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1.
积雪融水是古尔班通古特沙漠春季植物发育的重要水源, 快速获取早春沙丘的土壤水分变化具有十分重要的生态学意义. 2010年3、 4月分别使用探地雷达进行了多次测量实验, 结果显示: 1)融雪初期, 沙丘顶部土壤的自由水含量最大, 阳坡次之, 且融雪水在重力作用下沿坡面侧向缓慢流动, 在坡底汇集, 主导了融雪初期乃至整个春季沙丘表层土壤水分的分布格局; 2)融雪后期, 由于阴坡积雪和冻土消融相对滞后, 表层土壤含水量略高于阳坡, 而沙丘顶部由于融雪最早且融雪期间水分转移最多而表面最为干燥; 3)通过与时域反射仪的同步测量结果对比, 探地雷达的测量精度被有效控制在0.03范围内, 且探地雷达提供的连续数据更有利于从细节上把握土壤含水量的变化趋势, 为中小尺度土壤水分的动态研究提供了一种科学、 有效的技术手段.  相似文献   

2.
内蒙古中西部地区不同土壤类型下土壤水分的研究   总被引:7,自引:0,他引:7  
以2002—2003年连续两年自行观测的内蒙古中西部地区二连浩特、乌拉特中旗和乌海的土壤水分为基础,重点分析了沙尘暴发生季节反映下垫面特征的土壤水分的时间变化以及大气影响对不同土壤类型(棕钙土,灰漠土,栗钙土)水分的作用。土壤水分的变化被分为3个阶段进行分析,分别是解冻期至沙尘暴开始的春季、雨期的秋季和冰雪覆盖的冬季。土壤水分受气象条件和土壤类型的影响较大。在气象条件的影响下,土壤水分含量在土壤融化期最低,在雨季达到最大值,其中以栗钙土受的影响最明显。沙尘暴发生依赖于土壤融化时间、土壤融化期的土壤条件和上年冬季的冻土深度。  相似文献   

3.
漓江流域表层土壤水分物理性质空间异质性   总被引:3,自引:0,他引:3       下载免费PDF全文
为了解漓江流域土壤水分空间变化特征及其影响因素,基于2'经纬网格,采用地统计学方法对该流域表层(0~10 cm)土壤水分物理性质的空间变异进行分析。结果表明:从空间结构比上,漓江流域表层土壤含水量、容重、最大和最小持水量均具有高度的空间自相关性(各指标空间结构比均大于0.87),且其空间分布趋势基本一致,由流域上游向中下游逐渐变化。土地利用对流域表层土壤水分物理性质及其空间变异具有显著影响。受时间尺度和土地利用类型等因素的影响,漓江流域表层土壤含水量相比其他土壤水分物理性质,其空间异质性由随机引起的空间变异增加,空间自相关减小,为0.87;而土壤容重最大,为0.92。相关结果对于漓江流域土壤水分动态模拟与预测研究具有一定参考价值。  相似文献   

4.
查明青藏高原高寒草甸区土壤水分运移机制,对正确理解土壤水分迁移过程、提高高寒草甸重建效率具有重要指导意义。通过开展土壤剖面负压、地温观测等原位试验,结合气象资料,对土壤剖面地温、含水率及总水头特征进行分析。结果表明,土壤的冻结期起始于10月,解冻期起始于4月;地温最高值出现在植物生长旺盛期8月,最低值出现在1月;1~3月土壤水分呈固态,6~10月土壤水分呈液态,处于稳定变化阶段,4~5月、11~12月土壤水分呈固液转化态,含水率变化幅度较大,处于过渡阶段。随着气温升高及降水量增加,6~8月水热同季有利于高寒草甸生长,属于高寒草甸主要生长阶段;春季土层由表及深土壤解冻,冻土层滞水性能保障了返青期春旱牧草生长的水分需求;深秋季节的由表及深的土壤冻结,深层土壤水分随水汽发生的表聚作用保障了牧草生长的水分需求,也是高原生态系统能够维持稳定的原因之一。  相似文献   

5.
典型岩溶山坡土壤剖面水分对降雨响应过程研究   总被引:4,自引:1,他引:3  
为揭示岩溶石山山坡降雨入渗补给机制,选取典型岩溶石山山坡土壤剖面为研究对象,于2015年7-10月期间对不同深度土壤水分进行高分辨率连续监测,研究典型场雨条件下土壤剖面水分对降雨的响应过程,分析土壤剖面水分的动态变化规律及其可能影响因素。研究结果表明:土壤剖面水分对降雨的响应受前期土壤含水量、降雨量、降雨强度的影响,还与土壤所处的地形地貌有关;表层土壤水分对首次次降雨响应的滞后时间与前期土壤含水量有关,响应时间在0.5~4.75 h之间,旱季响应时间比雨季长;降雨阈值是引起土壤水分降雨响应的重要条件,旱季6 mm降雨量是土壤水分响应的降雨阈值。当降雨量补充土壤水分亏缺后,土壤剖面水分对降雨响应迅速,响应时间最小为0.25 h,不同深度土壤水分对降雨的响应时间一致,说明下层土壤水分可能受到优先流或侧向径流补给影响。土壤含水量的变化幅度随土层深度的增加而减小,不同深度土壤水分变化主要受土壤-大气界面、土壤-植被、土壤-基岩界面控制下的气候条件、植被蒸散发和介质渗透性差异影响。   相似文献   

6.
温度对土壤水分运动基本参数的影响   总被引:15,自引:0,他引:15       下载免费PDF全文
为探讨土壤温度变化对土壤中水分运动过程和运动参数影响机理,在室内实验的基础上结合理论探讨,对不同温度条件下实验土壤的水分特征曲线、导水率、扩散率和比水容量等土壤水分运动基本参数的温度效应进行了研究分析.结果表明:土壤温度对土壤水分性质及土壤结构性质影响显著,二者共同作用使得土壤水分运动过程发生改变,且其影响效应可通过土...  相似文献   

7.
安徽省江淮流域土壤地球化学基准值与背景值研究   总被引:13,自引:0,他引:13       下载免费PDF全文
基于安徽省江淮流域多目标区域地球化学调查数据资料,统计获得了表层和深层土壤地球化学基准值、背景值及相应的地球化学参数,为研究区生态环境评价及相关学科研究提供了基础。研究表明,成土母质类型对土壤元素地球化学基准值影响显著,表层土壤化学组成表现出既对深层土壤具有一定的继承性,又在表生作用下发生某些变化:表层土壤中迁移活动性强的元素和人为扰动污染的元素明显不同于深层土壤;随着地理空间位置的变化,同类成土母质形成环境、成因来源的差异导致其化学组成的空间变异,造成不同地区同类成土母质地球化学基准值有所不同。因此,土壤地球化学基准值研究应更多地考虑地质背景、物质来源等因素的影响。  相似文献   

8.
我国东北低山区不同坡位积雪特性研究   总被引:4,自引:3,他引:1  
曹志  范昊明 《冰川冻土》2017,39(5):989-996
为研究坡位对积雪性质的影响,利用Snow Fork雪特性分析仪等采集积雪物理性质(积雪深度、密度、液态水含量)数据,分析了不同坡位积雪特性的变化趋势、差异及成因。结果表明:坡位的差异可显著影响积雪,特别是积雪表层的特性,积雪表层温度与积雪反辐射强度呈显著正相关关系;阴、阳坡各坡位积雪液态水含量变化趋势一致,但阳坡液态水含量最大值出现在上坡位,阴坡则是中坡位最大;阴、阳坡各坡位在液态水含量增加的影响下雪密度也在逐渐增大,并且随着积雪深度的增加雪密度逐渐减小;试验区融雪期阳坡积雪液态水含量最先对环境变化做出响应,进而影响雪密度,深度随之响应;阴坡则是液态水含量首先响应,积雪深度次之,密度最后响应。研究结果将为融雪径流形成、融雪侵蚀防治以及季节性积雪区生态系统评估提供理论依据。  相似文献   

9.
晋南临汾-运城盆地土壤氟含量及其影响因素   总被引:2,自引:1,他引:2  
通过对临汾-运城盆地表层土壤F含量的空间变化规律和影响因素的研究,发现土壤平均含F量为520mg/kg,高于全国土壤背景值。表层土壤中F的空间分布不均匀,呈现出由盆地四周向盆地中心递增的趋势。研究表明,土壤F含量的分布主要受控于粉粒和有机质等土壤理化性质、元素间的相互作用、F的吸附特性等因素,人为因素对其也有一定影响。有机质和粉粒等土壤理化性质对土壤F含量的影响较大,说明研究区土壤F含量与F的特殊化学性质和母岩类型有关。因子分析发现,研究区表层土壤F的分布可能受自然地质作用和人为作用2种因素的影响,N、Cd、Se、Cu、Zn、Mo可能代表了F的原始共生元素;土壤F的含量随Mo、Zn、Fe、Mg等元素含量的增加而增加,可能与Fe3 离子在土壤中的吸附作用有关;而F-与OH-的配位置换作用可能是造成土壤中F-吸附的主导因素。  相似文献   

10.
植被退化对高寒土壤水文特征的影响   总被引:5,自引:6,他引:5  
在黄河源冻土严重退化地区,采用选择典型区域和样地进行实验和模型模拟的方法,对不同植被退化特征条件下高寒土壤的水分特征曲线、土壤饱和导水率、土壤入渗及土壤水分进行研究.结果表明:Gradner和Visser提出的经验方程θ=AS-B对该地区土壤水分特征曲线有良好的模拟性;不同植被盖度条件下土壤的饱和导水率和土壤入渗有明显的区别,表层0~10cm范围内,黑土滩的饱和导水率和入渗强度最强,30cm以下土层中土壤饱和导水率、入渗强度以及土壤含水量几乎不受植被的影响.随植被退化表层土壤含水量出现明显降低,退化越严重,水分流失越多,最多时能达到38.6%,植被根系最发达的10~20cm范围的土壤含水量流失对高寒草甸土壤环境影响最大,水分流失导致退化草甸恢复难度较大.通过比较研究,在黄河源地区考斯加科夫(Kostiakov)入渗公式f(t)=at-b更适用于该研究区域高寒草甸土壤水分入渗过程的研究.  相似文献   

11.
中国冰冻圈水文过程变化研究新进展   总被引:10,自引:2,他引:10       下载免费PDF全文
冰冻圈显著的变化已经对冰冻圈水文过程产生了一系列影响。本文重点梳理和分析了近20年,尤其是近10年以冰川融水、融雪径流、冻土水文等为主体的中国冰冻圈水文过程变化研究方面取得的新进展:①在冰川融水变化研究方面,对不同尺度的冰川融水开展了全面研究,发现冰川融水呈现全面增加之势;对冰川融水"拐点"是否出现进行了科学辨识,有了基本认识;对冰川融水过程进行了模型模拟,取得显著进展。②在融雪径流变化研究方面,通过对不同流域融雪径流估算,可基本掌握各河流的融雪贡献率;中国融雪径流变化差异较大,增减不一;融雪期变化具有普遍性,突出特点是峰值提前。③在冻土水文研究方面,通过对地表水-活动层壤中流-多年冻土层上水之间关系的研究,揭示了冻土区径流形成的重力和热力耦合机制;多年冻土变化对地表径流的影响已经显现,主要表现在冬季(枯水季)径流增加;已经发现多年冻土退化对径流有直接补给作用,在一些流域补给量可能达到一定量级。  相似文献   

12.
积雪水文模拟中的关键问题及其研究进展   总被引:3,自引:1,他引:2  
李弘毅  王建 《冰川冻土》2013,35(2):430-437
针对近年来积雪水文模拟研究的发展趋势, 在简要评述积雪模拟基本方法的基础上, 分别就各类方法的不同着眼点展开讨论, 从模拟方案的简繁、 积雪面积等重要状态变量在模型中如何体现等角度进行了叙述.针对我国青藏高原积雪特征, 提炼出现阶段空间分布式积雪水文模拟中的3个关键问题: 网格尺度积雪空间异质性的模拟、 风吹雪的空间参数化、 季节性冻土下垫面的融雪模拟. 分别就这些问题, 回溯了国内外最新研究进展, 强调了发展积雪衰减曲线在网格尺度积雪模拟中的重要性, 讨论了山区环境中具有操作性的风吹雪空间参数化方案, 分析了冻土下垫面融雪研究存在的一些具体问题.  相似文献   

13.
Wind erosion is a dominant geomorphological process in arid and semi-arid regions with major impacts on regional climate and desertification. The erosion process occurs when the wind speed exceeds a certain threshold value, which depends on a number of factors including surface soil moisture. The understanding and modelling of aeolian erosion requires a better understanding of the soil erodibility associated with different moisture conditions. In arid regions during the dry season, the atmospheric humidity plays an important role in determining the surface moisture content and the threshold shear velocity. By a series of wind tunnel tests and theoretical analyses, this dependence of threshold velocity on near surface air humidity is shown for three soils of different textures: sand, sandy loam, and clay loam. The results show that the threshold shear velocity decreases with increasing values of relative humidity for values of relative humidity between about 40% and 65%, while above and below this range the threshold shear velocity increases with air humidity. A theoretical framework is developed to explain these dependencies assuming an equilibrium between the surface soil moisture and the humidity of the overlying atmosphere. The conditions under which soil-atmosphere equilibrium occurs were tested experimentally in the laboratory for different soils in order to determine the effect of grain surface area and texture on the time required to reach equilibrium starting from different initial conditions.  相似文献   

14.
Soil erosion is a serious global environmental problem which limits the survival and development of human beings. In our country, due to the special physical geography and socio-economic conditions, soil erosion intensity is great, which is particularly prominent in Loess Plateau region. Therefore, preventing and controlling soil erosion, as well as reducing soil erosion in Loess Plateau have become the key to solving environmental problems in the region. Soil erosion on Loess Plateau is serious, and grassland vegetation has good effects on soil and water conservation, which can improve ecological environment well. After the implementation of the project about returning farmland to grassland on Loess Plateau, the ecological benefits mainly focused on soil and water conservation benefits, soil improvement benefits, water conservation benefits and species diversity benefits, etc. Grassland vegetation has an irreplaceable role in the construction of the ecological environment on Loess Plateau. Therefore, the role of grassland in preventing soil erosion has received more and more attention. Scholars have done lots of research involved in the relationship between grassland coverage and soil erosion, impacts of grassland on hydrodynamic parameters, effects of grassland on soil properties, reduction effects of grassland on runoff and sediment, and soil erosion process on grassland slope. However, there is little research on erosion effect induced by grassland cover. This paper mainly pointed out the following questions: First, grassland cover is influenced by many factors, but the relationship with soil erosion from the dynamic mechanism is rarely discussed; Second, there is no well-developed theory of overland flow erosion at present, which limits the study of hydrodynamic parameters on grassland slope; Third, establishment of mathematical model between grassland cover and soil resistance can accelerate the quantitative analysis of grassland influence on erosion; Fourth, comprehensive analysis of influencing factors on water reduction and sediment reduction effect on grassland are insufficient; Fifth, there are not many mechanisms to analyze the erosion process of grassland slope by using the hydrodynamic characteristics of slope; sixth, research results on grassland-induced erosion are mainly focused on leading to soil dry layer and we should continue to strengthen in the future. This paper summarized the previous results, and supplemented some studies about erosion caused by grassland, then pointed out the existing problems in current research and the areas that need to be strengthened in the future, aiming at reducing soil erosion on the Loess Plateau.  相似文献   

15.
针对流域内气象观测站点稀少和融雪径流过程的特点,利用APHRODITE降水数据进行插值,应用日有效活动温度改进度日数;依据季节性冻土受有效活动积温影响的特点,建立有效活动积温与径流系数的关系,提高模型中融雪速率和径流系数的计算精度。结合气象、水文资料和MODIS遥感积雪产品,应用改进的融雪径流模型(SRM)对开都河流域2000年与2006年融雪期的径流进行了率定和验证模拟。改进模型在率定期和验证期的模拟结果远远优于用日平均温度作为度日数的结果。结果表明,用APHRODITE降水数据及改进的度日数和径流系数作为SRM模型参数输入,能够较好模拟开都河流域融雪径流过程,大大提高模型模拟精度。  相似文献   

16.
干旱区融雪径流模拟的研究进展与展望   总被引:2,自引:2,他引:0  
融雪径流模拟是干旱区水文水资源研究的热点问题,对干旱区春季融雪洪水风险评估和流域水资源管理至关重要。结合文献查询及资料分析,重点讨论了不同类型融雪径流模型的特征和发展情况,比较了不同融雪径流模型在干旱区一些典型河流的应用情况,并对其功能及优缺点进行了评估。结合对目前流域融雪径流模拟研究中存在的问题的分析,提出未来融雪径流模拟要注重提高数据分辨率的观点。借助多源遥感数据驱动获取更为精确的输入数据,在数据获取难度减小、精度提高的基础上山区融雪径流模拟将更多地以基于能量平衡的物理性模拟为主。模型的构建要充分考虑由气候变暖所带来的其它参数的变化,精确描述山区融雪过程,以提高对融雪径流的模拟精度。  相似文献   

17.
中国西部大尺度流域建立分带式融雪径流模拟模型   总被引:16,自引:6,他引:10  
王建  李文君 《冰川冻土》1999,21(3):264-268
针对中国西部大尺度流域利用遥感信息进行的融雪径流模拟模型建立过程,提供以数字地形因子分析为手段的分区,分带方法。在NOAA/AVHRR卫星云图为主要监测信息源的前提下,应用支持软件,解决了图像纠正,图形转为图像后再与图像匹配等问题。同时,根据研究得出雪象元之阈值,使用监督分类的训练样本方法统计出流域内雪盖面积及各带的雪盖面积百分比。作为应用和检验,对黄河上游的曲什安流域进行样本操作,分3个垂直带各  相似文献   

18.
The vadose zone is the zone in between the land surface and above the groundwater table at vertical profile with partial water saturation and under the unsaturation condition, which constitutes the connections among atmospheric water, surface water and groundwater. Soil moisture migration in the vadose zone is a rather complicate process, which controls the rates of groundwater depletion and recharge, and has close hydraulic connections with highly frequent water transfers on the interfaces among the irrigation farmland, sand dunes, wetlands, lakes, and other landscape types. Recent development on soil moisture migration simulations and the application of tracer techniques, geophysical techniques and other geological methods in the vadose zone research, the factors affecting soil moisture migration and groundwater recharge,and soil moisture migration effects on moisture exchange between different landscapes were reviewed in this paper. Several suggestions on the future research were presented here: ① An intense field observation and research database should be initiated and constructed to determine the soil hydraulic parameters, and quantify the influence of moisture migration in vadose zone on the groundwater recharge; ② The proposed observations and researches should learn from the “Critical Zone Observatory”, and focus on the coupling of the soil moisture migration, solute transport and groundwater recharge.  相似文献   

19.
崔曼仪  周刚  张大弘  张世强 《冰川冻土》2022,44(6):1898-1911
Under the background of climate warming, the occurrence time, frequency, intensity, and impact of snowmelt flood disasters have changed significantly. Thus, establishing a global snowmelt flood disaster database is particularly important for disaster risk management. With the help of a web crawler, and based on multiple data sources such as natural disaster databases, documents, books, government agency websites, and news media, this study collected relevant information of snowmelt floods and mixed floods and established standards for identifying snowmelt flood events and their disaster impacts based on data from the different sources. Following the screening, sorting, fusion, and integration of snowmelt flood events, a global snowmelt flood disaster dataset containing 579 pieces of data with strong pertinence and reliability was constructed. The temporal and spatial distribution characteristics of global snowmelt flood disasters from 1900 to 2020 were preliminarily analyzed. The results showed that the snowmelt floods were mainly distributed between 30° N and 60° N, with more mixed floods south of 50° N and more snowmelt floods north of 50° N. Spring was the period of highest incidence of snowmelt flood disasters, followed by winter, summer, and autumn, respectively. The snowmelt floods that occurred in spring, autumn, and winter were mainly at 40°~50° N, and the snowmelt floods that occurred in summer were mainly at 30°~40° N. Compared with the snowmelt floods, the mixed floods were more frequent and more destructive, and their frequency increased with climate warming. The results provide a scientific basis for risk prevention and loss assessment of global snowmelt flood disasters. © 2022 Science Press (China).  相似文献   

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