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1.
A novel study on using geoelectrical resistivity, soil property, and hydrogeochemical analysis methods for delineating and mapping of heavy metal in aquifer system is presented in this paper. A total of 47 surveys of geoelectrical resistivity with Wenner configuration were conducted to determine the subsurface and the groundwater characteristics. The groundwater sample from 53 existing wells and 2 new wells has been analyzed to derive their water chemical content. The chemical analysis was done on the soil sample obtained from new two wells and from selected locations. The water and soil chemical analysis results from the new two wells were used as calibration in resistivity interpretation. The occurrence of heavy metal in aquifer system was expected to detect using the geoelectrical resistivity survey for the whole study area. The result of groundwater analysis shows that the groundwater sample contains a relatively low concentration of Fe (<?0.3 mg/L) elongating from the south up to the middle region. While in the middle and the northwestern, Fe concentration is relatively high (around 12 mg/L). Chemical analysis of soil sample shows that in the lower resistivity zone (<?18 Ωm), Al and Fe concentrations are comparatively high with an average of 68,000 and 40,000 mg/kg, respectively. Starting from the middle to the northwestern zone, the resistivity value appears to be low. It is definitely caused by higher Al and Fe concentration within the soil, and it is supported also by lower total anion content in the groundwater. While the resistivity value of more than 40 Ωm in aquifers is obtained in the zone which Fe concentration is relatively lower in the soil but not present in the groundwater. Correlation Fe concentration in the soil and Fe concentration in the groundwater sample shows the trend of positively linear; however, the Al concentration in soil has no correlation with Al content in groundwater. Finally, the probability of high heavy metal zone in the aquifer system is easily delineated by the distribution of geoelectrical resistivity presented in depth slice shapes which extend from the Boundary Range Composite Batholith in the north to the northwest.  相似文献   

2.
通过野外田间实验,研究了高量施肥处理、低量施肥处理、不施肥处理以及空白对照裸地等不同施肥处理条件下土壤水中各种形态氮的时空分布情况,探讨了地下水环境中氮素在不同施肥处理条件下的迁移转化特征.结果表明,在各种处理条件下,土壤水中硝态氮质量浓度随深度的增大而减小,而亚硝态氮与铵态氮质量浓度在剖面上的变化幅度较大,这种变化主要受土壤水氧化还原电位的影响.硝态氮随时间的变化趋势在4个处理区表现各异:在高量施肥处理区,各层位的土壤水中硝态氮质量浓度总体上呈增大趋势;在低量施肥处理区,硝态氮受作物生长和灌溉的影响呈拍岸浪式向下迁移;在不施肥处理区和空白对照裸地处理区,由于表层土壤中硝态氮背景值较高(0~30 cm处土壤硝态氮平均质量分数达到15.59 g/kg),灌溉水的下渗也导致硝态氮向下迁移.高量施肥处理区和空白对照裸地处理区土壤水的对比表明,施肥可促进0.6~1.5 m深处土壤的反硝化作用,从而增大这些层位土壤水中亚硝态氮和铵态氮的质量浓度.  相似文献   

3.
黑河流域不同生境植物水分来源及环境指示意义   总被引:6,自引:0,他引:6  
曾巧  马剑英 《冰川冻土》2013,35(1):148-155
选择黑河流域三种典型生境类型(绿洲、 绿洲-荒漠过渡带、 荒漠), 通过分析其不同植物木质部水分与其土壤潜在水源稳定氢(δD)和氧(δ18O)同位素组成, 研究了不同生境中植物的水分来源情况. 结果表明: 荒漠生境中植物倾向于利用深层土壤水(>160 cm); 绿洲-荒漠过渡带中沙蒿和沙拐枣主要利用20~40 cm层位的土壤水, 梭梭可能的利用层位是60~80 cm, 花棒可能利用100 cm左右的水分, 柽柳则利用120 cm以下的土壤水; 绿洲植物吸水层位多集中在0~100 cm, 其中, 假苇拂子茅可能水源是20 cm左右的土壤水, 玉米则为20~40 cm, 柽柳和杨树的吸水层位为60 cm左右, 棉花则是利用80 cm左右的水分. 稳定性同位素估测各生境植物水分来源的结果与其土壤含水量的结果一致, 同一生境中吸水层位相似的植物间存在水分来源竞争. 不同生境中植物水分来源的深浅存在递变, 从深到浅表现为荒漠>过渡带>绿洲, 不同生境同种植物也存在同样变化, 说明植物稳定氢氧同位素组成可以用来指示干旱区绿洲化、 荒漠化过程.  相似文献   

4.
The use of wastewater for irrigation in sandy soil increases the pollution risk of the soil and may infiltrate to the shallow groundwater aquifer. In such environment, some important parameters need to be obtained for monitoring the wastewater in the unsaturated zone over the aquifer. These parameters include clay content, heterogeneities of the upper soils, depth to the aquifer and the variations of groundwater quality. In the present work, the efficiency of DC resistivity method in forms of 1-D and 2-D measurements was studied for wastewater monitoring in the Gabal el Asfar farm, northeast of Cairo, Egypt. Forty-one Schlumberger soundings (VES) were performed then followed by three pole-dipole 2-D profiles along some considered regions within the area. The resistivity measurements were integrated with the boreholes, hydrogeological and hydrochemical (surface and groundwater samples) information to draw a clear picture for the subsurface conditions. The obtained results were presented as cross sections and 3-D visualization to trace the clay intercalations within the unsaturated zone. In addition, a vulnerability map was created using the obtained results from 1-D Schlumberger survey and confirmed with the 2-D resistivity profiling. The obtained results have shown that the 2-D resistivity imaging technique is a powerful tool for mapping the small-scale variability within the unsaturated zone and the wastewater infiltration. However, limitations of resistivity techniques were observed in the area with limited resistivity contrast such as thin clay layers with brackish water background. Under that condition, the measured pattern of resistivity distributions depends on the applied electrode array, electrode spacing and using the available geological information during the inversion process.  相似文献   

5.
Integrated geoelectrical resistivity, hydrochemical and soil property analysis methods were used to study the groundwater characteristics of sandy soils within a shallow aquifer in the agriculture area, Machang. A pilot test investigation was done prior to the main investigation. The area was divided into two sites. Test-Site 1 is non-fertilized; Test-Site 2 is the former regularly fertilized site. From the surface to depths of 75 cm, a lower average resistivity was obtained in Test-Site 2 (around 0.37 less than in Test-Site 1). The presence of nitrate and chloride contents in pore water reduced the resistivity values despite the low moisture content. The pH values for the whole area range from 4.11 to 6.88, indicating that the groundwater is moderately to slightly acidic. In the southern region, concentration of nitrate is considered to be high (>20 mg/l), while it is nearly zero in the northern region. In the south, the soil properties are similar. However, the geoelectrical model shows lower resistivity values (around 18 Ω m) at the sites with relatively high nitrate concentration in the groundwater (>20 mg/l). Conversely, the sites with low nitrate concentration reveal the resistivity values to be higher (>35 Ω m). Basement and groundwater potential maps are generated from the interpolation of an interpreted resistivity model. The areas that possibly have nitrate-contaminated groundwater have been mapped along with groundwater flow patterns. The northern part of the area has an east to west groundwater flow pattern, making it impossible for contaminated water from the southern region to enter, despite the northern area having a lower elevation.  相似文献   

6.
甘肃中部日光温室土壤剖面理化特征   总被引:1,自引:0,他引:1  
比较分析了甘肃中部白银市大田和10 a日光温室不同深度土壤理化性状,以探讨日光温室条件下土壤健康状况和养分变化情况.结果表明:长期使用木质素含量较低的有机肥和特殊的水热环境使温室土壤有机质分解加快,积累量减少,造成土壤缓冲能力降低.大量施肥使温室土壤全量和速效氮磷钾显著增加,表层轻度酸化,肥力水平升高,但可溶性盐分在表层聚集明显,引发土壤次生盐溃化.表层土壤速效氮磷富集,并出现了向下淋溶现象,地下水污染风险增加.建议增施C/N比较高的有机肥和微生物肥料,选择致盐能力弱的化肥品种,以维护土壤健康和蔬菜的安全高效生产.  相似文献   

7.
以黄土高原渭河流域西部黄土丘陵沟壑区为研究区域,建立了野外观测场地,对该区域浅层非饱和土体冻融过程及水热运移规律对气候作用的响应过程进行了研究与分析。结果表明:气温对地温及地温变幅的影响随深度增加而迅速衰减,地温振幅随深度增加按指数规律衰减且温度波的相位随深度的增加而滞后,地表下200 cm深度以内地温振幅受气温影响较大。该区域裸露地表土壤的最大冻结深度在20~50 cm之间。在土壤冻结过程中,深层土壤未冻水逐渐向冻结层运移,导致深层含水量逐渐减少。不同深度土壤冻结系数随土壤深度的增加而减小,融化系数则相反。地表下50 cm深度以内的土体含水量受降水影响波动显著。土壤含水量与温度呈相似变化,地温峰值出现的时间总滞后于土壤水分,其变异程度均随土壤深度的增加而减小。  相似文献   

8.
Our study at this natural analog site contributes to the evaluation of methods within a hierarchical monitoring concept suited for the control of CO2 degassing. It supports the development of an effective monitoring concept for geological CO2 storage sites—carbon capture and storage as one of the pillars of the European climate change efforts. This study presents results of comprehensive investigations along a 500-m long profile within the Hartou?ov (Czech Republic) natural CO2 degassing site and gives structural information about the subsurface and interaction processes in relation to parameters measured. Measurements of CO2 concentrations and investigation of the subsurface using electrical resistivity tomography and self-potential methods provide information about subsurface properties. For their successful application it is necessary to take seasonal variations (e.g., soil moisture, temperature, meteorological conditions) into consideration due to their influence on these parameters. Locations of high CO2 concentration in shallow depths are related to positive self-potential anomalies, low soil moistures and high resistivity distributions, as well as high δ13C values and increased radon concentrations. CO2 ascends from deep geological sources via preferential pathways and accumulates in coarser sediments. Repetition of measurements (which includes the effects of seasonal variations) revealed similar trends and allows us to identify a clear, prominent zone of anomalous values. Coarser unconsolidated sedimentary layers are beneficial for the accumulation of CO2 gas. The distribution of such shallow geological structures needs to be considered as a significant environmental risk potential whenever sudden degassing of large gas volumes occurs.  相似文献   

9.
基于高密度电法的天然边坡水分运移规律研究   总被引:1,自引:0,他引:1  
地下水是滑坡变形与失稳的重要影响因子,目前关于天然边坡水分运移过程的研究多借助传感器监测或数值模拟,但尚不能充分满足无扰、快捷的测量要求。针对该类问题,以天然边坡为研究对象,利用高密度电法结合时域反射技术,通过测量边坡土体含水率与电阻率,构建两者的对应关系,据此反演并分析边坡介质地下水的分布特征及迁移规律,验证高密度电法技术在探究天然边坡水分运移规律的有效性。现场试验结果显示:研究边坡土体含水率与电阻率呈明显对数关系;该边坡有效入渗或蒸发深度为2 m,大于该深度范围内,边坡土体含水率随深度增加逐渐减小;中雨强度下埋深为1.3~2.0 m范围内土体含水率激增的主要原因在于后缘裂缝的优势流补给;边坡高含水率(低电阻区)与低含水率(高电阻区)过渡区与后期滑坡滑动面位置高度吻合。  相似文献   

10.
In horizontally layered soils of different electrical properties, electrical potential distribution becomes complex and the obtained resistivity data may be limited in reflecting the actual soil profile. Thus the objective of this study was to identify the factors that affect resistivity measurement on the cone penetrometer and further investigate the sensitivity of measured resistivity to different types and concentrations of contaminants at the subsurface level. First, a theoretical resistivity equation was derived to provide a means of computing the geometric factor. The effective volume of measurement on the cone penetrometer was investigated and laboratory soil box tests verified the dominance of partially high resistivity regions within the effective volume of measurement over the apparent resistivity. Such effect was found to lead to possible discrepancies between the recorded resistivity data and the actual depth of measurement. Measurements on contaminated soil layers indicated that resistivity cones are efffective in delineating inorganic contaminants in soils of high water contents, and detecting NAPLs floating above the groundwater table provided that soils adjacent to the plume are not dry of water. Electronic supplementary material  The online version of this article (doi:) contains supplementary material, which is available to authorized users.  相似文献   

11.
Integrated hydrogeochemical and geophysical methods were used to study the salinity of groundwater aquifers along the coastal area of north Kelantan. For the hydrogeochemical investigation, analysis of major ion contents of the groundwater was conducted, and other chemical parameters such as pH and total dissolved solids were also determined. For the geophysical study, both geoelectrical resistivity soundings and reflection seismic surveys were conducted to determine the characteristics of the subsurface and groundwater contained within the aquifers. The pH values range from 6.2 to 6.8, indicating that the groundwater in the study area is slightly acidic. Low content of chloride suggests that the groundwater in the first aquifer is fresh, with an average concentration of about 15.8 mg/l and high geoelectrical resistivity (>45 ohm m). On the other hand, the groundwater in the second aquifer is brackish, with chloride concentration ranging from 500 mg/l to 3,600 mg/l and very low geoelectrical resistivity (<45 ohm m) as well as high concentration of total dissolved solids (>1,000 mg/l). The groundwater in the third aquifer is fresh, with chloride concentrations generally ranging from 2 mg/l to 210 mg/l and geoelectrical resistivity of greater than 45 ohm m. Fresh and saltwater interface in the first aquifer is generally located directly in the area of the coast, but, for the second aquifer, both hydrogeochemical and geoelectrical resistivity results indicate that the fresh water and saltwater interface is located as far as 6 km from the beach. The considerable chloride ion content initially suggests that the salinity of the groundwater in the second aquifer is probably caused by the intrusion of seawater. However, continuous monitoring of the chloride content of the second aquifer indicated no significant changes with time, from which it can be inferred that the salinity of the groundwater is not affected by seasonal seawater intrusion. Schoeller diagrams illustrate that sulphate concentrations of the groundwater of the second aquifer are relatively low compared to those of the recent seawater. Therefore, this result suggests that the brackish water in the second aquifer is probably from ancient seawater that was trapped within the sediments for a long period of time, rather than due to direct seawater intrusion.  相似文献   

12.
Ma  Bin  Liang  Xing  Liu  Shaohua  Jin  Menggui  Nimmo  John R.  Li  Jing 《Hydrogeology Journal》2017,25(3):675-688

Subsurface-water flow pathways in three different land-use areas (non-irrigated grassland, poplar forest, and irrigated arable land) in the central North China Plain were investigated using oxygen (18O) and hydrogen (2H) isotopes in samples of precipitation, soils, and groundwater. Soil water in the top 10 cm was significantly affected by both evaporation and infiltration. Water at 10–40 cm depth in the grassland and arable land, and 10–60 cm in poplar forest, showed a relatively short residence time, as a substantial proportion of antecedent soil water was mixed with a 92-mm storm infiltration event, whereas below those depths (down to 150 cm), depleted δ18O spikes suggested that some storm water bypassed the shallow soil layers. Significant differences, in soil-water content and δ18O values, within a small area, suggested that the proportion of immobile soil water and water flowing in subsurface pathways varies depending on local vegetation cover, soil characteristics and irrigation applications. Soil-water δ18O values revealed that preferential flow and diffuse flow coexist. Preferential flow was active within the root zone, independent of antecedent soil-water content, in both poplar forest and arable land, whereas diffuse flow was observed in grassland. The depleted δ18O spikes at 20–50 cm depth in the arable land suggested the infiltration of irrigation water during the dry season. Temporal isotopic variations in precipitation were subdued in the shallow groundwater, suggesting more complete mixing of different input waters in the unsaturated zone before reaching the shallow groundwater.

  相似文献   

13.
通过建立正演冻土模型,验证了将高密度电阻率法应用于冻土监测的可行性。对高密度电阻率法装置进行特殊处理,将其应用于对季节性冻土的监测,并进行了七个月份的连续监测。结果表明:高密度电阻率法在季节性冻土监测中可行;通过对实测数据进行反演处理,得到电阻率反演剖面,可以看出表层土壤在季节变化中有明显的结冻、解冻行为;并可估算出冬季冻土深度范围。  相似文献   

14.
基于吸力量测确定膨胀土活动带和裂隙深度   总被引:5,自引:2,他引:5  
采用M itchell公式和裂隙扩展深度方程两种吸力法确定安康地区膨胀土大气影响深度和裂隙开展深度。其一通过对安康地区两处天然边坡开挖观测井,利用张力计进行不同深度处吸力值的现场量测,根据M itchell提出公式计算大气影响深度;其二根据非饱和土抗拉强度公式,建立膨胀土裂隙扩展深度方程,利用基质吸力量测结果求其理论解。结果表明,安康地区膨胀土吸力变化曲线随深度增加变幅减小,呈波浪式推移。M itchell公式确定安康地区膨胀土的大气影响深度为3.35m以内,裂隙深度方程确定裂隙开展深度为3.063.14m。利用M itchell公式计算大气影响深度与膨胀土断裂理论公式确定的裂隙开展深度结果接近。  相似文献   

15.
In situ soil micro electrical resistivity measurements were carried out in a pilot plot within the Teaching and Research Farm of Ekiti State University with the aim of establishing relationships between such measurements, soil horizons, and textural classifications. The vertical electrical sounding (VES) technique was adopted for horizon mapping, while the horizontal profiling (HP) technique was used to determine the spatial distribution of in situ soil electrical resistivity of the topmost horizon. Twenty-five VES points were occupied with the Wenner electrode array and electrode spacing that was varied from 2 to 128 cm (0.02 to 1.28 m). The VES data were interpreted by partial curve matching and computer assisted 1-D forward modeling with the IPI2Win software. HP data were also acquired with the Wenner electrode array with a constant electrode separation of 8 cm and station interval of 1 m. Resistivity measurements were taken at 729 stations. The HP data were classified into resistivity-derived soil classes using a standard table. Eighty-one soil samples were collected from the topmost (0–3 cm) horizon and textural classification was derived from the particle size distributions. The resistivity range of values for the identified three layers was 38–590, 328–5222, and 393–900 Ω·m respectively. The average resistivities of the three layers were 263, 2554, and 703 Ω·m, with respective thicknesses of 2.85 cm, 45.52 cm, and infinite. The above resistivity regimes of the three horizons were attributed to responses from the O, A, and B soil horizons. The resistivity values of the O-horizon ranging from 210 to 750 Ω·m were classified as clayey sand while values greater than 750 Ω·m were classified as sand. The soil textural classifications obtained within the horizon were the sandy loam and loamy sand types. The cross-tabulation and spatial pattern comparison of resistivity-derived soil classes and textural classifications showed that whereas there existed some overlapping relationships, the sandy loam textural class had stronger association with the resistivity-derived clayey sand soil type, and the loamy sand textural class had stronger association with the more resistive sand soil type. This study therefore established that in situ soil electrical resistivity can be used for soil horizon mapping and textural classification.  相似文献   

16.
The study was conducted for the investigation of amount of radioactivity in the barren and cultivated soil of Bio saline Research Station in Pakka Anna, established by Nuclear Institute for Agriculture and Biology (NIAB) in 1990, 34 km. away from the city of Faisalabad, in the Punjab province of Pakistan. The studies were done on an area of about 100 hectares of two types of virgin and fertilized saline soils. The technique of gamma ray spectrometry was applied using HPGe (high purity germanium) gamma ray detector and a PC based MCA. Activity concentration levels due to 40K, 137Cs, 226Ra and 232Th were measured in 250 saline soil samples collected at a spacing of about 4 hectares at the depth level of 0–25 cm. with a step of 5 cm. depth. Activity concentrations ranges of the concerned radionuclides for both of the soils were as follows: 40K, for virgin and cultivated saline soil was 500–610.2 and Bq/kg 560.2–635.6 respectively; 137Cs, 3.57–3.63 and 1.98–5.15 Bq/kg 238U, 26.3–31.6 and 30.3–38.7 Bq/kg, and 232Th, 50.6–55.3 and 50.6–64.0 Bq/kg respectively. The absorbed dose rate in air lies in the region 63–73 nGyh-1 and 68–83 nGyh-1 for virgin and fertilized soils respectively. This indicates that this region lies in the area of higher radiation background, while comparing with the worlds’ average. The slightly higher value of dose in the fertilized farm may be due to the use of fertilizers for cultivation. Before the radiometric measurements, chemical analysis for concentration of Na, Ca and Mg was also carried out along with the measurement of electrical conductivity and pH of the soil samples.  相似文献   

17.
To study the mobility of polluting agents through the soil, the authors have designed an experiment that attempts to reproduce the behavior of heavy metals in the soil as a part of the non-saturated zone. This work was based on a controlled experiment using soil columns. A calcareous soil was amended with 30,000, 90,000 and 180,000 kg sludge/ha. Chromium, cadmium, and nickel were analyzed in soil samples at intervals of 15 cm depth. Leachates were collected at the bottom of the columns and the metals were analyzed. No important displacements of polluting metals were found in this soil.  相似文献   

18.
青藏高原玉树地区巴塘高寒草甸土壤温湿特征分析   总被引:6,自引:1,他引:5  
张娟  沙占江  徐维新 《冰川冻土》2015,37(3):635-642
在青藏高原腹地青海省玉树藏族自治州玉树县巴塘高寒草甸草场设立野外试验场, 进行土壤温、湿动态监测. 利用温、湿监测数据及同步气象数据资料, 采用对比分析及线性趋势等方法, 分析了巴塘高寒草甸日、年土壤温、湿变化状况. 结果表明: 土壤温度从10:00时左右开始上升, 至17:00-18:00时达到最高值, 然后开始下降, 在第二天9:00时左右到达最低; 土壤湿度在10:00时达到最低值, 在18:00时达到最大值, 随着土壤深度的增加, 土壤湿度逐渐降低. 土壤温、湿度在不同的季节表现出不同的变化趋势, 二个点不同土层表现出相对一致的变化, 随着土壤深度的增加, 土壤温、湿度逐渐降低; 随着与雪栅距离的增加, 土壤温、湿度的变化幅度减弱; 随着土壤深度的增加, 雪栅的影响也逐渐减小. 通过对土壤温、湿不同时期的特征分析, 5月中旬至8月中旬, 土壤湿度与土壤温度呈现相反的变化趋势, 而在其余时期土壤温湿变化趋势一致; 秋季向冬季转换时, 土壤温湿呈显著下降趋势, 而后土壤进入封冻时期; 冬季向春季转换时, 土壤温湿呈显著上升趋势, 土壤进入解冻时期. 冷季时, 25 cm土壤温度高于5 cm; 暖季时, 5 cm土壤温度高于25 cm.  相似文献   

19.
In this study, activity concentrations of 40K, 226Ra and 232Th in fertilized soil samples and different organic and inorganic fertilizers used in agricultural soil were analysed using gamma-ray spectrometry NaI (Tl) detector in order to access the implications of extended use of fertilizers in 2–3 years. The concentrations of radionuclides in some granular fertilizer brands were discovered to be higher for 40K, 226Ra and 232Th than those obtained in leafy fertilizer, animal fertilizer and fertilized soil samples. From the results, the highest overall mean concentrations of the specific activities of 40K, 226Ra and 232Th were 2301.8 (granular fertilizer), 42.5 (leafy fertilizer) and 327.1 (animal fertilizer) in Bq kg?1, while the lowest values observed in the specific activities of the same radionuclides were 357.7 (leafy fertilizer), 28.1 (animal fertilizer) and 36.5 (animal fertilizer). The radiological hazards of the radium equivalent (Raeq), normative value (NRN), outdoor radium equivalent (Raeq-out), external hazard index (H ext), internal hazard index (H in), dose rate, annual effective dose rate, activity utilization index and concentration accumulation index (CAI) and RaFZ due to the presence of these radionuclides in the investigated samples were calculated. Nevertheless, some of the fertilizer brands have higher concentration values than the recommended limit, and the values of hazard indices of fertilizer brands used in the selected teaching and research farms were within acceptable limit. Therefore, the fertilized soil samples in the studied farms are safe.  相似文献   

20.
利用在西藏纳木错流域念青唐古拉山北坡(NQN,海拔5 400 m)和西北保吉乡(BJ,海拔4 730 m)布设的两台带有四层土壤探头自动气象站(AWS)2005—2006年冬季10个月观测数据进行了统计分析。结果表明:观测期间NQN日及月平均气温均低于BJ,但变化幅度均小于BJ,土壤冻结时间比BJ长,两处的气温梯度为0.31℃/100 m。与安多月平均气温比较,推断NQN存在高山多年冻土。NQN大气—土壤及土壤内热传输速度快于BJ;冻结期内土壤中未冻水含量在0~-2.5℃时发生跃变且与土壤温度存在较好的线性关系;相同深度处NQN土未冻水含量较小。土壤温度日变化在0~40 cm深度处较明显,40cm深度以下变化很小,未冻水含量日变化在5 cm深度较明显,20 cm以下变化微弱。利用两观测点冻结深度(Df)与冻结积温(Tg)的良好相关建立模型,NQN为:Df n= 0.0016Tg+ 1.69,R2=0.9958;BJ为:Df b= 0.002 Tg+ 1.13,R2= 0.9424,并由此推断出两观测点最大季节冻结深度分别为1.69 m和1.13 m。  相似文献   

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