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1.
模拟降雨下坡度对含砾石土壤径流和产沙过程的影响   总被引:2,自引:0,他引:2  
对含砾石土壤径流和产沙过程的研究不仅有助于深入理解该类型土壤中的水土过程,也可以为基于过程的土壤侵蚀模型模拟提供重要的土壤参数.通过室内模拟降雨试验,分析了3个坡度下含砾石土壤中的径流和产沙过程,研究结果表明,不同砾石含量的土壤在不同坡度下的产流在0~20 min内有明显增加的趋势,之后径流趋于平稳.随着砾石含量的增加,坡度对径流的影响减弱.坡面产沙高峰期出现在0~20 min内,且高峰期产沙量占总产沙量比例相对较大;当坡度为15°时,砾石含量(质量含量百分比)为20%,30%,40%的土壤在30 min后产沙量又增加,与其他坡度相比,土壤总产沙量也明显增加.实验中坡度是决定土壤产沙量的主要因素.  相似文献   

2.
含砾石土壤坡面流速及产流产沙过程研究   总被引:10,自引:0,他引:10  
 在模拟降雨条件下对5种土壤(砾石质量分数分别为0、10%、20%、30%、40%)的坡面流速及产流产沙过程进行研究,以期深入了解含砾石土壤的水土流失过程。结果表明:含砾石土壤的坡面流速和径流量大于不含砾石的土壤;在降雨初期0~10min内,含砾石土壤的产沙量随时间呈显著增加趋势,峰值出现在10 min左右,随后产沙量逐渐降低;降雨后期30~60min内,含砾石土壤的产沙量又呈增加趋势,尤其是砾石含量为30%和40%的土壤产沙量显著增加,且随时间有一定波动。试验中,5种土壤的总产沙量与砾石含量正相关,径流含沙率与产沙量则呈显著线性正相关。  相似文献   

3.
钟韵  费良军  朱士江  何军  康守旋 《土壤》2022,54(3):602-609
水中带沙是浑水灌溉较清水灌溉的本质区别,为揭示浑水含沙率对一维垂直入渗特性及致密层形成特性的影响,通过室内一维垂直入渗试验,以清水入渗为对照,设置了4个浑水含沙率水平(3%、6%、9%、12%),研究了浑水含沙率对一维垂直入渗能力、湿润锋运移距离、致密层土壤颗粒组成及落淤层厚度等的影响,分别提出了以浑水含沙率和入渗历时为自变量的累积入渗量模型和湿润锋运移距离模型,建立了不同含沙率的浑水一维垂直入渗落淤层厚度与入渗历时之间的关系。结果表明:浑水累积入渗量、入渗率和湿润锋运移距离均随含沙率的增加而减小,而落淤层厚度随浑水含沙率的增加而增大;入渗初期(0~20 min)的落淤层厚度较小,入渗中期(20~130 min)的落淤层厚度增加较快,而其厚度增加速率逐渐变小,入渗后期的落淤层厚度稳定增加;随着浑水含沙率的增大,滞留现象越明显,落淤层细颗粒相对含量越少,粗颗粒相对含量越多;滞留层细颗粒相对含量随着含沙率的增加而增多,其物理性黏粒含量显著高于原土壤,特别是在入渗深度为0~1 cm处。  相似文献   

4.
土壤前期含水量对弃渣坡面侵蚀特性影响的模拟试验   总被引:1,自引:0,他引:1  
利用室内人工模拟降雨试验,研究弃渣前期含水量在不同降雨强度条件下对土壤坡面入渗、产流和产沙特性的影响.结果表明:弃渣坡面入渗率随时间呈幂函数变化.在雨强较小(0.64 mm/min)的情况下,含沙率在产流初期会出现峰值,之后随时间递减,前期含水量越高,峰值出现的越早,土壤前期含水量对土壤侵蚀量的影响符合幂函数变化规律.在1.05 mm/min降雨强度条件下,含沙率变化呈波动性增长趋势,无明显峰值.土壤前期含水量对土壤侵蚀量影响呈二次多项式关系,计算得出土壤流失量最少的最优前期含水量为9.65%.  相似文献   

5.
利用人工模拟降雨试验,研究了0°~20°坡度下的耕作土壤施加0~10%的粉煤灰后,对土壤结构和入渗、产流、产沙的影响。研究结果表明:随农田耕作层中粉煤灰含量的增加,土壤入渗速率明显加快,含10%粉煤灰土壤的入渗速率,较对照(土壤不加粉煤灰)提高了55.34%;施加粉煤灰降低了土壤容重,增加了土壤孔隙度,含10%粉煤灰的土壤,在10°坡时的容重较对照减小了17.42%,而孔隙度提高了9.84%;坡面产流量和土壤流失量降低,含10%粉煤灰的土壤,在20°坡时的产流量仅为对照的26.87%。因此,施加10%的粉煤灰,可有效改善土壤结构和蓄水减沙,具有较高的实用价值。  相似文献   

6.
为了研究黄土区降雨前期土壤含水量对不同土壤坡面降雨入渗、产流和产沙特性的影响,采用室内降雨模拟试验方法,探讨了前期土壤含水量从风干土状态至近饱和条件下塿土和砂黄土坡面降雨入渗、产流产沙的特征。研究结果表明:在雨强(80 mm/h)和坡度(10°)较大情况下,前期土壤含水量对塿土坡面产流时刻、入渗和产流过程影响不明显;砂黄土坡面产流时刻受前期土壤含水量影响显著,随着前期土壤含水量的增大先延长后缩短,其极差值达到28.91 min;前期土壤含水量在风干土~10%和15%~25%两段范围内,砂黄土坡面入渗产流规律差异十分显著。基于土壤水分累积入渗过程特征,塿土前期含水量可分成“三区”,砂黄土则可分成“两区”;利用前期土壤含水量与坡面土壤流失量的二次多项式关系,分别确定出塿土和砂黄土坡面土壤流失量最少的前期含水量值为11.25%和12.74%,为黄土区坡地水土管理提供理论依据。  相似文献   

7.
神府东胜矿区不同下垫面产流产沙试验研究   总被引:5,自引:1,他引:4  
针对神府东胜矿区煤田开采过程中所引发的严重新增水土流失问题,采用野外模拟降雨实验的研究方法,对神府东胜矿区不同下垫面降雨入渗、侵蚀产沙规律进行了初步研究.结果表明:在相同雨强条件下,不同类型下垫面对入渗速率的影响差异性较大,稳渗率大小顺序为扰动地面>原状地面>非硬化路面;在降雨过程中不同类型下垫面的径流量随时间增加而增大,其大小顺序为非硬化路面>扰动地面>原状地面;不同类型下垫面的侵蚀产沙高峰期均出现在降雨初期的0~20 min内,此后侵蚀产沙均下降并趋于稳定,并且不同类型下垫面间的侵蚀产沙量差别不大;非硬化路面的径流含沙量一直稳定在较低水平,而其它类型下垫面的径流含沙量降雨初期很大而后急剧下降,并逐渐接近于非硬化路面的径流含沙量.  相似文献   

8.
[目的]揭示北方土石山区坡面水土流失规律,为山区土壤侵蚀防治和生态建设提供科学依据。[方法]利用1988—1991年坡面径流小区观测数据,运用统计和相关分析等方法,对不同下垫面条件下坡面水土流失特征进行了分析,并探讨了坡面径流深度、土壤侵蚀模数、土壤入渗率与有效降雨量、平均降雨强度、降雨历时、降雨等级的关系。[结果](1)在5°08′~24°08′坡度范围内,坡面径流深度随坡度增加逐渐减小,土壤侵蚀模数和土壤入渗率随坡度增加逐渐增大;(2)在2.18~33.19 m坡长范围内,坡面径流深度随坡长增加逐渐减小,土壤侵蚀模数和土壤入渗率随坡长增加呈现先增后减的变化趋势,存在临界坡长;(3)随着植被覆盖度增加,坡面径流深度、土壤侵蚀模数迅速减小,土壤入渗率逐渐增加;裸地的坡面径流深度和土壤侵蚀模数显著高于30%植被覆盖度坡面,但植被覆盖度由30%增加到60%,90%时,坡面水土流失过程的影响差异并不明显,说明在水土流失治理中存在临界植被覆盖度;(4)坡面径流深度、土壤侵蚀模数主要受到有效降雨量和平均降雨强度影响,且均呈显著正相关;而土壤入渗率主要受到平均降雨强度和降雨历时影响,与平均降雨强度...  相似文献   

9.
北方风沙区砾石对堆积体坡面径流及侵蚀特征的影响   总被引:15,自引:7,他引:8  
为了研究砾石对工程堆积体降雨侵蚀规律的影响,采用室内人工模拟试验,以土质堆积体(砾石质量分数为0)为对照,研究了10%、20%和30%砾石质量分数堆积体边坡在模拟降雨条件下的径流水力特征、产沙过程及侵蚀动力机制。结果表明:1)产流0~6 min,砾石促进堆积体坡面细沟间径流流动;产流12~30 min后,砾石阻碍堆积体坡面细沟径流流动;2)含砾石堆积体坡面粗糙度增大,水流流态变缓,水流速度降低,且均以层流为主。较土质堆积体而言,30%砾石质量分数堆积体坡面阻力系数增大88.8%~288.4%,弗汝德数降低28.9%~41.8%,水流速度降低0~45.8%;3)径流含沙量随产流历时经历快速降低-平稳过渡-波动上升3个阶段,土质及10%砾石质量分数堆积体高含沙水流现象频发,且随雨强增大,重力坍塌次数增加,重力侵蚀程度增强。20%、30%砾石质量分数堆积体发生高含沙水流的几率约为0。相对土壤流失比与砾石质量分数呈极显著负指数函数关系;4)土壤剥蚀率与各侵蚀动力参数均可用简单线性函数关系描述,单位径流功率是描述风沙区土质和10%砾石质量分数工程堆积体侵蚀产沙的最优因子,径流功率是刻画20%、30%砾石质量分数工程堆积体土壤侵蚀参数更为合理的因子。结果可为全国范围工程堆积体土壤侵蚀模型的建立提供科学依据。  相似文献   

10.
前期土壤含水量对坡面产流产沙特性影响的模拟试验   总被引:15,自引:4,他引:11       下载免费PDF全文
为了研究黄土区降雨前期土壤含水量对不同土壤坡面降雨入渗、产流和产沙特性的影响,采用室内降雨模拟试验方法,探讨了前期土壤含水量从风干土状态至近饱和条件下填土和砂黄土坡面降雨入渗、产流产沙的特征.研究结果表明:在雨强(80mm/h)和坡度(10°)较大情况下,前期土壤含水量对塿士坡面产流时刻、入渗和产流过程影响不明显;砂黄土坡面产流时刻受前期土壤含水量影响显著,随着前期土壤含水量的增大先延长后缩短,其极差值达到28.91min:前期土壤含水量在风干土~10%和15%~25%两段范围内,砂黄土坡面入渗产流规律差异十分显著.基于土壤水分累积入渗过程特征,填土前期含水量可分成"三区",砂黄土则可分成"两区";利用前期土壤含水量与坡面土壤流失量的二次多项式关系,分别确定出壤土和砂黄土坡面土壤流失量最少的前期含水量值为11.25%和12.74%,为黄土区坡地水土管理提供理论依据.  相似文献   

11.
It is known that rock fragments on the surface of soils can enhance infiltration and protect the soil against rainfall erosion. However, the effect of rock fragments in natural forest soils is less well understood. In this article, we studied the influence of rock fragment cover on run‐off, infiltration and interrill soil erosion under simulated rainfall on natural bare soils in a Spanish dehesa (managed holm oak woodland). We studied 60 plots with different rock fragment cover ranging from 3% to 85% under three simulated rainfall intensities (50, 100 and 150 mm/h). Surface run‐off appeared later and sediment yield values were smaller in soils with greater rock fragment cover. Rock fragment cover also increased infiltration rates. The final infiltration rates were 54–98% at a rainfall intensity of 50 mm/h, 31–88% at 100 mm/h and 20–80% at 150 mm/h. The interrill soil loss rates were decreased by rock fragment cover and increased with rainfall intensity. The soil loss rate was always small (0.02–1 Mg ha/h) when rock fragment cover was 75% or more. Rock fragment cover was related to soil loss rate by an exponential function.  相似文献   

12.
Rock fragments are a key factor for determining erosion rates, particularly in arid and semiarid environments where vegetation cover is very low. However, the effect of rock fragments in non-cultivated bare soils is still not well understood. Currently, there is a need for quantitative information on the effects of rock fragments on hydrological soil processes, in order to improve soil erosion models. The main objective of the present research was to study the influence of rock fragment cover on run-off and interrill soil erosion under simulated rainfall in Mediterranean bare soils in south-western Spain. Thirty-six rainfall simulation experiments were carried out at an intensity of 26.8 mm h−1 over 60 min under three different classes of rock fragment cover (<50%, 50–60% and >60%). Ponding and run-off flow were delayed in soils with high rock fragment cover. In addition, sediment yield and soil erosion rates were higher in soils with a low rock fragment cover. The relationship between soil loss rate and rock fragment cover was described by an exponential function. After this first set of experiments, rock fragments were removed from sites with the highest cover (>60%) and the rainfall simulation experiments were repeated. The steady-state run-off rate and soil loss increased significantly, showing that run-off and soil erosion were partly conditioned by rock fragment cover. These results have significant implications for erosion modelling and soil conservation practices in areas with the same climate and soil characteristics.  相似文献   

13.
含岩屑紫色土水分扩散规律   总被引:1,自引:0,他引:1  
紫色土中存在的岩屑显著影响土壤水分扩散。以往研究主要集中在> 2 mm岩屑上而忽视了<2 mm岩屑的作用。因此,探讨>2 mm岩屑对紫色土水分扩散的影响基础上,明确<2 mm岩屑的作用对完善含岩屑紫色土水分扩散规律的研究具有重要的意义,从而为土壤水动力学模型的构建提供理论依据。以四川盆地紫色页岩发育的暗棕紫泥土和泥岩发育的红棕紫泥土为研究对象,设置3种岩屑粒径(0.25~2,2~5,5~10 mm)和4种岩屑含量(0,30%,50%,70%),利用水平土柱吸渗法测定含岩屑土壤湿润锋变化特征、水分扩散率D(θ)和土壤含水率θ,并拟合D(θ)、Boltzmann参数λ与θ之间的关系。结果表明:对于暗棕紫泥土,岩屑粒径为2~5 mm时,土壤湿润锋前进速率和D(θ)随岩屑含量增加呈先增加后降低再增加的趋势;岩屑粒径为0.25~2,5~10 mm时,土壤湿润锋前进速率和D(θ)随岩屑含量增加逐渐增加。对于红棕紫泥土,岩屑粒径为2~5,5~10 mm,随岩屑含量增加,70%岩屑含量的土壤D(θ)明显大于其余3个岩屑含量的土壤,而30%岩屑含量和50%岩屑含量土壤之间的D(θ)无显著差异,且土壤湿润锋前进速率均呈先增加后降低再增加的趋势;岩屑粒径为0.25~2 mm时,土壤湿润锋前进速率和D(θ)随岩屑含量增加逐渐增加。因此,随岩屑含量提高,土壤水分扩散速率整体呈现增加趋势;且泥岩发育的土壤水分扩散速率高于页岩发育的土壤。  相似文献   

14.
Considerable attention has been paid recently to the influence of surface rock fragments on hydrological and erosional processes, although much of this research has been done on disturbed soils under laboratory conditions. I have studied the effects of rock fragments on soil infiltration, runoff and erosion under field conditions using simulated rainfall on bare areas of natural soils within typical Mediterranean scrubland characterized by patchily distributed vegetation. Sample areas were chosen where rock fragments cover more than half the surface within unvegetated patches. Twenty experiments were carried out by applying rain at an intensity of 55 mm h?1 for 60 minutes. This approach shows that rock fragments (i) retard ponding and surface runoff, and (ii) give greater steady‐state infiltration rates and smaller interrill runoff discharges, sediment concentrations and interrill erosion rates. A second set of six experiments was carried out by applying rainfall at an intensity of 55 mm h?1 for two runs of 60 minutes. The second run was initiated 10 minutes after the first. During this interval, surface rock fragments were removed in order to measure their effects on infiltration, interrill runoff and erosion rates. In this way, I showed that water and soil losses are reduced by the rock fragments. After the removal of rock fragments the steady‐state infiltration rate diminished from 44.5 to 27.5 mm h?1 and the runoff coefficient, sediment concentration and erosion rates were, respectively, 3, 33 and 39 times greater than they were before the rock fragments were removed.  相似文献   

15.
为揭示地面覆盖条件下第四纪红黏土坡面在不同雨强和坡度时的侵蚀变化规律,选取3个降雨强度(1.0,1.5,2.0 mm/min)和3个坡度(10°,15°,20°),通过人工模拟降雨试验,分析坡面产流、产沙、入渗特征,并以15°为例计算覆盖坡面的减流减沙效益。结果表明:(1)坡面产流时间随雨强和坡度增加而提前,覆盖对产流时间有明显的滞后作用,雨强的增加会削弱覆盖延缓产流的作用;坡面径流率呈现前期增长,后期趋于稳定的变化特征;(2)当坡度一定,雨强从1.0 mm/min增加至2.0 mm/min,累积侵蚀量增加1.89~2.96倍;雨强一定,坡度从10°增加至20°,累积侵蚀量增加1.91~3.45倍;(3)坡面初始入渗率和入渗总量随坡度的增加而减小,而雨强的增大会增加坡面初始入渗率,减少入渗总量;(4)15°条件下覆盖坡面的径流量和泥沙量较裸坡平均减少50.26%和95.31%,松针覆盖的水土保持效益显著,且减沙效应大于减流效应;(5)坡度对覆盖坡面累积产流量和累积产沙量的影响程度大于雨强,不同雨强、坡度下累积径流量与累积产沙量呈现幂函数关系(R~20.97)。研究结果可为南方红壤丘陵区林下水土流失治理与生态恢复提供参考。  相似文献   

16.
含岩屑紫色土水力特性及饱和导水率传递函数研究   总被引:2,自引:0,他引:2       下载免费PDF全文
紫色土中存在的岩石碎屑会对土壤的水力性质如饱和导水率、水分特征曲线产生显著影响。以两种不同母质发育的土壤(紫色页岩和紫色泥岩)为研究对象,设置0.25~2、2~5、5~10 mm三个岩屑粒径水平,0、30%、50%、70%、100%五个岩屑含量水平,采用压力膜仪法和定水头法分别测定水分特征曲线和土壤饱和导水率。利用BP神经网络,选择特定输入变量建立土壤饱和导水率传递函数PTF1和PTF2(PTF1的输入变量为岩屑含量、岩屑粒径、初始土壤容重和机械组成,PTF2的输入变量为岩屑含量、岩屑粒径、初始土壤容重、机械组成、进气压力值和S指数(土壤水分特征曲线拐点处斜率的绝对值))。结果表明:添加岩屑极大提高了土壤饱和导水率和S指数,并且随岩屑含量的增加而增加,相比之下,进气压力值随岩屑含量增加而减小,饱和导水率也随岩屑粒径的增加而增加,岩屑粒径从0.25~2 mm增加至5~10 mm,饱和导水率平均提高了2.3倍。岩屑粒径对进气压力值和S指数影响较小。PTF1和PTF2的几何平均数、几何标准偏差、均方根误差以及AIC指数分别为1.27、5.57、0.16、2.94和1.17、1.70、0.06、–53.28,PTF2的相关值均小于PTF1,表明PTF2模型的预测效果更好。综上所述,岩屑的存在显著影响了紫色土的水力特性,使饱和紫色土导水能力增加而保水能力减弱,利用神经网络所构建的传递函数PTF2可很好地实现含岩屑土壤饱和导水率的预测。  相似文献   

17.
Ultisols, widely distributed in tropical and subtropical areas of south China, are suffering from serious water erosion, however, slope hydrological process for Ultisols under different erosional degradation levels in field condition has been scarcely investigated. Field rainfall simulation at two rainfall intensities (120 and 60 mm/h) were performed on pre-wetted Ultisols with four erosion degrees (non, moderate, severe and very-severe), and the hydrological processes of these soils were determined. The variation of soil infiltration was contributed by the interaction of erosion degree and rainfall intensity (p < 0.05). In most cases, time to incipient runoff, the decay coefficient, steady state infiltration rate, and their variability were larger at the high rainfall intensity, accelerating by the increasing erosion severity. Despite rainfall intensity, the infiltration process of Ultisols was also significantly influenced by mean weight diameter of aggregates at the field moisture content, soil organic carbon and particle size distribution (R2 > 30%, p < 0.05). The temporal erodibility of surface soil and soil detachment rate were significantly and negatively correlated with infiltration rate (r < -0.32, p < 0.05), but less significant correlation was observed between sediment concentration and infiltration rate for most soils, especially at the high rainfall intensity. The variation of surface texture and soil compactness generated by erosion degradation was the intrinsic predominant factors for the change of infiltration process of Ultisols. The obtained results will facilitate the understanding of hydrological process for degraded lands, and provide useful knowledge in managing crop irrigation and soil erosion.  相似文献   

18.
田间含碎石土壤水分入渗及再分布试验研究   总被引:1,自引:0,他引:1  
为探明碎石存在于田问土壤中如何改变土壤水分运移通道、影响土壤水分运动,揭示田间含碎石土壤水分运动的复杂过程,采用便携式针头降雨器在铜川崾岘梁修建的临时小区进行模拟降雨实验,测定含碎石浅层土体的入渗和水分再分布过程.采用土壤水分运动通量法计算浅层土体不同深度各截面面积的水量在雨后不同时间段的变化,分析含碎石土壤再分布特征及碎石含量对浅层土体入渗和水分再分布的影响.结果表明:碎石有利于田间浅层土壤入渗和蓄存;室内较田问测定的含碎石土壤入渗率小一个数量级以上;降雨后较短时段,碎石含量相对高的林地小区的浅层土体水分在降雨停止后呈增加趋势.表现了蓄水过程,碎石含量较低的撂荒地则表现了释水过程;降雨后较长时段,多数小区浅层土体(0-30 cm)水量变化呈现了"排水一存储交换一排水"过程,少数小区仅呈现了"排水"过程;雨后16 h左右的土体各截面面积的水量与碎石含量呈现了以直线y=0.4873为轴对称的递增和递减的指数为1/2的幂函数关系,说明碎石对黄土区典型土石区土体水分运动具有促进和阻滞双面影响.本文的研究结果可为含碎石土壤的水分利用及水分循环提供参考.  相似文献   

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