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1.
模拟降雨下麻栎林地表径流和壤中流及氮素流失特征   总被引:7,自引:0,他引:7  
王荣嘉  高鹏  李成  刘潘伟  孙鉴妮  刘晴 《生态学报》2019,39(8):2732-2740
为探讨人工林地地表径流和壤中流产流机制及其氮素流失规律,选择鲁中南山区典型林地麻栎林为研究对象,采用模拟降雨试验方法,研究麻栎林与荒草地的产流及氮素流失特征。结果表明:(1)麻栎林的总产流量、地表径流量、壤中流量分别是荒草地的80.5%、61.4%、162.2%。地表径流产流呈不断增加且趋于稳定的特征;壤中流产流时间明显滞后于地表径流的,产流过程径流量波动比较小,保持相对稳定。地表径流量和壤中流量随时间的变化过程可分别通过对数函数和多项式函数进行模拟。(2)麻栎林的全氮总流失浓度、地表径流全氮流失浓度、壤中流全氮流失浓度为11.5、13.1、8.9 mg/L,分别比荒草地低19.0%、13.8%、8.2%。地表径流全氮流失浓度一般前期较大,而后递减并趋于稳定;壤中流全氮流失浓度在整个产流过程中保持相对稳定。地表径流和壤中流全氮流失浓度随降雨时间的变化过程可分别通过幂函数和多项式函数进行模拟。(3)在整个降雨产流过程中,麻栎林和荒草地的地表径流量分别占总产流量的61.8%和81.1%,麻栎林和荒草地的地表径流全氮流失量分别占全氮总流失量的70.4%和87.0%,径流、氮素的流失都以地表径流为主。与荒草地相比,麻栎林具有明显增加壤中流,减少氮素流失效果。  相似文献   

2.
安娟  郑粉莉  李桂芳  王彬 《生态学报》2011,31(24):7579-7590
目前,土壤水分饱和和壤中流条件下,雨滴打击对养分流失的影响尚不清楚.通过3个近地表土壤水文条件(自由入渗、土壤水分饱和与壤中流)下,土槽上方架设与不架设尼龙纱网模拟降雨对比试验,研究雨滴打击对黑土坡面侵蚀过程及NO3-N、NH4-N与PO4-P随径流和侵蚀泥沙迁移的影响.结果表明,纱网覆盖消除雨滴打击后坡面侵蚀量和泥沙浓度分别减少59.4%-71.6%和57.3% -73.0%,不同水文条件下减少量的排序为:自由入渗>壤中流>土壤水分饱和.消除雨滴打击后养分随径流流失的减少仅在自由入渗条件下体现较明显,该水文条件下NO3-N、NH4-N与PO4-P流失分别减少33.3%、23.1%和40.7%;3种水文条件下,消除雨滴打击均明显减少养分随泥沙的流失,其中自由人渗条件下减少效果最明显,该水文条件下,NO3-N和NH4-N流失分别减少20.9% -54.9%和25.0% -62.3%,而PO4-P流失减少在74.6%以上.雨滴打击增大了NO3-N的淋失,但对NH4-N与PO4-P的淋失几乎无影响.消除雨滴打击后,自由人渗条件下养分的等效径流迁移深度减少26.7%-42.6%,而土壤水分饱和与壤中流条件下基本无变化.以上研究结果为有效防治坡面土壤侵蚀和农业非点源污染提供科学理论依据,尤其是在壤中流出现的地方.  相似文献   

3.
长白山阔叶红松林降雨截留量的估算   总被引:7,自引:1,他引:6  
林冠截留降雨过程是森林流域水分循环的重要组成部分,以往的研究多为1次或多次降雨量与截留量的关系,很少考虑雨强和树木特征.文中利用林冠截留降雨半经验半理论模型,以雨强和叶面积指数为模型输入,林冠湿润程度为参数,结合Penman-Monteith公式,有效地模拟了长白山阔叶红松林次降雨的截留过程和2004年5~9月的林冠截留总量.结果表明,研究期间的林冠截留总量为39.96 mm,占降雨总量的10.2%,与实测资料吻合.根据模拟结果,探讨了不同时间尺度上截留量与降雨量之间的关系,随着时间尺度的增大,截留量与降雨量的相关关系趋于明显.  相似文献   

4.
根据岷江上游杂谷脑河流域典型的高山峡谷地区主要水文特点,选择通用性较强的水文过程模式,构建高山峡谷地区森林流域分布式降雨-径流过程模型,避免过多复杂的区域性模型参数率定,保证模型在相似地区的可移植性;并选择杂谷脑水文站上游地区进行降雨-径流过程模拟,得到1999年和2000年模拟时段长度为1000 h的两个径流过程,对模拟与实测的径流过程、累积径流量、洪峰流量与峰现时间等进行比较,其拟合效果较好.该模型结构简单,引入的经验参数较少,可推广应用到其它尺度流域.  相似文献   

5.
常见生物生长模型的时差性分析及其应用   总被引:1,自引:0,他引:1  
生长曲线是估计生物年龄的重要方法之一.在实际工作中,有时会出现对生物年龄的计算起点时间存在着一定差异的情形.例如在一些有关哺乳动物生长的研究中,年龄有出生年龄和受精年龄的区分.这种年龄计算时间上的差异可能导致一些生物生长模型出现不同的拟合结果.本文分析了4种常见的三参数生长模型(Spillman、Logistic、Gompertz和Bertalanffy)的时差性特征.结果表明,这4个方程均具有时差不变性,即无论时间(年龄)起点如何,它们对生物生长数据的拟合结果都一致.文中还引用了小毛足鼠体质量生长数据,采用两种年龄进行了实例比较.  相似文献   

6.
以黑河中游7种典型土地利用方式(水田、旱地、中覆盖度草地、盐碱地、裸土地、戈壁和沙地)为对象,分析土壤有机碳含量及其组分的关系.结果表明:在0 ~100 cm土壤中,随土层深度增加,土壤总有机碳(TOC)、活性有机碳(AOC)和非活性有机碳(NOC)含量逐渐降低.中覆盖度草地、盐碱地、裸土地、戈壁、沙地、水田和旱地中的TOC、AOC、NOC含量不同,土地利用方式的改变将引起土壤有机碳的增减,水田耕作是提高绿洲土壤有机碳的有效途径.当土地利用方式变化后,NOC对TOC含量的贡献大于AOC.同一种土地利用类型中,随TOC含量的增加,AOC、NOC含量也呈增加趋势,且NOC的增幅高于AOC.AOC、NOC变化趋势线的交叉点对应的TOC含量可作为土壤中TOC易积累或易损失的分界点,AOC、NOC的饱和容量可通过其变化趋势线来确定.  相似文献   

7.
隧道工程对喀斯特槽谷区坡面产流及土壤侵蚀的影响   总被引:1,自引:0,他引:1  
隧道工程导致地下水系统被破坏,但由此可能带来的土壤侵蚀却很少被涉猎。在重庆观音峡背斜隧道密集影响区和非隧道影响区的两个相邻小流域建立径流小区,基于高分辨率水文数据结合δD-H2O、δ18O-H2O同位素,对比两径流小区坡面、壤中产流规律和地表侵蚀产沙特征。结果表明,观测年内隧道影响区坡面产流对降雨响应更快,地表径流系数0.027,侵蚀模数16.68 t km-2 a-1;非隧道影响区地表径流系数0.013,侵蚀模数7.73 t km-2 a-1。相反,隧道影响区产生的壤中流产流系数仅为非隧道影响区的31%。对一场强降雨监测发现,两径流小区坡面流中δD-H2O、δ18O-H2O相似,但壤中流中却差异较大。用氢氧同位素混合模型分析得出隧道影响区坡面流、壤中流中降雨贡献率均大于非隧道影响区,侵蚀能力更强。这与土壤含水率减小和土壤结构的差异有关:隧道影响区土壤中粘粒的含量高于非隧道影响区,且出现上粘下松的异常土壤结构,使土壤下渗能力降低,地表径流增加。较小的土壤含水率与土壤粒径也有利于土壤搬运。研究为隧道工程导致的喀斯特区水土流失研究提供了基础数据,为喀斯特区水土流失防治和石漠化治理研究提供了新视角。  相似文献   

8.
林火干扰对森林生态系统土壤有机碳的影响研究进展   总被引:4,自引:0,他引:4  
林火干扰是森林生态系统特殊而重要的生态因子,可改变生态系统的养分循环与能量传递。研究林火干扰对森林生态系统土壤有机碳的影响,有助于理解森林生态系统中土壤碳固持和碳循环过程,为制定科学合理的旨在减缓全球变化的林火管理策略具有重要意义。从4个方面阐述了林火干扰对森林生态系统土壤有机碳的影响及内在机制:分别从大尺度和小尺度两个方面阐述了林火干扰对土壤有机碳的影响及对森林生态系统碳循环与碳平衡的作用机制;探讨了不同林火干扰类型和林火干扰强度下,土壤活性有机碳对林火干扰的响应机制;阐明了林火干扰对土壤惰性有机碳的影响及作用机制;论述了林火干扰主要通过改变土壤有机碳的输入和输出过程进而影响土壤有机碳的稳定性及内在机制。最后提出了提高林火干扰对森林生态系统土壤有机碳影响定量化研究的4种路径选择:(1)全面比较研究不同林火干扰类型对土壤有机碳循环及其碳素再分配过程的功能特征;(2)进一步阐明林火干扰通过改变植被结构进而影响土壤生物群落结构,剖析土壤碳库循环的内在机制;(3)完善不同时空尺度下林火干扰对森林生态系统土壤碳库周转过程的定量化研究;(4)加强不同林火干扰类型土壤碳库稳定性差异的研究。  相似文献   

9.
以冬闲-双季稻种植模式为对照(CK),分析了黑麦草-双季稻(Ry)、紫云英-双季稻(Mv)、马铃薯-双季稻(Po)和油菜-双季稻(Ra)5种不同种植模式下冬季覆盖作物秸秆还田后对0~5、5~10、10~20 cm土壤有机碳、活性有机碳、碳库管理指数和有机碳储量的影响.结果表明:与CK处理相比,黑麦草、紫云英、马铃薯和油菜秸秆还田处理均提高了稻田0~5、5~10、10~20 cm土壤总有机碳和活性有机碳含量,其中Po处理最高.冬季覆盖作物秸秆还田均提高了稻田不同层次土壤的碳库活度、碳库活度指数、碳库指数和土壤碳库管理指数,其大小顺序均表现为Po>Mv>Ry>Ra>CK.不同冬季覆盖作物秸秆还田处理与CK处理相比均有利于提高稻田不同层次土壤有机碳储量,其中以紫云英秸秆还田的效果最好,黑麦草和马铃薯次之;各处理稻田土壤有机碳储量均随土壤深度的增加而递增.  相似文献   

10.
唐晓芬  王云琦  王玉杰  郭平  胡波  孙素琪 《生态学报》2014,34(23):7047-7056
通过选取缙云山针阔混交林(马尾松×四川大头茶)和常绿阔叶林(四川大头茶×四川山矾)内2个标准径流小区,结合野外观测和室内分析研究降雨及径流的化学性质径流盐基离子变化特征,为该地区水环境保护提供依据。结果表明:1)针阔混交林与常绿阔叶林中p H值变化趋势相同均为:地表径流壤中流大气降水。p H与降雨量之间存在显著相关关系。2)在大气降雨-地表径流-壤中流过程中,NH+4的地表径流及壤中流输出总量小于降雨输入量,表明了土壤对NH+4有一定的吸附持留能力。其他盐基离子径流输出量均高于大气降雨的输入量,且主要以壤中流输出为主,元素发生流失。从盐基离子总量来看,径流输出量均增加:针阔混交林(2.86 kg/hm2),常绿阔叶林(2.47 kg/hm2),说明在两种林分内养分均流失。(3)K+、Ca2+、Mg2+和Na+盐基离子输出量与径流量之间存在相关关系,随着径流量的增大径流输出量增加。而NH+4输出量与径流量之间的相关性不明显,说明了NH+4的变化除受径流量的影响外,可能还受微生物、季节等其他因素的影响。  相似文献   

11.
河流两侧坡面非对称采伐森林对流域暴雨-径流过程的影响   总被引:13,自引:4,他引:9  
通过模拟实验比较了河流两侧坡面采伐与非采伐森林对流域暴雨径流的影响 ,并建立了模型 .结果表明 ,森林坡面地表径流的出流时间和峰现时间均比采伐坡面迟缓 ,径流历时延长 ,峰值流量和地表径流总量较低 .坡度越大 ,影响越显著 .当雨强 1.98mm·min-1,降雨量 10 8.8mm时 ,15°两侧森林坡面比其采伐坡面峰值流量削减 5 % ,径流总量降低 4% .  相似文献   

12.
西南喀斯特白云岩坡地土壤-表层岩溶带结构及水文特征   总被引:1,自引:0,他引:1  
表层岩溶带是喀斯特关键带的核心区域,具有重要的水文调蓄功能,但岩溶发育程度对表层岩溶带水文特征的影响还不明晰.本研究采用地球物理勘探和水文地质钻探技术,结合水分和水位动态监测,量化坡地岩溶发育和水文特征,解析土壤-表层岩溶带对降雨的响应规律.结果 表明:地球物理勘探可以较好地运用到岩溶区关键带结构的探测,坡地土壤和表层...  相似文献   

13.
A model of the pulmonary airways was used to study three single-breath indices of gas mixing, dead space (VD), slope of the alveolar plateau, and alveolar mixing inefficiency (AMI). In the model, discrete elements of airway volume were represented by nodes. Using a finite difference technique the differential equation for simultaneous convection and diffusion was solved for the nodal network. Conducting airways and respiratory bronchioles were modeled symmetrically, but alveolar ducts asymmetrically, permitting interaction between convection and diffusion. VD, alveolar slope, and AMI increased with increasing flow. Similar trends were seen with inspired volume, although slope decreased at high inspired volumes with constant flow. VD was affected most by inspiratory flow and AMI and alveolar slope by expiratory time. VD fell approximately exponentially with time of breath holding. Eight different breathing patterns were compared. They had a small effect on alveolar slope and AMI and a greater effect on VD. The model shows how series and parallel inhomogeneity occur together and interact in asymmetrical systems: the old argument as to which is the more important should be abandoned.  相似文献   

14.
以高寒半干旱区青海湖流域季节性冻土为研究对象,通过调查采样和室内分析,研究了坡向和坡位对不同深度土壤有机碳含量分布的影响。结果表明:阴、阳坡有机碳含量均随土壤深度增加而下降,但阳坡下降的幅度(64%)明显高于阴坡(44%)。阴坡土壤有机碳平均含量为81.99 g/kg,大于阳坡(61.84 g/kg);不同坡位,土壤有机碳分布特征因坡向而异,其中阴坡土壤有机碳平均含量表现为坡下(89.60 g/kg)>坡中(86.52 g/kg)>坡上(69.87 g/kg),而阳坡土壤有机碳平均含量表现为坡上(65.71 g/kg)>坡下(61.42 g/kg)>坡中(58.39 g/kg)。此外,坡位对不同深度土壤有机碳的影响程度在不同坡向也存在差异。阴坡坡位因子对深层土壤有机碳影响显著,而阳坡坡位因子对浅层土壤有机碳影响显著。一般线性模型结果表明,坡面土壤有机碳含量主要受土层和坡向的影响,可解释74.52%的变异性。  相似文献   

15.
Methylated and total Hg, and TOC concentrations were measured in precipitation and runoff in a first order Precambrian Shield watershed, and in precipitation, throughfall, shallow groundwater and runoff in a zero Precambrian Shield watershed. Plots dominated by open lichen-covered bedrock and another containing small patches of conifer forest and thin discontinuous surficial deposits were monitored within the zero order catchment. Methyl (3–10 fold) and non-methyl (1.4–2.8 fold) Hg concentrations changed irregularly during rainfall and snowmelt runoff events in all catchments. Temporal patterns of Hg concentration in runoff included flushing and subsequent dilution as well as peak concentrations coinciding with peak or recession flow. Mercury export was highest from lichen-covered bedrock surfaces as a result of high runoff yields and minimal opportunity for physical retention and in the case of MeHg demethylation. Forest canopy and lichen/bedrock surfaces were often net sources for Hg while forest soils were mostly sinks. However, upland soils undergoing periodic reducing conditions appear to be sites for the in situ production of MeHg.  相似文献   

16.
Seasonal influences and the role of floodplain forest as source or sink of organic matter is relatively unknown for 3arge, temperate rivers. Discharge and fine-particulate (FPOC), dissolved (DOC), and total organic carbon concentrations (TOC) were measured during five sampling periods from November, 1984, to August, 1985, above and below the floodplain-forested area (1054 ha) of Burlington Island in navigation Pool 19, upper Mississippi River. Sampling coincided with autumnal leaf fall of the floodplain forest, peak flood and falling spring flood, and low-flow conditions prior to and during phytoplankton bloom. Greatest TOC transport occurred during peak flood (8.84 × 106 Kg/day) and leaf fall (7.79 × 106 Kg/day). Peak flood transport was dominated by FPOC associated with flushing of material from upland areas. Transport during autumnal leaf fall was predominantly DOC attributed to litter leaching. Seasonal DOC loads generally increased downstream except during the phytoplankton bloom when a decrease was associated with increased microbial metabolic activity. Downstream decline in FPOC and increasing DOC loads during peak flood characterized the mechanism of deposition and processing of FPOC on the floodplain. FPOC concentration was significantly correlated to discharge and DOC concentrations were higher than FPOC except for peak flood. Significant downstream changes in TOC load suggests the importance of riparian vegetation as an influence on organic matter transport in large rivers.  相似文献   

17.
A nonlinear differential equation describing the Doppler velocity profile for blood flow through the mitral valve has been derived. This equation is based on fluid dynamics and a simple, but comprehensive model of atrial and ventricular mechanics. A numerical solution to the equation is described and provides excellent agreement with Doppler velocity curves obtained clinically. One important result of the theory is that in patients with mitral stenosis, the slope of the clinically observed straight-line descent of the velocity profile is proportional to the mitral orifice area and inversely proportional to the atrioventricular compliance.  相似文献   

18.
赵明月  赵文武  钟莉娜 《生态学报》2014,34(5):1105-1113
土壤表层有机碳对土地利用和环境因子的变化非常敏感,并具有尺度变异特征。研究不同尺度上表层土壤有机碳的空间分布及其与土地利用与环境因子的关系对于评价黄土丘陵沟壑区表层土壤有机碳状况具有重要意义。选择黄土丘陵沟壑区安塞集水区和集水区内典型小流域——沐浴小流域作为研究区,探讨两个尺度上,表层土壤有机碳的分布特征及其与土地利用、环境因子的关系。结果表明:(1)土地利用方式对有机碳的影响在不同尺度上差异明显,对于不同利用方式下的有机碳含量,沐浴小流域从高到低依次是荒草地林地灌木林地耕地,安塞集水区则依次为林地灌木林地耕地荒草地;(2)对于不同利用方式下的土壤有机碳密度,沐浴小流域从高到低依次是荒草地林地耕地灌木林地,安塞集水区则是林地耕地荒草地灌木林地;(3)在沐浴小流域和安塞集水区两个尺度上,坡向、坡度和植被盖度均与有机碳含量和有机碳密度正相关,而相对海拔、土地利用与有机碳密度负相关;(4)在小流域尺度上,海拔高度、坡位、土地利用与有机碳含量负相关,坡位与有机碳密度负相关,但是在集水区尺度上,相关性则与此相反。  相似文献   

19.
以土壤水分运动基本方程为依据,根据长白山北坡山地棕色针叶林土的实际土壤层结构,建立了该地区一维垂向非饱和土壤水分运动数学模型,并推导了该模型的数值离散方程,编制了用于该模型数值模拟的计算程序.最后通过数值模拟对模型进行验证.结果表明,模拟值与实测值能够较好吻合.  相似文献   

20.
Organic and inorganic carbon (C) fluxes transported by water were evaluated for dominant hydrologic flowpaths on two adjacent headwater catchments in the Brazilian Amazon with distinct soils and hydrologic responses from September 2003 through April 2005. The Ultisol-dominated catchment produced 30% greater volume of storm-related quickflow (overland flow and shallow subsurface flow) compared to the Oxisol-dominated catchment. Quickflow fluxes were equivalent to 3.2 ± 0.2% of event precipitation for the Ultisol catchment, compared to 2.5 ± 0.3% for the Oxisol-dominated watershed (mean response ±1 SE, n = 27 storms for each watershed). Hydrologic responses were also faster on the Ultisol watershed, with time to peak flow occurring 10 min earlier on average as compared to the runoff response on the Oxisol watershed. These different hydrologic responses are attributed primarily to large differences in saturated hydraulic conductivity (K s). Overland flow was found to be an important feature on both watersheds. This was evidenced by the response rates of overland flow detectors (OFDs) during the rainy season, with overland flow intercepted by 54 ± 0.5% and 65 ± 0.5% of OFDs for the Oxisol and Ultisol watersheds respectively during biweekly periods. Small volumes of quickflow correspond to large fluxes of dissolved organic C (DOC); DOC concentrations of the hydrologic flowpaths that comprise quickflow are an order of magnitude higher than groundwater flowpaths fueling base flow (19.6 ± 1.7 mg l−1 DOC for overland flow and 8.8 ± 0.7 mg l−1 DOC for shallow subsurface flow versus 0.50 ± 0.04,mg l−1 DOC in emergent groundwater). Concentrations of dissolved inorganic C (DIC, as dissolved CO2–C plus HCO3–C) in groundwater were found to be an order of magnitude greater than quickflow DIC concentrations (21.5 mg l−1 DIC in emergent groundwater versus 1.1 mg l−1 DIC in overland flow). The importance of deeper flowpaths in the transport of inorganic C to streams is indicated by the 40:1 ratio of DIC:DOC for emergent groundwater. Dissolved CO2–C represented 92% of DIC in emergent groundwater. Results from this study illustrate a highly dynamic and tightly coupled linkage between the C cycle and the hydrologic cycle for both Ultisol and Oxisol landscapes: organic C fluxes strongly tied to flowpaths associated with quickflow, and inorganic C (particularly dissolved CO2) transported via deeper flowpaths.  相似文献   

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