多呈急流;并根据薄层水流阻力组成特点,推导出沙黄土坡面薄层水流阻力计算公式。验证结果表明,该式误差较小,可为坡面侵蚀预报模型的构建提供参考。  相似文献   

6.
通过概化水槽试验对水流泥沙从内陆河进入浅水湖泊后的三角洲堆积体形成发展过程进行研究。试验结果表明,在平面形态上,三角洲堆积体的形成发展过程可分3个阶段:第一阶段,水流泥沙在初期依次按小沙波体、带状沙波体、扇形三角洲堆积体和舌状三角洲堆积体形态形成发展,堆积体表面无明显主河槽且两侧区域无串沟;第二阶段,水流泥沙沿堆积体表面河槽在左侧区域和右侧区域之间交替推进;第三阶段,水流泥沙沿新河槽在摆动中同步推进。在纵向推进中,第一阶段初始较大,受横向展宽影响逐渐减弱;第二阶段以相对稳定的速率交替推进;第三阶段呈减弱趋势,最终保持同步推进速率。在垂向上,堆积体以稳定的速率淤积抬高发展;在横向上,水流泥沙在河槽主流摆动中不断横向输移泥沙。  相似文献   

7.
为研究径流式低坝影响下的水流流动与泥沙淤积特性,开展水槽试验,基于图像测量技术,获取并解析坝附近区域流场信息及典型淤积形态。结果表明:坝前附近流段纵向流速在垂线上出现衰减区,减幅随水流强度增大而减小;坝顶断面纵向和垂向流速沿垂线的分布均呈现显著的分区特性,分区界限几乎不受水流强度的影响;随坝顶水深增加,坝下游漩涡涡心向下游及河底移动,面积和强度皆增大;坝上游淤积形态特性对水流强度的变化非常敏感,在较低强度来流下,呈接近坝体的稳定曲面斜坡,而在高强度来流下,不形成稳定淤积体;坝下游形成动态稳定的淤积斜坡,纵剖表面线呈抛物线规律,随来流强度变异程度小。  相似文献   

8.
生产堤溃口展宽过程的概化模型试验研究   总被引:2,自引:0,他引:2       下载免费PDF全文
为研究生产堤溃口横向展宽过程的发展规律,以黄河下游生产堤土体为材料,开展概化模型试验,分析溃口处水深、流速、流量以及溃口宽度的变化。试验结果显示,溃口横向展宽的机理主要表现为水流冲刷堤身下层土体伴随上层悬臂土体发生绕轴崩塌;随着溃口展宽,堤前水深持续下降但下降速率逐渐减小,溃口流速呈先增大后减小的趋势,流速峰值约为1.1 m/s;随着主槽流量增加,溃口宽度发展至0.7 m时,溃口的水深、泄流流量、流速、展宽速率均有所增加。基于对溃口展宽的影响因素分析,提出溃口横向展宽速率的计算关系式,计算溃口展宽过程与实测值符合较好。研究结果不仅有助于生产堤展宽机理及发展规律的研究,还可为数学模型的建立与验证提供参考资料。  相似文献   

9.
为研究生产堤溃口横向展宽过程的发展规律,以黄河下游生产堤土体为材料,开展概化模型试验,分析溃口处水深、流速、流量以及溃口宽度的变化。试验结果显示,溃口横向展宽的机理主要表现为水流冲刷堤身下层土体伴随上层悬臂土体发生绕轴崩塌;随着溃口展宽,堤前水深持续下降但下降速率逐渐减小,溃口流速呈先增大后减小的趋势,流速峰值约为1.1 m/s;随着主槽流量增加,溃口宽度发展至0.7 m时,溃口的水深、泄流流量、流速、展宽速率均有所增加。基于对溃口展宽的影响因素分析,提出溃口横向展宽速率的计算关系式,计算溃口展宽过程与实测值符合较好。研究结果不仅有助于生产堤展宽机理及发展规律的研究,还可为数学模型的建立与验证提供参考资料。  相似文献   

10.
滹沱河地区地下水适宜水位研究   总被引:2,自引:0,他引:2       下载免费PDF全文
滹沱河流域地下水长期无节制开采造成部分浅层含水层处于疏干或半疏干状态,在分析地下开采现状基础上,根据区内垃圾填埋场和重要构筑物分布等情况,采用综合评价方法确定地下水适宜水位上、下限划定的原则,最终给出了基于环境、工程等多限制条件下的地下水适宜水位,采用mapgis网格剖分和叠加技术对滹沱河流域地下水流场进行处理,计算出滹沱河地区地下水可调控库容空间为91.48 × 108m3.为石家庄地区南水北调实施前后地下水调控方案、地下水可持续开发利用提供理论依据.  相似文献   

11.
采用粒子图像测速和平面激光诱导荧光技术对波浪环境中倾斜射流的运动和稀释特性进行了实验研究,对比分析了排放角度对射流瞬时运动形态、时均速度场和时均浓度场的影响。实验结果表明排放角度的变化对波浪环境中射流的运动形态、速度分布和混合范围等均有显著影响。当射流顺波浪方向运动时,射流主体段速度剖面呈双峰分布,达到初始浓度20%、30%、40%和50%的混合范围随排放角度增加而先增大后减小;当射流逆波浪方向运动时,射流速度剖面双峰分布不明显,相应的混合范围随排放角度增加而减小。在波浪牵引和射流卷吸的共同作用下,逆向射流的稀释效果总体上优于与垂线方向相同夹角的顺向射流。  相似文献   

12.
The turbulent flow structure, suspended sediment dynamics and deposits of experimental sustained turbidity currents exiting a channel across a break in slope into a wide tank are documented. The data shed light on the flow evolution and deposit geometry of analogous natural channel‐fed submarine fans. Flows generated in a 0·3 m wide, sloping (0°, 6°, 9° or 20°) channel crossed an angular slope break and spread onto a horizontal tank floor. Flow development comprised: (i) channelized phase (unsteady channel flow developing into steady channel flow); (ii) initial lateral expansion phase (unsteady‐spreading wall jet phase); (iii) constant lateral expansion phase (steady‐spreading wall jet phase); and (iv) rapid waning phase. Phases (i) and (iv) are similar to laterally constrained turbidity currents, but phases (ii) and (iii) are considerably different from such two‐dimensional currents. Steeper channel slopes produced greater flow velocities and turbulence intensities, but these effects diminished markedly with distance from the channel mouth. Flow velocity vectors in the tank had similar patterns for all channel slopes, with a central core of faster velocity and narrow vector dispersion and slower flow with larger dispersion at the jet margins. Suspended sediment concentrations were higher within flow heads and dense basal layers in flow bodies. Time‐averaged acoustic backscatter data showed vertical concentration gradients, confirmed by siphon samples. The deposits comprised a thick central ridge, of similar order width to the channel mouth, with abrupt margins and a surrounding, very thin, fan‐like sheet. The ridge was coarser grained and better sorted than the original sediment, with grain‐size fining downstream, particularly over the fan‐like sheet. The formation of a central ridge suggests that, in the tank, vertical turbulent momentum exchange is more significant for sediment dynamics than spanwise momentum exchange due to lateral expansion. The streamwise elongate geometry of the ridge contrasts with conventional fan‐like geometry found with surge‐type turbidity flows, a result that has widespread stratigraphic and economic implications.  相似文献   

13.
Spatial gradients in the flow over an estuarine channel   总被引:3,自引:0,他引:3  
Acoustic Doppler current profiles were measured for a twelve-hour period on February 21, 1997 across Thimble Shoal channel, lower Chesapeake Bay, for the purpose of determining bathymetrically-induced spatial gradients in the flow and their implications for the lateral momentum balance in estuaries. A least-squares fit to semidiurnal and quarter-diurnal harmonics was used to separate the tidal and subtidal contributions to the observed flow. The period of observation was characterized by onshore winds and subtidal inflow everywhere along the transect sampled but strongest in the channel. Spatial gradients in both the tidal and subtidal horizontal flows showed that the greatest lateral shears and convergences were found where the bathymetric changes were sharpest, i.e., on the shoulders of the channel. The ratio of the quarter-diurnal to the semidiurnal tidal amplitudes was greatest over the channel shoulders, for both the along- and across-estuary flow components, and indicated the importance of non-linear effects there. The nonlinear term caused by across-estuary divergence was larger than the Coriolis term over the channel shoulders. The nonlinear contribution was comparable to the Coriolis acceleration in the subtidal and tidal lateral momentum balances. For the tidal balance, the local accelerations were also as important as the Coriolis accelerations. Equivalent results in the momentum balances were obtained with another data set of October 1993. Contrary to the customary assumption, the across-estuary momentum balance in this area was ageostrophic.  相似文献   

14.
汶川地震后,大量松散固体物源堆积在沟道中,使沟道泥石流发生的概率激增。准确的计算泥石流沟道物源的动储量一直是泥石流物源统计的难点。文章以七盘沟下游主沟段沟道物源为研究对象,在实地勘查、资料收集的基础上,以室内模型试验为研究手段,引入分形理论将复杂的土体粒度成分用分维值定量描述,研究不同沟道堆积体在不同降雨作用下的侵蚀规律,建立以降雨强度和分维度为双影响因子的动储量评价模型。研究表明:粗粒土不易起动,但在充足的水动力条件下,侵蚀作用会成倍放大;上细下粗土发生泥石流时侵蚀变化和总的侵蚀规模较小,这种粒序分布形式有益于沟道的稳定;上粗下细土与粗粒土的侵蚀现象类似,但发生大规模泥石流的降雨阈值低于粗粒土;沟道物源中,侵蚀作用效应的排序为:溯源侵蚀>下切侵蚀>侧缘侵蚀>潜蚀;文章所拟合的公式适用于宽缓型沟道泥石流,对于窄陡型沟道泥石流存在一定的局限性。  相似文献   

15.
砂体类型与分布特征的差异性造就了油气储层发育的非均质性,通过岩心垂向序列特征明确了沙溪庙组砂体成因类型,并综合测井、地震资料刻画了不同类型砂体的空间分布。沙溪庙组浅水三角洲平原发育垂积型主河道、侧积/填积型次河道砂体以及溢岸砂体,前缘发育侧积型近端水下分流河道、填积型远端水下分流河道、进积型河口坝砂体以及席状砂体;平原主河道砂体厚度多大于10 m,宽600~1 800 m,通过同位垂向切叠与侧向等高程切叠而形成毯状连片砂体,次河道砂体多位于主河道侧缘,厚度平均7.5 m,物性较差,并常被主河道切割而零星分布;内前缘近端水下分流河道砂体厚4~8 m,宽500~1 200 m,多错位切叠或拼接接触,呈带状;远端水下分流河道发育于三角洲外前缘,单砂体厚2.5~6 m,宽200~700 m,平面呈鞋带状,砂体孤立;前缘河口坝砂体分布较少,垂向上常被河道切叠;平原相带两类河道砂体的物性差异造成了储层内部的非均质性,而三角洲前缘储层的非均质性更多在于不同类型砂体的迷宫状展布上。  相似文献   

16.
Three‐dimensional seismic data were used to infer how bottom currents control unidirectional channel migration. Bottom currents flowing towards the steep bank would deflect the upper part of sediment gravity flows at an orientation of 1° to 11° to the steep bank, yielding a helical flow circulation consisting of a faster near‐surface flow towards the steep bank and a slower basal return flow towards the gentle bank. This helical flow model is evidenced by the occurrence of bigger, muddier (suggested by low‐amplitude seismic reflections) lateral accretion deposits and gentle channel wall with downlap terminations on the gentle bank and by smaller, sandier (indicated by high‐amplitude seismic reflectors) channel fills and steep channel walls with truncation terminations on the steep bank. This helical flow circulation promotes asymmetrical depositional patterns with dipping accretion sets restricted to the gentle bank, which restricts the development of sinuosity and yields unidirectional channel migration. These results aid in obtaining a complete picture of flow processes and sedimentation in submarine channels.  相似文献   

17.
川东断褶带背斜高陡,沿断褶带泉眼众多,流量丰沛。受构造裂隙和河流切割的双重作用,在河流切割低点多可见温泉出露。仙女山温泉位于川东断褶带铜锣峡构造最北端三叠系下统须家河组砂岩地层中的浅表裂隙当中,泉眼温度38~40℃,泉口有青绿色泉华沉淀。用地温梯度法估算出地下水循环深度略大于1000m。对比当地地层为嘉陵江组的深层地下水,结合区域地质构造,认为仙女山温泉地下水沿着高渗透率岩溶裂隙岩层上升成泉。  相似文献   

18.
三峡水库蓄水后沙量骤减使得荆江河段河床剧烈冲刷调整,下荆江急弯段“凸冲凹淤”,部分弯道凹岸侧淤积形成水下潜洲。这种不同于弯曲河道一般性演变规律的异常现象势必给下荆江的行洪、航运及江湖关系变化等带来新的影响,其内在成因急需揭示。基于原型观测资料分析,通过研究滩槽冲淤量及分布、滩体及河道形态特征等,全面揭示了近期下荆江急弯段“凸冲凹淤”的演变特征及河道形态响应。结果表明,流量年内过程重分配、来沙量及组成突变是下荆江急弯段“凸冲凹淤”的决定性因素。  相似文献   

19.
Fluvial ribbon sandstone bodies are ubiquitous in the Ebro Basin in North‐eastern Spain; their internal organization and the mechanics of deposition are as yet insufficiently known. A quarrying operation in an Oligocene fluvial ribbon sandstone body in the southern Ebro Basin allowed for a three‐dimensional reconstruction of the sedimentary architecture of the deposit. The sandstone is largely a medium‐grained to coarse‐grained, moderately sorted lithic arenite. In cross‐section, the sandstone body is 7 m thick, occupies a 5 m deep incision and wedges out laterally, forming a ‘wing’ that intercalates with horizontal floodplain deposits in the overbank region. Three architectural units were distinguished. The lowest and highest units (Units A and C) mostly consist of medium‐grained to coarse‐grained sandstone with medium‐scale trough cross‐bedding and large‐scale inclined stratasets. Each of Units A and C comprises a fining‐up stratal sequence reflecting deposition during one flood event. The middle unit (Unit B) consists of thinly bedded, fine‐grained sandstone/mudstone couplets and represents a time period when the channel was occupied by low‐discharge flows. The adjoining ‘wing’ consists of fine‐grained sandstone beds, with mudstone interlayers, correlative to strata in Units A and C in the main body of the ribbon sandstone. In plan view, the ribbon sandstone comprises an upstream bend and a downstream straight reach. In the upstream bend, large‐scale inclined stratasets up to 3 m in thickness represent four bank‐attached lateral channel bars, two in each of Units A and C. The lateral bars migrated downflow and did not develop into point bars. In the straight downstream reach, a tabular cross‐set in Unit A represents a mid‐channel transverse bar. In Unit C, a very coarse‐grained, unstratified interval is interpreted as deposited in a riffle zone, and gives way downstream to a large mid‐channel bar. The relatively simple architecture of these bars suggests that they developed as unit bars. Channel margin‐derived slump blocks cover the upper bar. The youngest deposit is fine‐grained sandstone and mudstone that accumulated immediately before avulsion and channel abandonment. Deposition of the studied sandstone body reflects transport‐limited sediment discharges, possibly attaining transient hyperconcentrated conditions.  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号