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1.
珠江上游典型小流域不同立地类型持水性能研究   总被引:1,自引:0,他引:1  
采用野外调查与室内分析测定相结合的方法,对珠江上游典型小流域7种立地类型植被、枯落物的持水能力及土壤蓄水能力进行研究。结果表明,不同立地类型的水源涵养能力差异显著,乔木林和梯田具有更好的水源涵养能力。7种立地类型的总蓄水量依次为云南松次生林(5478.46t/hm^2)、杉木次生林(5360.25t/hm^2)、云南松-桉树林(5356.73t/hm^2)、梯田(5351.00t/hm^2)、农坡地(4932.00t/hm^2)、荒草地(4713.58t/hm^2)、灌木林(4679.87t/hm^2),云南松次生林的总蓄水量分别高于杉木次生林、云南松-桉树林、梯田、农坡地、荒草地、灌木林2.21%、2.27%、2.38%、11.08%、16.23%、17.06%。  相似文献   

2.
对祁连山林草复合流域5种主要灌木林的水文生态功能进行了研究。结果表明:(1)5种灌木林林冠平均截留率的大小范围为6.98%~22.45%;(2)5种灌木枯落物的最大持水率均为自身重量的1.6~4.0倍,枯落物最大持水量和有效持水量分别为23.83~134.95 t/hm2和17.25~83.62 t/hm2;(3)土壤的最大持水量及有效持水量都随土壤深度的增加而不断下降,与土壤的总孔隙度和非毛管孔隙度的变化规律相一致;土壤的最大持水量和有效持水量分别为3 090.96~4 460.82 t/hm2和680.68~1 328.82 t/hm2;(4)各灌木林地土壤表层的稳渗率变化范围为8.88~141.67 mm/min,前30 min累计入渗量的变化幅度为338.25~4 718.34 mm;(5)5种灌木林地总蓄水量大小经综合评价依次为:吉拉柳灌丛>鲜黄小檗灌丛>箭叶锦鸡儿灌丛>金露梅灌丛>甘青锦鸡儿灌丛。  相似文献   

3.
祁连山东段山地典型灌丛枯落物及土壤水源涵养功能研究   总被引:2,自引:0,他引:2  
为探讨高寒地区灌丛枯落物层及土壤层的水源涵养功能,以祁连山东段6种典型灌丛的枯落物和土壤为研究对象,采用野外调查与室内浸泡相结合的方法,对枯落物及土壤水文特征进行了研究.结果表明:(1)6种灌丛枯落物的蓄积量范围为0.23~3.61 t·hm-2,大小排序为山生柳>硬叶柳>绣线菊>金露梅>头花杜鹃>千里香杜鹃.(2)枯...  相似文献   

4.
江西泰和县森林生态系统水源涵养功能评估   总被引:8,自引:0,他引:8  
森林生态系统综合水源涵养能力是林冠层、枯落物层和土壤层蓄水能力的总和。本文根据江西泰和县 2003 年森林资源二类调查,结合文献收集,从3 个作用层评估了泰和县森林生态系统的水源涵养量及其空间分布格局,比较了不同森林类型、林龄、海拔、坡度下的林冠降雨截留能力,枯落物最大持水量和土壤蓄水能力。结果表明,林冠层平均截留率为16.31%,枯落物层持水率为2.14%,土壤层蓄水率为81.55%,3 个层次总截留和蓄水量为1.41 亿m3。各种森林类型水源涵养量由大到小依次为:杉木林>马尾松林>湿地松林>阔叶林>毛竹林>灌木林> 混交林>经济林。幼林龄、中林龄、近熟林、成熟林和过熟林水源涵养贡献率分别为17.58%、65.39%、14.18%、 2.48%和0.37%,涵养水源能力随林龄的增加而增加。空间上,泰和县森林生态系统的综合水源涵养力表现出从东西两侧向中部递减的分布。不同立地条件下林分的合理经营与管理对于整个森林生态系统水源涵养功能的发挥具有重要的作用。  相似文献   

5.
南北盘江森林生态系统水源涵养功能评价   总被引:15,自引:1,他引:14  
刘璐璐  曹巍  邵全琴 《地理科学》2016,36(4):603-611
森林生态系统水源涵养功能是植被层、枯枝落叶层和土壤层对降雨进行再分配的复杂过程。运用综合蓄水能力法,基于森林资源二类调查数据,估算了贵州省南北盘江流域不同类型森林生态系统的林冠层截留降水量、枯落物持水量和土壤蓄水量,分析了流域尺度森林生态系统的水源涵养能力及其时空变化。结果表明:南北盘江流域森林涵养水源总量约6.13×108m3,单位面积水源涵养量629.85 t/hm2,森林水源涵养能力空间分布呈现东高西低的趋势;不同类型森林来说,阔叶林和灌木林对区域水源涵养总量的贡献率最大,而混交林的单位面积水源涵养量最高;不同林龄比较,幼龄林对区域水源涵养贡献率最高,达45.95%,但其单位面积水源涵养能力最差,过熟林的单位面积水源涵养能力最高;就坡位而言,平地和中坡森林对区域水源涵养总量的贡献率最大,山谷森林单位面积水源涵养能力最高,山脊森林单位面积涵养水源能力最低;近35 a来,随着生态工程的实施,森林生态系统水源涵养总能力以1 447.89×104m3/a速度持续提升,单位面积水源涵养量以每年5.33 t/hm2的速度稳步提高。  相似文献   

6.
亚热带6种老龄天然林及杉木人工林的枯落物持水性能   总被引:6,自引:0,他引:6  
通过对福建建瓯万木林自然保护区6种老龄天然林:木荷(Schima superba,SCS)、罗桴栲(Castanopsis fabri,CAF)、观光木(Tsoongiodendron odorum,TSO)、浙江桂(Cinnamo-mum chekiangense,CIC)、细柄阿丁枫(Altingia gracilipes,ALG)、米槠(Castanopsis carlesii,CAC)及杉木人工林(Cunninghamia lanceolata,CUL)枯落物现存量和持水特性的研究表明,各林分枯落物现存量分别为木荷7.22 t.hm-2、细柄阿丁枫6.79 t.hm-2、浙江桂6.70 t.hm-2、观光木6.66 t.hm-2、罗桴栲6.57 t.hm-2、米槠5.96 t.hm-2和杉木人工林4.82 t.hm-2.最大持水率平均值是人工林(207.98%)天然林(179.38%).各林分最大持水量分别为木荷13.33t.hm-2、细柄阿丁枫13.32 t.hm-2、观光木13.18 t.hm-2、罗桴栲10.84 t.hm-2、浙江桂10.52t.hm-2、米槠10.30 t.hm-2和杉木人工林9.95 t.hm-2.枯落物平均现存量和平均最大持水量均为天然林(6.65 t.hm-2,11.95 t.hm-2)大于杉木人工林(4.82 t.hm-2,9.95t.hm-2).影响林地枯落物持水量的主要因素是枯落物现存量.各林分主要树种半分解层的枯落物现存量及最大持水量均大于未分解层.  相似文献   

7.
祁连山西水林区亚高山灌丛水文功能的综合评价   总被引:2,自引:0,他引:2  
在祁连山西水林区排露沟小流域,与2014年生长季(5~9月)测定5种主要灌丛的冠层、枯枝落叶层、土壤层的多种水文作用,并在此进行了综合评价。结果表明:各灌丛类型的水文作用差别明显,冠层截留率变化在24.54%~52.95%,从大到小依次为鲜黄小檗吉拉柳金露梅箭叶锦鸡儿甘青锦鸡儿;枯落物层的最大持水量变化在50.40~152.50 t·hm-2,有效持水量变化在37.47~96.66 t·hm-2,其中吉拉柳的最大,甘青锦鸡儿最小;0~60 cm土壤层的孔隙度、持水量、入渗速率等水文特性随灌丛样地所处海拔降低而减小,依次为吉拉柳箭叶锦鸡儿金露梅鲜黄小檗甘青锦鸡儿;不同灌丛的生长季径流量变化在12.60~143.93 mm,径流系数变化在3.16%~26.62%,从大到小依次为吉拉柳箭叶锦鸡儿金露梅甘青锦鸡儿鲜黄小檗;由于地表覆盖度较好,土壤侵蚀量均很低,但仍有灌丛类型的明显差别,变化在2.46~19.15 kg·hm-2,从小到大依次为吉拉柳箭叶锦鸡儿鲜黄小檗金露梅甘青锦鸡儿。从各种水文作用的综合评价来看,由大到小依次为吉拉柳箭叶锦鸡儿鲜黄小檗金露梅甘青锦鸡儿。研究结果对深入认识和全面评价祁连山区灌丛的水文作用及科学指导当地的植被建设和水资源管理提供了科学依据。  相似文献   

8.
乌兰布和沙漠白刺灌丛土壤水分及物理特性的研究   总被引:8,自引:3,他引:5  
以乌兰布和沙漠流动沙地白刺灌丛土壤为研究对象,在灌丛阴面、阳面垂直方向挖取100cm深土壤剖面,对土壤水分及其土壤物理特性进行研究。结果表明,乌兰布和沙漠白刺灌丛阴阳面土壤水分具有季节性变化。6~9月阳面沙土含水量呈下降趋势(1.10%~0.72%),而阴面呈上升趋势(1.05%~2.90%)。阳面各土层贮水量0~20cm为1.22~4.66mm、20~60cm为3.90~6.37mm、60~100cm为5.55~7.86mm,而阴面:0~20cm为4.38~4.96mm、20~60cm为16.30~17.08mm、60~100cm为11.44~17.07mm。阳面除表层外,其他各层土壤孔隙度、田间持水量、最大持水量均低于阴面,阳面各层的土壤容重除了表层其它层均高于阴面。  相似文献   

9.
皖江自然湿地土壤碳密度及其开垦为农田后的变化   总被引:7,自引:1,他引:6  
于2005年分别采集了安徽沿江4个淡水湖泊的自然湿地及其周边围垦农田的代表性土壤剖面样品,测定了总有机碳含量,讨论了天然淡水湿地有机碳密度与深度分布特征及其开垦为农田后的变化。结果显示,湿地表层(0~30cm)和全剖面(0~100cm)中的碳密度分别为42.5~57.4t/hm^2和81.5~91.6t/hm^2;而农田则分别为22.4~48.4t/hm^2和41.4~76.5t/hm^2。湿地开垦为农田后,土壤表层和全剖面的土壤有机碳含量明显降低,且有机碳含量的变异性增大。表明湿地开垦为农田后,其碳库失去稳定性。但是,开垦的旱地土壤的有机碳含量和碳密度显著低于开垦的稻田,故湿地开垦为旱地更不利于湿地碳库保护。因而,将湿地垦殖为水田是相对较有利于湿地碳库保护的人为土地利用方式。湿地开垦的碳库损失可能是土壤的大气CO2源效应的主要途径。  相似文献   

10.
森林植被的降雨再分配过程是影响区域水资源利用效率以及生态系统生产力的重要因素。于2018年5-8月观测27 a生樟子松人工林降雨再分配特征,探究降雨再分配的比例变化对林地水分平衡的影响机制,分析、量化林内穿透雨、林冠截留、树干径流、枯落物层入渗部分产生的阈值。结果表明:樟子松林内穿透雨量占同期降雨量的86.45%,穿透雨量随着降雨量的增加呈线性增加趋势,降雨量>0.63 mm时产生穿透雨;林冠截留量和树干径流量分别占降雨量的10.44%和2.54%,树干径流量与降雨量之间呈正线性关系,降雨量>1.19 mm时,产生树干径流;枯落物层截留量占降雨量的12.37%,枯落物层截留量随着降雨量的增加而增加;枯落物在0~24 h内平均吸水速率为1.83 mm·h-1,其最大持水量为3.23 mm,并且枯落物层截留量占其最大持水量的42.37%。从林冠到枯落物各层截留总量为25.35%,其中有74.65%的雨水最后从枯落物层入渗进入地表,用于补充土壤水分、下渗或补充地下水。半干旱沙地樟子松林可以有效地发挥截留降雨、贮存雨水的功能,继而改善沙地土壤含水量和地下水的有效补给量,提高森林生态系统生产力。  相似文献   

11.
Shi  Xiaoli  Du  Chenliang  Guo  Xudong  Shi  Wenjiao 《地理学报(英文版)》2021,31(1):69-90
Water retention is important in forest ecosystem services.The heterogeneity analysis of water-retention capacity and its influencing factors is of great significance for the construction of water-retention functional areas,restoration of vegetation,and the protection of forest ecosystems in the Beijing-Tianjin-Hebei region.A total of 1366 records concerning water-retention capacity in the canopy layer,litter layer,and soil layer of forest ecosystem in this region were obtained from 193 literature published from 1980 to 2017.The influencing factors of water-retention capacity in each layer were analyzed,and path analysis was used to investigate the contribution of the factors to the water-retention capacity of the three layers.The results showed that mixed forests had the highest water-retention capacity,followed by broad-leaved forests,coniferous forests,and shrub forests.In addition,no matter the forest type,the ranking of the water-retention capacity was soil layer,canopy layer,and litter layer from high to low.The main influencing factors of water-retention capacity in forest canopy were leaf area index and maximum daily precipitation(R2=0.49),and the influencing coeffi-cients were 0.34 and 0.30,respectively.The main influencing factors of water-retention ca-pacity in the litter layer were semi-decomposed litter(R2=0.51),and the influencing coefficient was 0.51.The main influencing factors of water-retention capacity in the soil layer were non-capillary porosity and soil depth(R2=0.61),the influencing coefficients were 0.60 and 0.38, respectively.This study verifies the simulation of the water balance model or inversion of remote sensing of the water-retention capacity at the site scale,and provides scientific basis for further study of the impact of global change on water retention.  相似文献   

12.
用波谱分析法的研究结果表明,当地旱雨季土壤含水量差异较大:旱季土壤含水量<凋萎湿度,土壤水分严重亏缺。因受降水量的影响,土壤含水量呈周期为1a的波动变化。用谐波分析法还计算了各层次土壤含水量的谐波展开式,由此可预报土壤含水量变化趋势。  相似文献   

13.
The capacity of soil and water conservation measures, defined as the maximum quantity of suitable soil and water conservation measures contained in a region, were determined for the Loess Plateau based on zones suitable for establishing terraced fields, forestland and grassland with the support of geographic information system (GIS) software. The minimum possible soil erosion modulus and actual soil erosion modulus in 2010 were calculated using the revised universal soil loss equation (RUSLE), and the ratio of the minimum possible soil erosion modulus under the capacity of soil and water conservation measures to the actual soil erosion modulus was defined as the soil erosion control degree. The control potential of soil erosion and water loss in the Loess Plateau was studied using this concept. Results showed that the actual soil erosion modulus was 3355 t?km-2?a-1, the minimum possible soil erosion modulus was 1921 t?km-2?a-1, and the soil erosion control degree was 0.57 (medium level) in the Loess Plateau in 2010. In terms of zoning, the control degree was relatively high in the river valley-plain area, soil-rocky mountainous area, and windy-sandy area, but relatively low in the soil-rocky hilly-forested area, hilly-gully area and plateau-gully area. The rate of erosion areas with a soil erosion modulus of less than 1000 t?km-2?a-1 increased from 50.48% to 57.71%, forest and grass coverage rose from 56.74% to 69.15%, rate of terraced fields increased from 4.36% to 19.03%, and per capita grain available rose from 418 kg?a-1 to 459 kg?a-1 under the capacity of soil and water conservation measures compared with actual conditions. These research results are of some guiding significance for soil and water loss control in the Loess Plateau.  相似文献   

14.
湿地土壤水源涵养功能研究进展   总被引:4,自引:0,他引:4  
湿地土壤依靠孔隙而发挥水源涵养功能,广义的湿地土壤水源涵养功能是指湿地土壤内多个水文过程及其水文效应的综合表现,而狭义的湿地土壤水源涵养功能仅指湿地土壤蓄水。主要从土壤水源涵养的机制、计算方法、土壤蓄水量及其对径流调节、影响土壤蓄水的因素等几个方面对当前湿地土壤水源涵养功能的研究进行了综述。土壤涵养水源是由于水分能在土壤孔隙中的存储、持留和运转。从力学的角度看,水分主要依赖于吸附力、毛管力和重力作用而持留。湿地土壤蓄水能力的3种计算方法各有优缺点,计算时应结合湿地水文波动的实际情况而选择。不同类型湿地的土壤蓄水能力因土壤本身性质而异。湿地土壤蓄水能力受土壤粒径组成、结构、孔隙、有机质和含水量等因素的影响,同时受自然及人为因素的调控。针对当前湿地土壤蓄水能力研究的不足,指出应加强对湿地蓄水能力的定量研究及计算方法的探讨;同时,土地利用对湿地土壤水源涵养功能影响的研究也需进一步加强。  相似文献   

15.
Coastal sand dune ecosystems generally have infertile soil with low water-holding capacity and high salinity. However, many plant species have adapted to the harsh sand environment along the southeastern coast of China. Studying the microbial biomass in such an ecosystem can improve our understanding of the roles that microbes play in soil fertility and nutrient cycling. We investigated the differences in soil microbial biomass carbon (MBC) and nitrogen (MBN) contents and their seasonal dynamics in five forest types (a secondary forest and plantations of Casuarinas, Pine, Acacia, and Eucalyptus). The results indicated that the seasonal variations of soil MBC and MBN contents in all five forest stands were higher in spring and winter, but lower in summer and autumn. The MBC content was lower in the Casuarinas plantation than in the other plantations in the same soil layer. However, no significant differences were observed in MBN contents among the different forest types. The MBC and MBN concentrations were positively correlated with soil moisture, but negatively correlated with soil temperature. The MBC and MBN contents also decreased with increasing soil depth. Across all soil layers, secondary forest had the highest MBC and MBN concentrations. Our study also showed that the MBC and MBN contents were positively affected by total soil carbon (TC), pH, and litter N content, but were negatively impacted by soil bulk density and litter C content. Moreover, the MBN content was positively correlated with root N content. In summary, environmental factors and the differences in litter and fine roots, soil nutrient contents, as well as the soil physical and chemical properties caused by different tree species collectively affected the concentrations of the soil MBC and MBN.  相似文献   

16.
干旱沙漠地区春小麦的水分与氮肥利用效率研究   总被引:7,自引:4,他引:3  
在沙坡头试验站养分循环池进行的水肥正交试验中, 研究了不同水肥条件对小麦生长和产量形成的影响及其水肥利用效率。试验结果表明, 在设计水肥条件下, 肥料因素对小麦生长和产量形成的影响大于水分因素; 中高水肥条件下, 水肥协调有利于小麦生长和获得高产。灌浆期植株上部有效叶面积的大小和维持时间与经济产量的形成有很显著的正线性相关。该地区小麦水分利用效率较高的适宜土壤水分范围在田间持水量的40%左右, 适宜的肥料(N肥)经济施用量为300kg·hm-2左右, 目标产量为7.0t·hm-2。  相似文献   

17.
基于TVDI的黄土高原地表干燥度与土地利用的关系研究   总被引:5,自引:1,他引:5  
基于地表温度和植被指数的经验关系构建地表干燥度指数。该指数对Ts/NDVI特征空间的生态特征的解释,对土壤和作物的水分含量具有一定的指示意义。通过对地表干燥度进行分级,分析陕北黄土高原区地表含水状况的空间差异,进而结合该地区的主要土地利用类型,探讨各类型的干燥度情况,并对不同地表干燥度条件下各土地利用类型对地表水分的保持能力差异进行分析,结果表明,在该区相对湿润环境中,林地以及疏林地的水分保持能力优于农地和草地,但在干旱的环境下,草地则好于林地及疏林地。建议根据不同土地利用类型的保水能力,在湿润区域增加林地的面积比例,在偏湿润区域增加疏林地的面积,在干旱区域增加草地的比例,减少农地开垦。  相似文献   

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