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1.
为了解半干旱地区农田大尺度土壤水空间变异性特征,文章利用传统统计学和地统计学方法对清水河平原105个土壤剖面的6个水平层面的土壤水分进行了分析。发现旱作农田土壤水垂向分布与灌溉农田有较大区别。同一置信水平和精度要求下,同一深度上旱作农田土壤含水量观测试验的合理取样数目明显高于灌溉农田;深层的合理取样数目明显高于浅层。区域土壤水具中等偏弱空间相关性,土壤水高值区与灌溉区具有一致性。结果表明:在半干旱地区,农田类型(灌溉与旱作)是影响农田大尺度土壤水空间变异的重要因素,多年灌溉农田土壤水空间变异性弱于旱作农田;区域土壤水空间变异性浅层弱于深层;土壤水空间分布与农田类型具有一致性。  相似文献   

2.
基于河西走廊疏勒河中下游绿洲天然胡杨林下8个采样点720个土壤样品和6.8524 hm2的7个样方,应用统计学及相邻格子法等研究了胡杨林土壤水盐的空间变化特征及其影响。结果表明:研究区土壤含水量随深度而增加,土壤全盐量变化与之相反,两者在80 cm土层之上变化剧烈,之下变化平缓;土壤水盐含量变异差异明显,均属于中强度变异。各层土壤水盐含量存在着自中游向下游水分减少、盐分增加、表层聚盐加重的显著空间分布规律。研究区胡杨林生长受到土壤水盐胁迫,种群结构残缺;下游胡杨林分偏老,稀疏矮小,已明显衰退。长此下去,下游胡杨林将因快速衰退演替而全部死亡。  相似文献   

3.
膜下滴灌微区环境对土壤水盐运移的影响   总被引:1,自引:0,他引:1       下载免费PDF全文
基于膜下滴灌特有的"膜中"、"膜间"、"膜边"、"膜外"微区环境,利用2011—2013年田间对比试验方法获取的5 960个数据,运用柯布-道格拉斯模型,构建膜下滴灌环境土壤层次、灌水定额、土壤水分、气温、蒸发综合因素与土壤水盐关系及影响效应分析模型.结果表明,在气候干旱、蒸发强烈灌区,地膜覆盖与滴灌结合的地表介面灌溉形式下,土壤水盐具有水平方向由"膜中"向"膜边"地表裸露区定向迁移,垂直方向土壤水盐则由下向上层运移且趋于"膜外"边界积累的趋势,尤其是气温与蒸发因素交互作用,推进膜下滴灌土壤水盐在地膜覆盖与土壤裸露区域空间运移,研究结果进一步揭示了膜下滴灌"土壤水盐定向迁移"形成机理,为膜下滴灌土壤水盐地表排放模式应用提供了依据.  相似文献   

4.
在室内用水平土柱吸渗法对不同含盐量、不同溶液浓度和不同土类的土壤水扩散系数进行了试验研究.试验结果表明:土壤水(或盐水)扩散系数与土壤的体积含水量之间具有指数函数的关系,且随着含水量的降低而减小.当同一类土在干容重和含水量相同时,土壤水扩散系数是随土中含盐量的增多而增大,以粗粒土最为明显.不同浓度的盐水在土壤中运行时,其盐水的扩散系数是随盐水浓度的增大而减小.  相似文献   

5.
通过研究土壤盐分的空间变异,快速准确获取土壤盐分的空间分布是精准农业和环境保护的基础。使用土壤电导率仪(PET2000)网格法在50 m×70 m面积的田块内布点(网格边长5 m),测量棉田表层土壤(0~25 cm深度,每5 cm为一层)电导率;应用ArcGIS9.2中地统计学模块构建、筛选和验证模型;利用地统计学方法研究表层土壤盐分的空间变异规律,进行空间分布预测,并针对棉田表层积盐问题提出了相应的解决措施。结果表明:克里格(Kriging)插值方法中的Rational Quadratic模型适宜预测表层土壤电导率,区内棉田表层盐分的空间变异特征明显,变异系数达到0.578,土壤盐分的空间变异性随深度增大逐渐降低;产生空间变异的主要原因是土壤岩性的空间差异和微咸水灌溉;解决棉田局部积盐的措施是根据土壤盐分空间差异特征的分析与预测进行适时定位灌溉,从而合理利用水资源并改善作物生长环境。  相似文献   

6.
利用便携式土壤盐分计测定干旱区膜下滴灌棉田及裸地剖面土壤电导率,利用GS+软件确定其半方差函数,并进行序贯高斯模拟来研究土壤剖面盐分的空间变异特征。结果显示:干旱区剖面上土壤盐分空间变异性强,膜下滴灌棉田符合球形模型,裸地区符合高斯模型,且棉田变程远小于裸地;棉田埋深50cm以浅土壤盐分变化剧烈,埋深50cm以深变化平缓,在垂向上呈现3个高值区(30,50和75cm深度附近)及3个低值区(埋深40,60和100cm附近);克里格法具有明显的平滑作用,降低了土壤盐分的空间变异性,而序贯高斯模拟数据更离散,更能反映土壤盐分的空间变异性,但多次模拟均值随次数增加趋于稳定。  相似文献   

7.
连临高速江苏段路基地层为滨海相软土,该软土层具有含水量、含盐量高及压缩性大的特点,路基采用水泥土搅拌桩进行加固。针对这一问题,对滨海相软土中水泥土搅拌桩的强度特征进行了研究。室内试验结果表明,该路基中水泥土强度随水泥掺量的增加而增大。在饱水状态下,28 d内水泥土强度有所增大,28 d后几乎不变,但水泥土强度随含水量的增大而减小,由于下部土层中含水量和含盐量高,导致桩身水泥土波速和强度具有上部大、下部小的特点,试验结果与现场钻探取样试验结果一致。   相似文献   

8.
野外非饱和土壤中溶质运移的试验研究   总被引:9,自引:3,他引:9       下载免费PDF全文
通过在野外3×6m2面积上均匀入渗条件下非饱和土壤溶质运移试验,同时对8个点定时取样,得到170cm深度内土壤溶液浓度和含水量剖面分布.据此研究了小区域范围内土壤水分和溶质的运移特征,讨论了土壤水分和盐分分布的空间变异性和统计特征.研究结果表明,在本试验条件下,土壤溶液浓度剖面的空间变异性远大于土壤水分剖面.单一测点的取样结果不能代表区域的溶质运移特征.区域上溶质浓度的平均结果能反映溶质运移的基本规律.由于土壤结构等因素的影响,不动水体含量占土壤含水量的24%~39%.  相似文献   

9.
典型岩溶峰丛洼地坡面土壤水分空间变异性   总被引:3,自引:1,他引:2  
采用网格法测量典型坡面上旱季(12月)和雨季(5月)的表层(0~5 cm)土壤含水量,以地统计学方法分析其空间变异性,结果表明:(1)与单一土地利用坡面相比,人为扰动强、土地利用多样的岩溶峰丛坡地表层土壤含水量表现为坡上未被扰动的自然植被区明显高于坡下人为改造的区域;旱季时坡地林地表层土壤平均含水量(32.8%)明显高于位于坡下的梯田空闲地(24.2%)、梯田橘园(20.0%)、梯田菜园(22.0%)、坡地裸地(23.5%);雨季时,坡地裸地(30.2%)和梯田橘园(32.1%)有明显增大,梯田空闲地(17.8%)剧烈减小,坡地林地(32.2%)土壤含水量依然最高;(2)旱、雨季整个坡面上空间结构比分别为21.0%、8.7%,表现为雨季的空间相关性更好;旱、雨季表层土壤含水量变异系数分别为20.1%和31.7%,属中等程度变异;雨季表层土壤含水量的变程(77.5 m)显著高于旱季(8.0 m),雨季的土壤含水量具有较好的空间变异结构;(3)裸岩周围空间的土壤含水量随与裸岩的距离增大而减小,梯田石坎周围空间的土壤含水量随与梯田石坎的距离增大而递减。   相似文献   

10.
祁连山退化高寒草甸土壤水分空间变异特征分析   总被引:12,自引:0,他引:12  
利用传统统计学方法和地统计学方法,对祁连山地区受到过度放牧影响而退化为以狼毒为优势种的高寒草甸的土壤水分垂直变异特征、水平空间异质性以及分布特征进行了系统分析. 结果表明:在垂直方向上,0~100 cm土壤水分含量随深度的增加而逐渐减少,土壤水分含量的变化速度随深度的增加也趋于减少;土壤水分分布的变异系数在浅层和深层土壤较大,在中层土壤较小. 在水平方向上,0~40 cm土壤水分具有中等空间变异性,其中10~20 cm土壤水分变异性主要受根系的影响,随机部分引起的变异性最大;而在其他土壤层,随着深度的增加土壤水分含量由随机部分引起的空间异质性程度减弱,由空间自相关部分引起的异质性程度增强. 整体上,土壤水分含量与微地形关系密切,与距离溪流的远近程度正相关,与高程分布负相关.  相似文献   

11.
Permafrost degradation has the potential to significantly change soil moisture. The objective of this study was to assess the variability of soil moisture in a permafrost region using geostatistical techniques. The experiment was conducted in August 2008 in alpine steppe and meadow located in the Qinghai-Tibetan Plateau permafrost region. Four soil depths (0–10, 10–20, 20–30 and 30–40 cm) were analyzed using frequency domain reflectometry, and sampling made of 80 points in a 10 m × 10 m grid were sampled. Soil moisture was analyzed using classical statistics to appropriately describe central tendency and dispersion, and then using geostatistics to describe spatial variability. Classical statistical method indicated that soil moisture in the permafrost region had a normal distribution pattern. Mean surface soil moisture in alpine meadow was higher than that in alpine steppe. The semivariograms showed that soil moisture variability in alpine cold steppe was larger than that in alpine meadow, which decreased with depths. Nugget values in alpine steppe were low (0.1–4.5), in contrast to alpine cold meadow. Soil moisture in alpine steppe had highly structured spatial variability with more than 93.4% spatial heterogeneity, and the range decreased with depth. Soil moisture content in alpine cold meadow had a moderate spatial dependence with a range of 51.3–169.2 m, increasing with depth.  相似文献   

12.
采用亮蓝FCF染色示踪剂, 研究膜下滴灌条件的水盐运移规律; 分别在灌溉前、灌溉中和灌溉后等不同时间段共开挖13个时刻的剖面, 观察膜下滴灌湿润面的运移情况; 以10 cm间隔的网格, 用MP406土壤水分探测器原位测定3 120个点的土壤体积含水率, 同时取1 430份土样, 利用1∶5土水比浸提法测定土壤盐分; 并利用WATCHDOG气象站监测研究区气象要素.结果表明: 染色示踪能直观表征土壤水盐运动轨迹; 膜下滴灌条件下, 垂直滴灌带方向土壤水流呈点源入渗特征、沿滴灌带方向近似呈线源入渗特征; 现行灌溉模式下, 壤质砂土湿润锋横向运移速率约为8 cm/h; 滴灌对滴头附近土体有一定洗盐效果, 未覆膜区域地表土体出现盐分积累; 灌水时间越长, 湿润锋越深, 横向扩展速率接近无作物小区(8 cm/h); 从土壤水合理利用角度考虑, 满足研究区一膜一带四行的种植模式和土质的单次合理灌水量应为29.4~69.8 mm.   相似文献   

13.
Analysis of the spatial variability of soil properties is important to explain the site-specific ecosystems. Spatial patterns of some soil properties such as soil texture, exchangeable sodium percentage (ESP), electrical conductivity (ECe), soil pH and cation exchange capacity (CEC) were analyzed in salt and sodic affected soils in the south of the Ardabil province, in the northwest of Iran, to identify their spatial distribution for performance of a site-specific management. Soil samples were collected from 0 to 30, 30 to 60, 60 to 90, 90 to 120 and 120 to 150 cm soil depths at sampling sites. Data were investigated both statistically and geostatistically on the basis of the semivariogram. The spatial distribution model and spatial dependence level varied in the study area. Among the considered parameters, maximum and minimum spatial variability were observed in EC and pH parameters, respectively. Soil properties showed moderate to strong spatial dependence, except for a few. ECe was strongly spatially dependent in the total soil depth and clay was strongly spatially dependent at the first depth. Sand and pH were moderately spatially dependent for three of the five depths. ESP was strongly spatially dependent and silt was moderate in the total soil depths, except at 90–120 cm depth. Furthermore, CEC had strong spatial dependence for three of the five depths. All geostatistical range values were >1,389 m in this study. It was concluded that the strong spatial dependency of soil properties would lead to extrinsic factors such as bedrock, agricultural pollution, drainage and ground water level.  相似文献   

14.
Disposal of produced waters, pumped to the surface as part of coalbed methane (CBM) development, is a significant environmental issue in the Wyoming portion of the Powder River Basin, USA. High sodium adsorption ratios (SAR) of the waters could degrade agricultural land, especially if directly applied to the soil surface. One method of disposing of CBM water, while deriving beneficial use, is subsurface drip irrigation (SDI), where acidified CBM waters are applied to alfalfa fields year-round via tubing buried 0.92 m deep. Effects of the method were studied on an alluvial terrace with a relatively shallow depth to water table (~3 m). Excess irrigation water caused the water table to rise, even temporarily reaching the depth of drip tubing. The rise corresponded to increased salinity in some monitoring wells. Three factors appeared to drive increased groundwater salinity: (1) CBM solutes, concentrated by evapotranspiration; (2) gypsum dissolution, apparently enhanced by cation exchange; and (3) dissolution of native Na–Mg–SO4 salts more soluble than gypsum. Irrigation with high SAR (~24) water has increased soil saturated paste SAR up to 15 near the drip tubing. Importantly though, little change in SAR has occurred at the surface.  相似文献   

15.
针对环渤海低平原水土盐分和水位埋深,通过选取0~20cm深度内的127个代表性土样进行土壤全盐量测定,并对130个水井的水位埋深及128个地下水样的矿化度进行测定.综合运用普通克立格(OrdinaryKriging)与协同克立格(CoKriging)方法与GIS技术研究水土盐分及水位埋深的空间分布状况.结果表明,土壤盐...  相似文献   

16.
Soil moisture variability and controls are little known in large gullies of the Loess Plateau which represent complex topography with steep slopes. This study analyzed spatial–temporal variability of soil moisture at the 0–20, 20–40, 40–60, and 60–80 cm depths in a large gully of the Loess Plateau based on root-zone soil moisture measurements for 3 years (2009–2011). The result showed that mean soil moisture, standard deviation (SD), and coefficient of variation, were highly dependent on depth; the highest mean value was observed at the 20–40 cm depth, while the lowest one was at the 0–20 cm depth. The SD increased with mean soil moisture for various depths as soil moisture was relatively wet; however, a transition that SD decreased with mean soil moisture occurred when soil moisture was relatively dry. Positive correlations exist between moisture contents over different depths, and that the relationships of the neighboring layers are relatively high with R 2 from 0.70 to 0.76. Correlation analysis, principle component analysis, and stepwise multiple regression analysis showed that soil particle size distribution and topography (slope and elevation) were the main environmental factors controlling soil moisture variability in the large gully.  相似文献   

17.
青藏高原高寒草甸区土壤水分的空间异质性   总被引:12,自引:0,他引:12       下载免费PDF全文
通过网格(10m×10m)取样,用地统计学方法研究了青藏高原高寒草甸覆盖区域(110m×90m)浅层剖面(0~40cm)土壤水分的空间异质性特征。结果表明:在高寒草甸覆盖区0~30cm深度范围内,土壤水分均存在高度空间异质性,其中87.3%~74.9%的空间异质性是由空间自相关部分引起的,主要体现在201m以下尺度,10m以下随机因素对空间异质性作用较小;30~40cm土壤水分空间异质性由10m以下尺度随机因素导致的占42.3%,而自相关部分的空间异质性(57.7%)体现在10~87.2m尺度。随土层深度的增加,分维数D有逐渐增大的趋势,说明随深度增加高寒草甸区土壤水分自相关空间异质性程度在降低,而随机因素导致的空间异质性程度在增加。从4层的C0/(C+C0)值来看,10~20cm这一层的值最小,表明在这一层的系统变量的空间自相关性程度最高。说明高寒草甸区0~30cm土层的土壤水分含量是受降水、植被发育、根系分布、土壤特性和人为干扰等影响,其空间异质性主要受自相关因素控制,而30cm以下的土壤水分受自相关因素和随机因素共同控制。  相似文献   

18.
Temporal and spatial dynamics of soil moisture are little known on karst hillslope with shallow soil in subtropical region. The objectives of this paper were (1) to investigate the temporal dynamics of soil moisture at depth of 0–10 cm under different land uses; and (2) to understand the relationship between mean and coefficient of variation (CV) of moisture contents on karst hillslope in northwest Guangxi, China. Soil moisture contents had a moderate variation (CV 17.5–30.3%) over an 8-month period and they had a significant difference among different land uses at the 0.01 level with a decreasing order: native scrubland > abandoned cropland and sloping cropland > economic forestland. There were higher mean and lower CV of moisture contents in rainy season than those in drought season. Mean and CV of moisture contents had a significant negative linear relationship except in abandoned cropland with higher soil and vegetation heterogeneity. This suggested that spatial variability of soil moisture within sampling sites would decrease when soils were wet and increase when soils were arid. Compared with rainy season, more soil samples may be needed and the interval for sampling should be shortened in drought season. Such information provided some insights to better understand the dynamics and variability of soil moisture at a larger scale in karst region of southwest China.  相似文献   

19.
Drastically disturbed soils caused by opencast mining can result in the severe loss of soil structure and increase in soil compactness. To assess the effects of mining activities on reconstructed soils and to track the changes in reclaimed soil properties, the variability of soil properties (soil particle distribution, penetration resistance (PR), pH, and total dissolved salt (TDS)) in the Shanxi Pingshuo Antaibao opencast coal-mine inner dump after dumping and before reclamation was analyzed using a geostatistics method, and the number of soil monitoring points after mined land reclamation was determined. Soil samples were equally collected at 78 sampling sites in the study area with an area of 0.44 km2. Soil particle distribution had moderate variability, except for silt content at the depth of 0–20 cm with a low variability and sand content at the depth of 20–40 cm with a high variability. The pH showed a low variability, and TDS had moderate variability at all depths. The variability of PR was high at the depth of 0–20 cm and moderate at the depth of 20–40 cm. There was no clear trend in the variance with increasing depth for the soil properties. Interpolation using kriging displayed a high heterogeneity of the reconstructed soil properties, and the spatial structure of the original landform was partially or completely destroyed. The root-mean-square error (RMSE) can be used to determine the number of sampling points for soil properties, and 40 is the ideal sampling number for the study site based on cross-validation.  相似文献   

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