首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到20条相似文献,搜索用时 781 毫秒
1.
Runoff and erosion processes are often non-linear and scale dependent, which complicate runoff and erosion modelling at the catchment scale. One of the reasons for scale dependency is the influence of sinks, i.e. areas of infiltration and sedimentation, which lower hydrological connectivity and decrease the area-specific runoff and sediment yield. The objective of our study was to model runoff and erosion for a semi-arid catchment using a multi-scale approach based on hydrological connectivity. We simulated runoff and sediment dynamics at the catchment scale with the LAPSUS model and included plot and hillslope scale features that influenced hydrological connectivity. The semi-arid Carcavo catchment in Southeast Spain was selected as the study area, where vegetation patches and agricultural terraces are the relevant sinks at the plot and hillslope scales, respectively. We elaborated the infiltration module to integrate these runoff sinks, by adapting the parameters runoff threshold and runoff coefficient, which were derived from a rainfall simulation database. The results showed that the spatial distribution of vegetation patches and agricultural terraces largely determined hydrological connectivity at the catchment scale. Runoff and sediment yield for the scenario without agricultural terraces were, respectively, a factor four and nine higher compared to the current situation. Distributed hydrological and erosion models should therefore take account of relevant sinks at finer scales in order to correctly simulate runoff and erosion-sedimentation patterns.  相似文献   

2.
This review summarizes the effects of vegetation on runoff and soil loss in three dimensions: vertical vegetation structures (aboveground vegetation cover, surface litter layer and underground roots), plant diversity, vegetation patterns and their scale characteristics. Quantitative relationships between vegetation factors with runoff and soil loss are described. A framework for describing relationships involving vegetation, erosion and scale is proposed. The relative importance of each vegetation dimension for various erosion processes changes across scales. With the development of erosion features (i.e., splash, interrill, rill and gully), the main factor of vertical vegetation structures in controlling runoff and soil loss changes from aboveground biomass to roots. Plant diversity levels are correlated with vertical vegetation structures and play a key role at small scales, while vegetation patterns also maintain a critical function across scales (i.e., patch, slope, catchment and basin/region). Several topics for future study are proposed in this review, such as to determine efficient vegetation architectures for ecological restoration, to consider the dynamics of vegetation patterns, and to identify the interactions involving the three dimensions of vegetation.  相似文献   

3.
This review summarizes the effects of vegetation on runoff and soil loss in three dimensions: vertical vegetation structures(aboveground vegetation cover, surface litter layer and underground roots), plant diversity, vegetation patterns and their scale characteristics. Quantitative relationships between vegetation factors with runoff and soil loss are described. A framework for describing relationships involving vegetation, erosion and scale is proposed. The relative importance of each vegetation dimension for various erosion processes changes across scales. With the development of erosion features(i.e., splash, interrill, rill and gully), the main factor of vertical vegetation structures in controlling runoff and soil loss changes from aboveground biomass to roots. Plant diversity levels are correlated with vertical vegetation structures and play a key role at small scales, while vegetation patterns also maintain a critical function across scales(i.e., patch, slope, catchment and basin/region). Several topics for future study are proposed in this review, such as to determine efficient vegetation architectures for ecological restoration, to consider the dynamics of vegetation patterns, and to identify the interactions involving the three dimensions of vegetation.  相似文献   

4.
多尺度土地利用与土壤侵蚀   总被引:20,自引:5,他引:15  
土地利用能够通过改变一系列的自然现象和生态过程影响土壤侵蚀,尺度不同,土地利用与土壤侵蚀的作用机制也会发生变化。本文针对坡面尺度、小流域/流域尺度和区域尺度,综述了不同尺度上土地利用对土壤侵蚀的影响研究。其中,在坡面尺度上,土地利用与土壤侵蚀的研究主要包括土地利用方式和土地管理措施对土壤侵蚀的影响,相应尺度上的模型有USLE/RUSLE、WEPP等;在小流域/流域尺度上,土地利用与土壤侵蚀的研究主要涉及土地利用结构和土地利用格局对土壤侵蚀的影响,相关的模型有LISEM、AGNPS、EUROSEM和SEDEM等;在区域尺度上土壤侵蚀评价研究主要是通过尺度上推和宏观因子评价的方法进行。多尺度土地利用与土壤侵蚀研究作为自然地理学研究中的热点问题,在进一步的研究中需要关注多尺度综合与尺度转换、土地利用政策效应、土地利用格局与土壤流失过程等方面的研究内容。  相似文献   

5.
Soil erosion has become a serious environmental problem worldwide, and slope land is the main source of soil erosion. As a primary cover of slope land, crops have an important influence on the occurrence and development of runoff and soil erosion on slope land. This paper reviews the current understanding of runoff and soil erosion on slope cropland. Crops mainly impact splash detachment, slope runoff, and sediment yield. In this review paper, the effects of crop growth and rainfall on the splash detachment rate and the spatial distribution of splash detachment are summarized. Crop growth has a significant impact on runoff and sediment yield. Rainfall intensity and slope gradient can influence the level of erosive energy that causes soil erosion. Furthermore, other factors such as antecedent soil water content, soil properties, soil surface physical crust, and soil surface roughness can affect soil anti-erodibility. The varying effects of different crops and with different influence mechanisms on runoff and soil erosion, as well as changes in their ability to influence erosion under different external conditions should all remain focal points of future research. The effect of crop vegetation on runoff and soil erosion on slope land is a very important factor in understanding large-scale soil erosion systems, and in-depth study of this topic is highly significant for both theory and practice.  相似文献   

6.
Evaluation of the ecological effects of eco-compensation policies helps analyze policy rationality and feasibility and provides scientific and practical bases for perfecting eco-compensation systems. Taking the key ecological function area of the Loess Plateau, China as a case study, we have evaluated ecosystem responses to the Grain-for-Green Project that commenced in 1999. Six indicators were selected to assess changes in ecosystem structure, quality and function. The results showed that implementation of the Grain-for-Green Project has reduced sloping cropland by 1571 km2 and increased ecological land by 1337 km2. The increase in ecological land alters ecosystem structures across the study area and the decline in sloping cropland reduces farming activity interference; both of these are conducive to the restoration of natural vegetation. From 2000 to 2010, the vegetation cover of grassland, desert and forest ecosystems increased 10.89%, 8.34% and 4.24% respectively and average NPP rose 51%, with an average annual growth rate of around 5%. This indicates that eco-compensation has promoted the improvement of ecosystem quality. Total biomass of ecosystems increased two times on average from 2000 to 2010, meaning that the carbon sequestration capacity of ecosystems also increased. The reduction in the area of water loss and soil erosion and the increase in retained runoff by forests indicate an improvement in ecosystem function and services on the Loess Plateau.  相似文献   

7.
山区土地利用/覆被变化对土壤侵蚀的影响   总被引:42,自引:6,他引:36  
本文以福建省山区为例,在对福建省水土保持实验站、建瓯市牛坑龙水土保持试验站长期观测、实验资料深入分析对比的基础之上,探讨了土地利用/土地覆被变化对土壤侵蚀的影响规律。分析结果表明,土地利用/土地覆被变化对径流的产生和土壤侵蚀有重要影响,植被的覆盖度的变化直接影响着径流系数和土壤侵蚀模数;植被的覆盖度和径流系数呈负线性关系,随着覆盖度的增加径流系数逐渐减小;植被覆盖度和土壤侵蚀模数为负指数关系,随着植被覆盖度的增大,土壤侵蚀模数急剧下降。  相似文献   

8.
花岗岩崩岗侵蚀劣地的生态恢复试验研究   总被引:2,自引:0,他引:2  
李先琨  叶惊春 《热带地理》1997,17(4):405-411
花岗岩崩岗侵蚀是红壤区最严重的侵蚀方式,本研究根据生态学的原理和方法,探索了花岗岩崩岗区水土流失治理和生态恢复的途径,提出了植被重建的模式。  相似文献   

9.
黄土高原祖厉河流域潜在植被分布模拟研究   总被引:19,自引:0,他引:19  
植被空间分布格局深受环境影响, 分析植被与环境之间的关系一直是植物生态学的中心问题。论文从黄土高原自然植被恢复问题出发, 引出植被恢复的参照标准- 潜在自然植被。 依据气象站和雨量站观测资料, 建立气温降水与海拔高度和地理位置的统计方程, 以GIS 为技术支撑, 对两大环境变量进行空间化。通过野外观测取样, 结合气温降水的空间分布, 界定祖厉河流域不同草地覆盖度的生境空间。根据生境空间边界函数, 对整个流域内的潜在草地植被分布进行模拟。草地分布现状与潜在草地分布对比发现, 低覆盖草地由北向南扩展, 占潜在中覆盖草地面积的37.39%, 占潜在高覆盖草地面积的34.98%。中覆盖草地也在此向南部区域和北部山地扩展, 占潜在高覆盖草面积的11.51%。高覆盖草地收缩到南部和北部山地狭小地带, 仅占其应有区域的4.84%。  相似文献   

10.
黄河头道拐—潼关区间植被恢复及其对水沙过程影响   总被引:1,自引:0,他引:1  
高海东  吴瞾 《地理学报》2021,76(5):1206-1217
黄河头道拐—潼关区间是黄河泥沙的主要来源区,也是中国植被恢复最快的地区。植被的快速恢复对径流和输沙过程产生了深远影响。本文基于250 m分辨率的归一化植被指数数据(MOD13Q1 NDVI),使用统计分析和趋势分析技术,分析了头道拐—潼关区间不同景观单元植被恢复特点、影响因素以及其对水沙过程的影响,并对头道拐—潼关区间植被未来发展趋势进行了预测。研究结果显示:头道拐—潼关区间82.87%区域的植被呈显著增加趋势(p < 0.05),且植被恢复速度最快的区域为半湿润的黄土丘陵沟壑区,坡度和降水量在不同景观单元下对植被恢复的影响不同。随着降水量的增加,头道拐—潼关区间NDVI和年降水量的相关性降低。在植被恢复背景下,黄河中游主要河流径流的主要影响因素仍然是降水量,输沙量同时受到降水量和植被恢复的影响,含沙量与NDVI呈现出较强的负相关关系,而与降水量的相关性较弱。随着植被覆盖度的增加,流域土壤侵蚀量降低,河流输沙量也呈降低趋势,土壤侵蚀量对河流输沙量的贡献率变化于39%~88%之间。基于植被恢复潜力和恢复速度,本文预测头道拐—潼关区间2020年、2030年、2040年以及2050年的NDVI平均值将分别达到0.68、0.75、0.79以及0.80。  相似文献   

11.
Spatial patterns of soil surface components (vegetation, rock fragments, crusts, bedrock outcrops, etc.) are a key factor determining hydrological functioning of hillslopes. A methodological approach to analyse the patterns of soil surface components at a detailed scale is proposed in this paper. The methods proposed are applied to two contrasting semi-arid Mediterranean hillslopes, and the influence of soil surface component patterns on the runoff response of the slopes was analysed. A soil surface components map was derived from a high resolution photo-mosaic obtained in the field by means of a digital camera. Rainfall simulation experimental data were used to characterise the hydrological behaviour of areas with a specific pattern of soil surface components by means of the parameters of the Horton equation. Plot runoff data were extrapolated at the hillslope scale based on the soil surface component maps and their hydrological characterisation. The results show that in both slopes runoff generation is concentrated up- and downslope, with a water accepting area in the centre of both slopes disrupting the hydrological connectivity at the slope scale. This reinfiltration patch at the centre of the slope is related to the type of soil surface component and its spatial pattern. Herbaceous vegetation and ‘on top rock fragments’ increase the infiltration capacity of soils at the centre of the slope. In contrast, embedded rock fragments, rock outcrops, as well as crusted surfaces located in the upper and lower slopes favour runoff generation in these areas. In addition, a general pattern of water contribution areas downslope is apparent on both slopes. The south-facing slope shows a higher hydrological connectivity and more runoff. 55% of the surface of the south-facing slope produces runoff at the end of a 1 hour rainfall event and 17.3% of the surface is covered by a runoff depth between 0.5 and 1 mm. While on the north-facing slope only 38% of the surface produces runoff under the same conditions. Longitudinal connectivity of runoff is higher at the south-facing slope where more runoff-generating surfaces appear and where the vegetation pattern favours the connectivity of bare areas.  相似文献   

12.
固沙植被区土壤质地与土壤微生物数量的关系   总被引:1,自引:1,他引:0  
土壤微生物是荒漠生态系统的重要组分,参与成土过程与生物地球化学循环,其数量反映土壤质量,是判别退化生态系统恢复程度的重要指标。选取沙坡头固沙植被区土壤中的真菌、细菌、放线菌数量进行研究,分析了其时空分布、恢复特征及影响因子。结果表明:土壤微生物数量随固沙年限增加而增加,随土层深度增加而减少,夏秋季显著大于冬春季。三大类群微生物数量恢复曲线均呈现S型,在固沙植被建立18~24 a后恢复速率达到峰值,24~36 a后数量能够达到天然植被区的31.6%~83.7%。土壤微生物数量恢复过程主要受土壤细物质含量的影响,土壤pH是限制因子。土壤微生物对土壤状况与覆被变化敏感,能较早且敏感地指示生态系统功能的变化。  相似文献   

13.
准确预报无资料地区的产流产沙,对土壤侵蚀治理具有重要的实践意义。为了研究南方红壤侵蚀区无观测资料流域的产流产沙情况,以福建省长汀县朱溪小流域为研究区,其次一级流域游屋圳子流域和高陂塅子流域分别为参证流域和无观测资料流域。采用相对误差(Re)、决定系数(R2)以及Nash-Sutcliffe效率系数(Ens)评价了SWAT模型在游屋圳子流域的产流产沙模拟的适用性,基于地形指数判定了两子流域的水文相似性。结果表明:SWAT模型适用于游屋圳子流域的产流产沙模拟;游屋圳子流域与高陂塅子流域具有水文相似性,说明两子流域间可以进行模型参数移植;经模型参数移植,模拟得2010年高陂塅子流域年径流量为1.32×107m3,年产沙量为2 200 t。模拟结果不仅为小流域的水土保持治理提供参考,也为其他无资料流域的产流产沙模拟提供方法借鉴。  相似文献   

14.
土地利用/土地覆盖变化与土壤侵蚀关系研究进展   总被引:34,自引:7,他引:27  
土壤侵蚀作为LUCC引起的主要环境效应之一,是自然和人为因素叠加的结果。不合理的土地利用和地表植被覆盖的减少对土壤侵蚀具有放大效应。土地利用/土地覆盖变化与土壤侵蚀关系的研究已逐渐成为LUCC研究和土壤侵蚀研究的一项新的重要课题。目前,涉及土地利用/土地覆盖的土壤侵蚀研究方法有很多,本文介绍了基于模型的定量研究、基于GIS和RS的研究、基于放射性同位素的研究以及基于湖泊(水库)沉积物的研究的基本原理与研究进展,同时指出了每种方法中存在的不足。  相似文献   

15.
石岚  徐丽娜  冯震  李琦 《干旱区地理》2012,35(5):717-723
应用SWAT (Soil and Water Assessment Tool)模型,研制了黄河万家寨水库流域分布式降雨径流模拟系统,并对万家寨水库流域进行了10年(2000-2009年)径流模拟。其中,以2000-2006年为系统参数的敏感性分析期和模型率定期,以2007-2009年为模型的验证期,模拟结果显示,万家寨站点上模拟径流与实测径流过程线的相关系数达到0.97以上。在此基础上还将数值预报模式与模拟系统相耦合,对万家寨水库入库径流进行了预报和检验分析,结果较好。因此,该模拟系统能够较好地反映万家寨水库入库径流量的变化过程,具有一定的适用性,为进一步进行降雨径流预测提供了技术支撑。  相似文献   

16.
通过对黄土丘陵沟壑区陕西延安羊圈沟小流域坡面上退耕还林还草后形成的林地(单一种植刺槐人工林)、草地(单一的撂荒草地)、草地-林地-草地(上坡位和下坡位撂荒草地,中坡位种植刺槐人工林)及林地-草地-林地(上坡位和下坡位种植刺槐人工林,中坡位为撂荒草地)四种不同的植被格局下植物物种多样性及土壤理化性质变化的研究,旨在揭示植被恢复过程中,坡面上植被不同的空间配置模式对植物物种的组成及土壤环境变化的影响.研究发现,4种植被格局下植物物种的多样性以单一的撂荒草地坡面最高,人工林的种植一定程度上影响了林下植物物种多样性的恢复,但整个灌木和草本的群落结构4种植被格局之间均未达到极不相似水平.土壤有机碳及总氮含量均以坡面上草地-林地-草地的空间配置格局最高且有机碳存在显著差异,而撂荒草地则在土壤水分的保持及改善土壤pH值上优于其他3种植被格局.  相似文献   

17.
基于甘肃省清水县汤峪河径流小区2015—2017年的观测数据,研究不同植被恢复模式条件下坡面次降雨入渗、产流产沙特征。结果表明:不同植被恢复模式条件下的土壤入渗量与降雨强度呈二次函数关系,存在入渗量达到最大值的临界降雨强度。入渗速率与降雨历时可以用幂函数关系表达,符合考斯恰可夫入渗模型。不同植被恢复模式条件下的产流率在0.003 3~0.003 6 mm·min-1之间,相对裸地的减流率为54%~58%。产流率与降雨强度之间呈二次函数关系(R2>0.88),产流率的主要影响因素是降雨强度。径流含沙量平均值乔灌混合区(3.13 g·L-1)>灌木林(2.95 g·L-1)>乔木林(2.79 g·L-1)>草地(2.58 g·L-1),径流含沙量与降雨强度呈线性递增函数关系。裸地的产沙量显著高于各植被小区(P<0.05),是各植被小区的43~57倍,各植被小区的减沙率在93%~94%之间,减沙效益高于其减流效益。各植被坡面土壤流失量与降雨侵蚀力呈线性递增函数关系;产流率与侵蚀产沙率之间呈极显著正相关关系(P<0.01),二者间可采用二次函数关系表达。本研究成果可为黄土高原丘陵沟壑区水土保持优化配置提供理论依据。  相似文献   

18.
《Geomorphology》2002,42(1-2):43-57
A positive relationship between annual rainfall and geomorphic processes (runoff and erosion rates) and environmental factors (water regime, soil and vegetation cover) is often assumed for arid and semi-arid areas with an annual rainfall in the range of 100–300 mm. This assumption disregards the fact that changes along a climatic gradient, at desert margins, are not limited to purely climatic factors. They are often accompanied by a parallel change in surface properties; especially the relative extent of rocky or soil covered surfaces that differ greatly in their response to rainfall. This raises the issue whether the change in surface properties along a climatic gradient enhances the assumed positive effects of rainfall increase or limits it. The hypothesis advanced in this paper is that runoff generation and rate in arid and semi-arid areas are primarily controlled by surface properties rather than by the absolute amounts of storm and annual rain amounts. Hydrological data collected at two instrumented watersheds, located one in an arid rocky area, and the second in a semi-arid soil covered area, support this hypothesis. The implications of data obtained for runoff generation and flow continuity under changing climatic conditions are analyzed. They point to the fact that the same regional climatic change may have different, and even opposite effects, on the hydrological response of different adjoining surface units. This response is expected to be strongly controlled by the specific local surface conditions that prevailed in the area prior to the climatic change.  相似文献   

19.
以安溪官桥为研究区,在已有研究工作的基础上采取野外调查与人工降雨野外模拟试验相结合的方法,研究了植被对山坡地土壤侵蚀的调控机理.研究表明,翻耕地在生草覆盖的条件下,产流量与径流系数均减少70%左右,平均入渗率提高3倍多.说明生草覆盖条件下大量的降雨以入渗的形式流入土壤中,且径流含沙量与产流产沙量均显著低于生草覆盖前,其中平均含沙量减少87.5%,产沙量减少97%.根据对野外试验小区的多年观察,说明植物篱具有缓解坡度、提高土壤抗冲性等明显的保水保土效益.因此,采取适当措施减少产流量以及提高降雨向土壤水分的转化率,均可有效减少坡地土壤流失量.  相似文献   

20.
Developing an effective approach to rapidly assess the effects of restoration projects on soil erosion intensity and their extensive spatial and temporal dynamics is important for regional ecosystem management and the development of soil conservation strategies in the future. This study applied a model that was developed at the pixel scale using water soil erosion indicators (land use, vegetation coverage and slope) to assess the soil erosion intensity in the Loess Plateau, China. Landsat TM/ETM+ images in 2000, 2005 and 2010 were used to produce land use maps based on the object-oriented classification method. The MODIS product MOD13Q1 was adopted to derive the vegetation coverage maps. The slope gradient maps were calculated based on data from the digital elevation model. The area of water soil-eroded land was classified into six grades by integrating slope gradients, land use and vegetation coverage. Results show that the Grain-To-Green Project in the Loess Plateau worked based on the land use changes from 2000 to 2010 and enhanced vegetation restoration and ecological conservation. These projects effectively prevented soil erosion. During this period, lands with moderate, severe, more severe and extremely severe soil erosion intensities significantly decreased and changed into less severe levels, respectively. Lands with slight and light soil erosion intensities increased. However, the total soil-eroded area in the Loess Plateau was reduced. The contributions of the seven provinces to the total soil-eroded area in the Loess Plateau and the composition of the soil erosion intensity level in each province are different. Lands with severe, more severe and extremely severe soil erosion intensities are mainly distributed in Qinghai, Ningxia, Gansu and Inner Mongolia. These areas, although relatively small, must be prioritised and preferentially treated.  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