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1.
From May 7 to August 13, 1985, soil moisture was measured at 12 study sites located along a 200-km east-west trending transect in west-central Oklahoma. Soil moisture was sampled at three depths at each site: 15 cm, 61 cm, and 91 cm. Study site location and the time (week) of data collection were analyzed through correlation and regression analysis in order to assess their impact on soil moisture variability measured at the three sampled depths. Along the transect for the study period, soil moisture increased with depth; soil moisture also increased with depth from west to east along the transect during the sample period. The correlation between the location of the sample site and soil moisture was weak at the 15 cm depth (0.48), but was stronger at greater depths (0.78 at 61 cm; 0.65 at 91 cm). The location of the study site along the transect explained 25% of the variation in soil moisture at a 15 cm depth; 62% at a 61 cm depth; and 51% at a 91 cm depth. The time (week variable) of data collection at each sample site was less useful in explaining the variability in soil moisture than site location. Time explains 15, 23, and 16% of the variability observed in soil moisture along the transect for the depths of 15, 61, and 91 cm, respectively. A combination of time and location variables, however, explained 46% of the variability in soil moisture for all three depths. The same time and location variables explained 55%, 76%, and 52% of the variability observed in soil moisture for the three individual depths: 15, 61, and 91 cm, respectively. Unusual precipitation events affected the transect throughout the study period and diminished the impact of location as a significant explanatory variable for describing variability in soil moisture.  相似文献   

2.
由于土壤特性和植被分布具有区域性,不同流域土壤有效厚度存在差异,进而影响土壤蓄水容量和陆面水碳等通量的时空分布。以湿润地区的东江流域,湿润、半湿润地区的淮河流域以及半湿润、半干旱地区的泾河流域为研究对象,采用LPJ动态植被模型,以水量平衡为目标率定土壤有效厚度,分析不同气候区典型流域土壤有效厚度以及土壤蓄水容量和陆面水碳通量(径流量R,实际蒸散发量ET和净初级生产力NPP)变化。结果表明:东江、淮河、泾河流域的土壤有效厚度分别为70 cm、90 cm和140 cm,土壤有效厚度和蓄水容量随着气候干旱程度增加而增加;土壤有效厚度的修正有效减低该模型水平衡误差,对陆面水碳通量模拟结果的影响程度与区域气候条件有关,湿润地区多年平均径流深和实际蒸散发修正前后变化显著,半湿润、半干旱地区NPP变化显著。研究成果为提高LPJ模型在不同气候区应用可靠性提供参考依据。  相似文献   

3.
通过采用点面结合的方法,分析黄土高原地区降雨影响下不同深度土壤水分的时空变化,从土壤水分复杂的“变异性”中提取相对的“不变性”。结果表明:20 cm以上土壤水分无明显规律,难以表征不同植被类型或空间位置上的土壤水分差异;小于30 mm的降雨基本不会引起40 cm以下土壤水分明显波动;100 cm深处,各采样点的土壤水分能在一个稳定值上保持数月时间,在大于46 mm的强降雨之后出现阶梯式抬升,之后又保持稳定状态;越往土层深处,土壤水分时空稳定性越明显,能较好的表征各植被类型或空间位置上的土壤水分差异。该研究从土壤水分的稳定性角度进行分析,对黄土高原土壤水分的地面采样设计和时空预测具有实际应用价值。  相似文献   

4.
潘明溪  张丽娟  曲成军  潘涛  张帆 《地理研究》2021,40(4):1111-1124
春季土壤湿度是影响东北粮食产量和品质的重要因素.在气候变暖的背景下,东北春季土壤湿度如何变化,鲜有研究.本文基于1983-2019年黑龙江省22个农业气象站的土壤湿度和气象观测资料,采用方差分析、突变分析及空间分析等方法,分析20世纪80年代以来黑龙江省春季土壤湿度的时空变化特征及其影响因素.结果 表明:1983-20...  相似文献   

5.
不同演替阶段油蒿群落土壤水分特征分析   总被引:3,自引:0,他引:3  
油蒿群落是毛乌素沙地最主要的群落类型之一,在维持当地生态系统稳定中起着重要作用。土壤水分是影响油蒿群落演替的重要环境因子,为深入分析不同油蒿演替阶段土壤水分特征,使用EC-5土壤水分传感器连续监测整个生长季内先锋物种阶段(流动沙地)、稀疏阶段(半固定沙地)和建成阶段(固定沙地)油蒿群落土壤水分动态。结果表明,3种样地土壤水分均存在时间和空间上差异,流动沙地各层土壤含水量均显著高于半固定沙地和固定沙地;土壤含水量受降水影响较大, 降水量是影响土壤水分补给深度的重要因素,小于10 mm的降水主要被表层土壤吸收,10~20 mm的降水对土壤水分的补给深度超过30 cm、不及60 cm, 30~40 mm的降水补给深度大于60 cm、不及100 cm;30 cm及其上层土壤水分波动剧烈,60 cm处土壤水分主要受大于30 mm降水事件影响,波动较小,100 cm和160 cm处土壤水分几乎不受降水的影响,土壤含水量较稳定;降水补给深度及植被根系需水的层次差异是导致3种样地土壤水分时间和空间上异质性的重要因素;土壤温度主要受大气温度影响,与土壤水分相关性不显著,且随土壤深度的增加而降低。  相似文献   

6.
黄土丘陵小流域土壤物理性质的 空间变异   总被引:43,自引:2,他引:43  
邱扬  傅伯杰  王军  陈利项 《地理学报》2002,57(5):587-594
黄土丘陵小流域土壤物理性质在景观尺度上的空间变异以质地、容重和饱和含水量最小,稳定入渗率最大,团稳性与粘结力居中,不同土地利用类型之间诸项物理性质都存在显著差异,土壤质地以林地的砂粒含量显著偏低但粉粒含量显著高于其它土地利用类型,休闲地的粉粒含量显著较低;容重以林地显著偏大,耕地较小;饱和含水量以灌木地较大,林地显著偏低,土壤团稳性以林地显著偏高,耕地显著偏低;土壤粘结力以灌木地,林地,荒地和休闲地显著较强,耕地显著较弱;稳定入渗率以灌木地显著较高,间作地显著较低,就坡形来说,垂直与水平凹形坡的砂粒含量都显著较低而粉粒含量比较高,相反直形坡的砂粒比较高而粉粒含量显著较低;饱和含水量与稳定入渗率都是以垂直直形坡较高,垂直凹形坡则较低,就坡向而言,偏东坡的土壤粘结力显著低于偏西坡;偏北坡土壤质地比偏南坡粘性强,但稳定入渗率低,稳定入渗率还随坡度的增大而增高,随着海拔的升高,土壤砂粒含量与稳定入渗率增高,而粘粒含量与团稳性呈降低趋势。  相似文献   

7.
The degree of spatial variability of soil moisture and the ability of environmental attributes to predict that variability were studied at the Da Nangou catchment (3·5 km2) in the semi-arid loess area of China. Soil moisture measurements were performed biweekly at five depths in the soil profile (0–5 cm, 10–15 cm, 20–25 cm, 40–45 cm and 70–75 cm) from May to October 1998 and from May to September 1999 using Delta-T theta probe. Results indicated that with increasing soil depth, the mean soil moisture content increases significantly for five layers and the coefficients of variation (CV) also increases with depth from 10–15 cm. It was observed that heavier rains and higher mean moisture contents are often associated with lower spatial variability (CV). Environmental attributes such as land use and topography play controlling roles in the spatial distribution of soil moisture content. However, the relative roles of these environmental indices vary with soil depth. The dominant controls on spatial variability of the time-averaged soil moisture changes from land use, aspect, relative elevation and hillslope position in the surface soil (0–5 cm) to relative elevation, hillslope position and aspect in the subsurface soil (10–15 cm, 20–25 cm), and to land use, relative elevation and slope gradient at larger depths (40–45 cm, 70–75 cm). The dynamic behavior of influences of different environmental indices on the layer-averaged soil moisture depends on several factors. In general, the correlation of soil moisture with slope gradient shows a more significant increase following a greater amount of antecedent precipitation (except for the extremely heavy storms), and declines afterwards. The relation of soil moisture with relative elevation and hillslope position exhibits an opposite trend. It was observed that the influence of land use corresponds to the difference in vegetative characteristics, with a stronger influence in June and August with a greater difference in vegetation. A significant influence of cos(aspect) was found during early spring and autumn with a rapid transient in solar irradiation. Finally, it was found that the sample size is adequate to estimate the catchment mean soil moisture at all five depths and on all 10 observations in 1999 (81 sites), while it is only enough for the upper soil layers (0–5 cm and 10–15 cm) in 1998 (26 sites).  相似文献   

8.
水分胁迫对绿洲影响的数值模拟   总被引:7,自引:0,他引:7  
运用耦合了包含土壤-植被-水文参数化陆面过程的非静力平衡中尺度大气模式MM5,将水平分辨率提高到1km,通过数值模拟的方式,分别从地气间水热交换、对绿洲小气候影响、土壤湿度变化以及径流量的角度,研究了2002年7月下旬我国西北干旱区绿洲环境在不同水量滴灌条件下的变化,从理论上找到了较适宜绿洲小气候维持的滴灌水量。结果表明:1、绿洲下垫面为农田时,从土壤保湿和绿洲小气候维持角度考虑,500m^3/hm^2/10天的滴灌水量对7月下旬黑河流域中游绿洲是一个比较合适的灌溉量。2、500m^3/hm^2/10天的灌溉水量仅为同期大水漫灌定额下限的一半,上限的1/3,间接证明了滴灌是一种高效节水的灌溉方式,可以为干旱区节约大量水资源。  相似文献   

9.
Soil moisture is a critical state affecting a variety of land surface and subsurface processes. We report investigation results of the factors controlling vertical variation of soil moisture and sand transport rate of three types of dunes on the southeastern margin of the Mu Us Sandy Land. Samples were taken from holes drilled to a depth of 4 m at different topographic sites on the dunes, and were analyzed for soil moisture, grain-size distribution and surface sediment discharge. The results show that: (1) The average soil moisture varies in different types of dunes, with the following sequences ordered from highest to lowest: in the shrubs-covered dunes and the trees-covered dunes the sequence is from inter-dunes lowland to windward slope to leeward slope. The average moisture in the bare-migratory sand dunes is sequenced from inter-dunes lowland to leeward slope to windward slope. (2) Vegetation form and surface coverage affect the range of soil moisture of different types of dunes in the same topographic position. The coefficient of variation of soil moisture for shrubs-covered dunes is higher than that of other types of dune. (3) The effect of shrubs on dune soil moisture is explained in terms of the greater ability of shrubs to trap fine-grained atmospheric dust and hold moisture. (4) The estimated sand transport rates over sand dunes with sparse shrubs are less than those over bare-migratory dunes or sand dunes with sparse trees, indicating that shrubs are more effective in inhibiting wind erosion in the sandy land area.  相似文献   

10.
半干旱地区流动沙地土壤湿度变异及其对降水的依赖   总被引:23,自引:4,他引:19  
何志斌  赵文智 《中国沙漠》2002,22(4):359-362
应用半干旱区科尔沁沙地1983- 1990年5~ 10月份土壤湿度定点观测资料,对流动沙地土壤湿度的时空变异及其与降水关系进行了研究。结果表明:半干旱区科尔沁沙地,在0~ 300cm的垂直剖面上,以20cm作为一个层次,流动沙地土壤湿度多年平均值变化于3.25%~ 3.47%,层次间无显著差异。在时间序列土壤湿度存在年内和年际变异,5月份的土壤湿度与6~ 10月份存在显著差异,但6~ 10月份之间土壤湿度差异不显著。年际间降水量变化于243.3~ 567.1mm (变异系数9505%)之间,流动沙地土壤湿度变化于3.10%~ 3.69% (变异系数18.68%)之间。0~ 40cm土壤湿度与前月降水量不显著相关,但40~ 300cm土壤湿度与前月降水量显著相关,当月降水量与各层土壤湿度均显著相关。  相似文献   

11.
基于VIC模型的逐日土壤含水量模拟   总被引:11,自引:6,他引:5  
基于VIC(Variable Infiltration Capacity)大尺度水文模型,采用实测的日降水和日最高、最低气温数据,模拟了近35年(1971~2005)全国范围30 km×30 km分辨率的逐日土壤含水量。文章利用43个流域的实测流量资料,率定模型水文参数,建立和验证水文参数移用公式,确定无资料地区的水文参数。选取全国范围内的28个站19年的土壤含水量实测值,对模拟的土壤含水量进行了验证。结果表明,VIC模型较好地模拟了土壤含水量,尤其是在湿润和半湿润地区。模拟的0~100 cm的土壤含水量多年平均值与实际的全国土壤水分分布较为一致。  相似文献   

12.
Soil moisture and soil temperature at 15, 61, and 91 cm depths were measured through use of a neutron probe and thermocouple/psychrometers, respectively, at 12 sample sites distributed along a 200 km east-west transect in west-central Oklahoma. The data were collected weekly from May 7 to August 13, 1985. Multiple regression analysis was used to explain soil moisture and soil temperature variability at the three sample depths through a combination of selected biophysical variables representing temporal and spatial site characteristics, meteorologic inputs, energy variables, and soil conditions. The multiple regression analysis showed that 83, 91, and 82% of the variation in soil moisture, and 79, 91, and 92% of the variation in soil temperature for the three depths sampled could be explained by a combination of the selected biophysical variables.  相似文献   

13.
荒漠人工植被区浅层土壤水分空间变化特征分析   总被引:11,自引:1,他引:10  
潘颜霞  王新平 《中国沙漠》2007,27(2):250-256
研究土壤水分的空间变异及时间动态特征有助于在水文过程与生态格局之间建立定量的联系,由于土壤水分对整个地球系统的重要性,它的时间和空间变化日益引起水文界的广泛关注。干旱荒漠区年降水量稀少,土壤水分在整个生物过程中的作用就显得尤为重要。试验于2005年4月到10月在中国科学院沙坡头沙漠试验研究站人工植被区进行,主要观测1956年植被区表层(0—15 cm)和亚表层(15—30 cm)土壤水分的空间格局与动态分布及其相关影响因素。结果表明:人工植被区表层土壤水分含量明显高于亚表层,其空间变异程度为中等,空间分布的时间差异性显著;降雨是引起干旱沙地表层土壤水分空间变异的决定因素,植物根系是引起亚表层水分空间变异的重要因素。从不同微地形来看,土壤水分含量值表现为丘间低地>背风坡>迎风坡,变异程度丘间低地小于迎风坡和背风坡;地形是决定背风坡表层和亚表层以及迎风坡亚表层土壤水分空间分布的主要因素,而迎风坡表层土壤水分变化受风力等环境因子的影响较大。  相似文献   

14.
沙地降雨入渗水分动态   总被引:21,自引:3,他引:21  
刘元波  高前兆 《中国沙漠》1995,15(2):143-150
应用土壤水动力学基本原理,结合先进仪器的使用,从动力学角度,以能态观点定量研究沙地水分入渗动态。通过野外现场观测,分析不同深度含水率和吸力随时间变化过程,研究沙地降雨入渗水分传递过程,探讨入渗条件下沙地水分运动的动力学机制和特征。  相似文献   

15.
庄慧敏  张朝  程飞  张亮亮  何邦科 《地理学报》2022,77(9):2308-2321
土壤湿度作为影响陆气水热交换的重要变量,指示了干旱的演变特征。为揭示中国旱作农田土壤湿度的变化特征及其气象驱动要素,本文利用站点数据研究了1992—2018年中国旱作农田土壤湿度变化趋势的时间和空间特征,采用相关性、敏感性分析等方法探究了土壤湿度的驱动机制。结果表明:2001年中国旱作农田土壤湿度的变化趋势发生转折,土壤湿度年际变化普遍由下降趋势变为上升趋势,主要由夏季和秋季土壤湿度主导。而且土壤湿度的变化存在空间异质性,2001年后东北地区的土壤湿度在显著增加,而西南地区在显著下降。降水量和蒸散发的时空变化是土壤湿度趋势发生时空变化的主要原因,二者存在协同作用,北方地区由降水主导,南方地区由蒸散发主导。  相似文献   

16.
荒漠人工固沙植被区浅层土壤水分动态的时间稳定性特征   总被引:18,自引:12,他引:6  
试验在地表由生物土壤结皮覆被的荒漠人工固沙植被区进行,通过对0.45 hm2试验样地浅层(0—15 cm,0—30 cm)土壤水分连续动态(2005年4—10月)测定,基于经典时间稳定性理论分析,来揭示荒漠人工固沙植被区浅层土壤水分动态的时间稳定性特征。结果表明,无论在干旱或湿润条件下,浅层土壤水分都具有明显的时间稳定性特征,并且在土壤剖面30 cm深度表现得比剖面深度15 cm更为显著;在干旱条件下,两种土壤剖面深度的土壤水分时间稳定性特征均比湿润条件下显著。根据研究结果,初步确定了试验样地平均土壤水分含量的代表性测点。  相似文献   

17.
土壤水分及土壤-大气界面对麦田水热传输的作用   总被引:13,自引:2,他引:11  
文章根据1996年在中国栾城农业生态试验站观测的田间试验资料,分析了土壤水分和土壤-大气界面对麦田水热传输的抑制和加速作用。对于显热和潜热输送,土壤水分起决定作用,土壤水分越小,显热通量越大,潜热通量越小,反之亦然。只在土壤水分较小时界面厚度对显热和潜热输送作用较大。对于土壤热输送,界面厚度起决定作用,界面厚度越大土壤热通量越小。分析还发现60cm深处土壤水势与叶水势和大气水势的相关系数较其它深度处的土壤水势大。0~60cm土层是确定土壤水分运动对界面水热传输影响的一个良好的指示层。  相似文献   

18.
Based on the data of relative soil moisture in 653 agricultural meteorological stations during the period of 1993-2013 in China, the characteristics and regularity of spatial and temporal variation of relative soil moisture in China's farmland were analyzed and discussed using geostatistical methods. The results showed that the relative soil moisture of China's farmland has shown a fluctuant increasing trend since 1993. The relative soil moisture of China's farmland is more than 60% in general, its distribution area has been expanded northward and westward with the summer monsoon since mid-April and began to shrink eastward and southward in late October. The value of relative soil moisture increases with the increase of soil depth. On an interannual scale, the relative soil moisture of farmland increased fastest in summer and autumn, and its variation range decreased with the increase of soil depth. The relative soil moisture was positively correlated with precipitation, and negatively correlated with potential evaporation and temperature. The correlation between relative soil moisture and various meteorological factors weakened as soil depth increased. The meteorological factors have a great influence on relative soil moisture of dry land in spring, summer and autumn and they also have a greater impact on relative soil moisture of paddy fields in winter.  相似文献   

19.
于2016年7~12月和2017年4月的旱、雨季期间,以金沙江干热河谷苴那小流域内的银合欢(Leucaena Benth)林地、车桑子(Dodonaea angustifolia)灌丛地和扭黄茅(Heteropogon cantortus)草地为研究对象,通过网格法和土钻法采集并测定了(0~100 cm)土层的土壤含水量,应用经典统计法和地统计学方法分析该区域不同林草植被下坡面土壤水分的动态变化特征。结果表明:(1)研究区土壤含水量总体较低,雨季显著大于旱季,旱、雨季均表现为灌丛地>草地>林地,呈中度至强度变异(0.07~0.28之间)。(2)不同林草植被下旱、雨季土壤水分具有相似的空间自相关性,自相关系数均由正向负转变,但由正向负转变的滞后距离有所不同,且雨季大于旱季,呈中等或强等空间自相关性。(3)不同林草植被下的土壤水分空间结构不同,林地、灌丛地和草地旱雨季最佳拟合模型均为球状模型;相同林草植被下各土层旱、雨季土壤水分的空间分布特征相似,但旱季的分布格局差异更显著,不同林草植被下深层土壤水分分布比表层土壤水分的分布更为复杂,土壤水分呈明显的斑块或条带状分布,含水量高值区和低值区位置不固定。总之不同林草植被类型会改变局部地段土壤水分空间分布,降雨会加强这种差异的趋势,但土壤水分仍具一定空间连续性。  相似文献   

20.
毛乌素沙地砒砂岩与沙复配成土技术固沙效应   总被引:3,自引:1,他引:2  
童伟  韩霁昌  王欢元  张海欧  赵宣 《中国沙漠》2015,35(6):1467-1472
为研究砒砂岩与沙复配成土技术的固沙效应,本研究采用试验小区与大田试验相结合的方法,监测了土壤结皮厚度、土壤冻层深度、土壤水分、地表粗糙度和积雪消融等表征固沙效果的相关指标。结果表明:随着砒砂岩的引入,复配土中黏粉粒含量增加,土壤饱和导水率降低,而土壤含水量、结皮厚度、地表粗糙度和冻层深度都有所增加,复配土抗风蚀能力增强。在冬季,通过发展保护性耕作,农作物残茬、根系以及土地整治之后地形因素的改变等对防止土壤风蚀也起到了积极的作用。该研究可为砒砂岩与沙复配成土造田技术的固沙效应提供更充分的理论依据。  相似文献   

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