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1.
坡面侵蚀过程中细沟水流动力学参数估算探讨   总被引:17,自引:7,他引:10  
张科利  张竹梅 《地理科学》2000,20(4):326-330
细沟侵蚀是坡面侵蚀的主要方式 ,在坡面侵蚀产沙及其输移过程中占有重要的地位和作用。通过放水冲刷试验 ,测定并研究了坡面细沟中径流的水力要素特征及其相互关系。试验中坡度采用 6° ,10°,12°和 15°共 4级 ,径流流量变化控制在 40~ 5 0 0ml/s之间。结果表明 ,黄土陡坡上细沟径流的流速、过水断面宽度 ,以及径流深都能表示成径流量和坡度的函数。在确定坡面细沟流各水力要素间关系指数的基础上 ,探讨了用径流量和坡度因子估算细沟径流水力参数的方法。经用实测资料验证 ,在实验土壤及流量、坡度条件下 ,用文中提出的方法估算的细沟径流深具有一定的精度。  相似文献   

2.
细沟侵蚀影响因素和临界条件研究进展   总被引:16,自引:1,他引:15  
细沟侵蚀是坡耕地时常发生的一种侵蚀形式.细沟侵蚀对坡面土壤侵蚀产沙有重要贡献,而且是坡面侵蚀由面蚀向沟蚀发展的过渡.本文分析了细沟侵蚀影响因素和临界条件研究取得的进展和存在的不足.影响细沟侵蚀的主要因素有降雨径流、土壤、地形、土壤表面特征和土地管理等因素,其中,前4者有多种指标来表征其效应,而土壤表面特征的影响还处于定性研究阶段.坡面需要达到特定的临界条件才可能发育细沟,细沟发生临界条件的研究主要从临界径流条件、临界土壤条件和临界地形条件等角度出发,各临界条件并非定值,而是关乎其他因素的综合指标.最后,本文对今后细沟侵蚀影响因素和临界条件研究可能的研究内容和方向进行了展望.  相似文献   

3.
黄土坡面发育平稳的细沟流水动力学特性   总被引:3,自引:0,他引:3  
由于天然降雨存在间歇性,常会出现前期降雨已经发育成型的细沟又经历了二次降雨的情况,但目前对这一条件下细沟流水动力学特性的研究还很少。本文采用室内人工模拟降雨的方法,通过间隔24 h两场不同雨强的降雨,研究黄土坡面经过第一场降雨形成比较稳定的细沟之后,在第二场较小雨强降雨过程中,细沟发育平稳时的流水动力学特性。研究结果表明:①细沟流速大小受坡长影响并不显著,相同坡度下不同坡长的细沟流平均流速差别不大;细沟流速受细沟形态影响较大,25°坡面比20°坡面细沟密度大,流速相对较小;②剪切力大小受流量和坡度共同作用;雷诺数与水流剪切力呈显著正相关关系,弗洛德数与水流剪切力则呈显著负相关关系;③随着距坡顶距离的增加,阻力系数呈增大趋势;第二次降雨强度相同,坡度大的坡面上阻力系数也较大,可见阻力系数与径流量和坡度的关系十分紧密;阻力系数与雷诺数之间呈显著正相关关系,雷诺数的增加意味着平均流速增大,水流强度增大导致细沟形态更为复杂,水流受到的阻力增大;虽然雷诺数增加同时也意味着水流深度增大,但从试验结果可见,陡坡条件下阻力系数受流速的影响较大。  相似文献   

4.
黄土坡面细沟侵蚀过程的REE示踪   总被引:6,自引:0,他引:6  
利用REE示踪技术探讨了坡面细沟侵蚀的发育过程。试验结果表明:在细沟发育过程中,各坡段细沟侵蚀量呈动态变化趋势;细沟发育过程可以分为起始、发展、稳定3个阶段,在不同阶段,侵蚀方式、发育特征迥异。总的看来,在坡顶部、上部、中部、下部4个坡段上,细沟发育过程中,坡面下部的侵蚀量较大。但随着放水流量的增加,坡面上部侵蚀量的比重增加。由于溯源侵蚀,最下部坡段的相对侵蚀量从92%减少到37%,呈显著下降趋势,其它3个坡段则分别从4.7%、0.25%、2.14%增加到29%、17%和23%。试验结果还表明,REE示踪法不仅可定量测定不同坡位的侵蚀量,还可以揭示冲刷过程中各坡位相对侵蚀量的变化趋势。  相似文献   

5.
细沟侵蚀是黄土高原坡面极其重要的侵蚀过程之一,汇沙对细沟侵蚀强弱具有重要影响,阐明汇沙对细沟侵蚀的影响与贡献,可以揭示坡面细沟侵蚀过程机理,并为治理坡面水土流失提供科学依据.采用定流量人工放水的组合小区模拟降雨的方法,对不同降雨强度与不同坡度下黄土坡面汇沙对细沟侵蚀的影响及贡献进行了研究,结果表明:细沟上方汇沙、细沟间汇沙、细沟径流剪切力对细沟侵蚀的影响,在不同降雨强度、不同坡度、不同降雨强度及坡度下皆可用三元对数方程描述;细沟上方汇沙、细沟间汇沙、细沟径流剪切力,以及细沟上方汇沙与细沟间汇沙及细沟径流剪切力三者的交互作用对细沟侵蚀的贡献率,在不同降雨强度下分别为13.18%、4.98%、61.2%及8.26%,在不同坡度下分别为4.73%、1.19%、73.65%及5.4%,在不同降雨强度及坡度下分别为10.84%、0.44%、65.22%及6.97%.  相似文献   

6.
紫色土坡耕地细沟发育的形态演变   总被引:5,自引:0,他引:5  
研究细沟发育的形态演变规律是认识细沟发生机理的前提,本研究通过人工降雨与微地貌扫描相结合的方法,调查了紫色土坡耕地细沟发生过程的形态演变特征.采用三维激光扫描仪扫描不同降雨时段坡面,生成高精度坡面DEM图像,统计各时段不同坡段等高线偏离度,量算坡面凹陷区的表面积、周长、直径以及沟头下切深度;结果表明,等高线偏离度越大细沟发育越完全,有细沟发生坡面等高线偏离度是无细沟坡面的1倍以上;凹陷区的表面积、周长、直径相对于单位降雨量的扩展速率均在细沟贯穿时段出现最大值;跌坑位置与坡面水平起伏关系不明显,统计的3条沟头分别发育于水平方向起伏的最高点、中间点和低点;跌坑下切深度及其单位降雨量的扩展速率在跌坑贯穿形成细沟时段出现最大值,之后逐渐降低,说明跌坑的形成是细沟造床的关键.  相似文献   

7.
黄土坡面细沟侵蚀发生的临界条件   总被引:6,自引:0,他引:6  
通过玻璃水槽试验和径流冲刷试验,研究了坡面径流的流速分布和坡面细沟侵蚀发生的临界条件。研究表明:径流在坡面上并非是以均匀流形式运动,而是以滚波的形式运动的,同时本文运用能量守恒原理分析了坡面土壤侵蚀率(Dr)与径流能耗(△E)之间的关系,建立了给定土壤条件下坡面土壤侵蚀率估算模型:Dr=0.0026(In△E-2)。结果表明坡面土壤侵蚀的发生具有一定的临界能量条件,当径流能耗大于7.38(J)时坡面开始有细沟侵蚀发生。  相似文献   

8.
山前洪积扇坡面细沟侵蚀跌坑特征的试验研究   总被引:1,自引:0,他引:1  
跌坑的出现是坡面侵蚀过程中的重要现象,标志着细沟侵蚀正在发育,跌坑的贯穿标志着细沟的形成。采用土槽冲刷模型试验,选取流量、坡度、冲刷时间和坡面形态作为影响跌坑发育的因子结合正交试验调查了不同试验条件下跌坑发育特征及影响因素。结果表明:影响跌坑发育的因素主次为冲刷时间、流量、坡面形态、坡度;跌坑沿坡面连续分布,深度具有波动性,沿坡向下呈现先增大后减小的趋势,最大值一般发育在坡面中部;根据跌坑的发育特征将坡面细沟侵蚀划分为片蚀、细沟雏形、细沟发育和细沟调整四个阶段;坡面细沟侵蚀跌坑深宽积与土壤侵蚀量具有较显著线性关系。研究结果对输油管线水毁及水土流失防治具有一定的参考价值。  相似文献   

9.
为了明确土壤性质对坡面侵蚀方式作用机制的影响,本研究采用室内模拟降雨试验,选取黄土高原典型暴雨强度,在不同坡度条件下,对两种黄土的坡面侵蚀方式、形态特征、产流产沙过程及其相应径流流速的变化规律进行了研究。结果表明,绥德土径流量明显高于安塞土,10º、15º和20º时前者的平均径流量分别比后者高出51.1%、55.5%和63.0%,且前者更易形成细沟,使得其平均含沙量和平均产沙率分别是后者的1.14~3.59倍和2.50~8.48倍。在片蚀阶段,与绥德土相比,安塞土的含沙量较高,后者的平均含沙量是前者的1.24~1.73倍,但两种土壤的含沙量和产沙规律相同,均表现为先快速增加到最大值,然后逐渐降低到相对稳定状态,该现象证明片蚀的初期阶段主要受控于径流输沙能力,后期受径流的剥蚀能力控制。在细沟侵蚀阶段,绥德土细沟发育以沟头溯源侵蚀为主,崩塌作用频繁,该侵蚀形式不仅控制着细沟形态的总体特征,也导致含沙量和产沙率均急剧增加,该阶段平均含沙量是相应片蚀阶段的3.25~4.34倍。细沟沟口下方坡面存在明显的泥沙沉积带,表明细沟集中水流的搬运能力远高于坡面漫流,细沟侵蚀主要受径流输沙能力控制。两种土壤的径流流速均表现为坡面下部高于坡面上部,径流稳定后高于径流稳定前,总体来看,绥德土和安塞土上坡和径流稳定后的平均流速分别是下坡和径流稳定前的1.4倍、1.25倍和1.75倍、1.29倍,此外细沟侵蚀或侵蚀强度与微地貌形态之间的互馈作用对径流流速也有较大影响。  相似文献   

10.
细沟侵蚀中泥沙含量及其粘粒流失量的试验   总被引:1,自引:0,他引:1  
通过室内模拟试验,对细沟侵蚀中不同坡度和不同流量条件下一定坡长的泥沙含量及其粘粒含量进行了测定。分析试验结果表明,含沙量随着坡度增加而增加,而流量影响极小;随沟长的延伸,由于径流速度趋于稳定,含沙量增加幅度减少。粘粒流失量分布是坡度、流量、细沟发育过程、流速的垂直分布等因素共同作用的结果;粘粒迁移伴随着土壤剥蚀和粘粒沉降,使得不同流量的粘粒流失量相近,粘粒流失量沿细沟沟长呈波状分布。  相似文献   

11.
根据水力学原理和古乡沟泥石流实测资料,结合试验数据,经计算分析,提出了泥石流流速。这个公式为整治古乡沟泥石流和川藏公路沿线泥石流沟提供了参数。  相似文献   

12.
On the basis of the regularities of channel flow dynamics and the propagation of the emptying wave, it is shown that the value of the mean flow velocity above the field of giant ripples necessary for the ridge movement cannot be attained under given hydraulic and geomorphological conditions. Presented are the erosional dissection mechanisms for the surface of fluvioglacial deposits which contribute to the subparallel occurrence of ephemeral streams.  相似文献   

13.
排导结构中泥石流的流动形态   总被引:2,自引:1,他引:2  
根据能量守恒原理,推导出泥石流在排导槽中的能量方程。根据此方程,可求出泥石流在排导槽中任意横断面的平均流速。对方程涉及的各参数进行了深入的讨论,首次引入泥石流对一般水体的修正系数K。并把该成果应用于平川泥石流的治理。  相似文献   

14.
《Geomorphology》2002,42(1-2):153-165
Turbulent pressure and velocity fluctuations associated with hydraulic jump air entrainment likely play an important role in local flow dynamics and morphologic changes of steep bedrock and alluvial rivers. Previous engineering research indicates that hydraulic jump air entrainment and energy dissipation locally intensify erosion of both bedrock and alluvial elements, enhance hydraulic quarrying, suppress cavitation, and decrease the friction factor of a flow. Despite studies in artificial settings, air content in natural hydraulic jumps remains largely unquantified. In this study, Time Domain Reflectometry (TDR), a method commonly used to determine the volumetric water content of porous media for the last two decades, was evaluated in the laboratory and then adapted to measure air contents of natural hydraulic jumps. Laboratory tests were conducted to determine the influence of turbulence, temperature, and sampling volume on the TDR signal over an air content range of 0–100%. Based on the results of the laboratory tests, an empirical calibration was developed that converts the TDR signal into air content. Local air contents were then measured in hydraulic jumps occurring along a mixed alluvial- and bedrock-dominated 8.4-km section of the South Fork American River. Two small jumps had a mean air content of 19% and 23%, a coefficient of variation (CV) of 27% and 28%, and a root-mean-square (RMS) of 19% and 24%, respectively. A large jump had a mean air content of 42%, a CV of 26%, and a RMS of 44%. TDR provides fast, accurate, repeatable, and nondestructive in situ measurements at one-tenth the cost of traditional methods and is far more robust for field applications than traditional lab instruments. Future studies can now expand upon the hydrogeomorphic and ecological significance of jump aeration.  相似文献   

15.
This work was designed to analyze the hydrogeological behavior of an alluvial aquifer in the River Mojotoro basin site in the Province of Salta, Argentina. The study area presents coarse-grained sediments with high infiltration capacity. The hydraulic conductivity field is affected by the physical heterogeneity of the medium and a geostatistical method, kriging, was used to construct this field from local measurements. The groundwater flow velocity field is computed using a hybrid mixed finite-element method and small variations in the flow directions were determined. Given the existence of a point source of chloride in the region under study, the spatial distribution of the generated plume in the saturated zone is analyzed. The advection-diffusion equation describing the transport of chloride in vertical and horizontal cross-sectional planes of the aquifer is discretized employing a method of characteristics combined with a mixed finite-element procedure, which provides an efficient method to eliminate spurious numerical oscillations and handle the convective term in the equation. The migration of chloride shows patterns, which are affected by the litologic heterogeneities of the aquifer and the regional groundwater flow.  相似文献   

16.
An expert-based approach was used to identify 10 morphological unit types within a reach of the gravel bed, regulated Yuba River, California, that is heavily utilized by spawning Chinook salmon (Oncorhynchus tshawytscha). Analysis of these units was carried out using two-dimensional hydrodynamic modeling, field-based geomorphic assessment, and detailed spawning surveying. Differently classified morphological units tended to exhibit discrete hydraulic signatures. In most cases, the Froude number adequately differentiated morphological units, but joint depth–velocity distributions proved the most effective hydraulic classification approach. Spawning activity was statistically differentiated at the mesoscale of the morphological unit. Salmon preferred lateral bar, riffle, and riffle entrance units. These units had moderately high velocity (unit median > 0.45 m s− 1) and low depth (unit median < 0.6 m), but each exhibited a unique joint depth–velocity distribution. A large proportion of redds (79%) were associated with conditions of convective flow acceleration at riffle and riffle entrance locations. In addition to reflecting microhabitat requirements of fish, it was proposed that the hydraulic segregation of preferred from avoided or tolerated morphological units was linked to the mutual association of specific hydraulic conditions with suitable caliber sediment that promotes the provision and maintenance of spawning habitat.  相似文献   

17.
基于流速衰减特征的泥石流冲出距离预测方法   总被引:2,自引:0,他引:2  
铁永波 《山地学报》2012,(2):216-221
泥石流冲出距离的确定是泥石流灾害评价及防治中的关键环节。基于泥石流在堆积区流速的变化特征,提出了泥石流流速"衰减系数"的概念。通过对泥石流流速衰减系数的定义和计算公式的推导,提出了一种基于泥石流流速衰减系数来确定泥石流冲出距离的新方法,并以四川省泸定县干沟泥石流为实例进行计算和验证。研究结果表明:当干沟泥石流在堆积区的流速大于初始(沟口)流速的15%时,流速的衰减程度极为显著;而当堆积区流速小于初始速度的15%时,流速的衰减极为缓慢。研究结果对泥石流灾害的危险性评价及防灾减灾具有一定的理论和实践意义。  相似文献   

18.
Desert springs are biodiversity hotspots that are easily altered by anthropogenic activities. Little is known about the effects of human disturbance on desert springs, and scarce information exists describing the environmental effects of incrementally increasing disturbance. The objective of this research was to quantify the influence of incremental reductions in discharge on the physical and thermal characteristics of a desert springbrook. In this study, the physical characteristics of a desert springbrook include hydraulic attributes that influence habitat availability, such as wetted area, flow velocity, and water depth. Thermal characteristics refer to water temperature and temperature gradients. The research objective was accomplished through a combination of field experiments at Travertine Spring, Death Valley National Park, USA, and hydraulic/temperature modeling to: (1) quantify changes in physical characteristics of the springbrook channel and aquatic environment; (2) investigate the effects of reduced spring discharge on seasonal spatial temperature patterns; (3) delineate tipping points that exhibit a non-linear response to decreased flow. We found that the physical environment changed with small decreases in discharge. Thermal tipping points were also exhibited due to decreases in discharge, but the magnitude of these responses was a function of distance from the spring source, seasonality, and temperature.  相似文献   

19.
坡面径流冲刷及泥沙输移特征的试验研究   总被引:9,自引:1,他引:8  
通过室内放水冲刷试验,对坡面细沟侵蚀发生的临界条件、细沟发展过程中的侵蚀产沙特征、以及影响细沟侵蚀产沙的因素进行了分析研究,得出了试验土条件下产生细沟的临界流量与坡面坡度的关系式.在分析产沙变化的基础上,探讨了细沟侵蚀量随径流量和坡面倾斜度的变化规律.  相似文献   

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