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1.
青藏高原高寒草甸的时空变化特征   总被引:8,自引:0,他引:8  
本文首先用比较地理学的观点分析了青藏高原高寒草甸与其相邻景观之间的连续性与间断性;然后从高寒草甸上下限垂直分布的特征出发,半定量地阐明了上下限分布特征的原因以及决定上下限分布的主导因素;最后从不同的时间尺度出发,探讨了高寒草甸生态系统的动态变化特征。  相似文献   

2.
祁连山东段山地土壤性质及垂直分布规律   总被引:5,自引:0,他引:5  
胡双熙 《地理科学》1994,14(1):38-48
  相似文献   

3.
太白山高山林线植被的数量分析   总被引:8,自引:2,他引:6  
唐志尧  戴君虎 《山地学报》1999,17(4):294-299
通过对太白山南坡高山林线(alpinetimberline)及其附近的草本植物群落的聚类,排序,物种多样性以及生态种组等研究分析表明:1.太白山高山植物群落的物种多样性随着海拔高度的升高而增加;2群落交错带(ecotone)的物种多样性要比相邻群落内部高;3.在太白山高山带,随着海拔升高,种一面积相关值呈波动增加,但在群落交错带比相邻群落的内部小。  相似文献   

4.
高寒草甸土壤有机碳储量及其垂直分布特征   总被引:24,自引:0,他引:24  
青藏高原是全球变化的敏感区。高寒草甸草原是青藏高原上最主要的放牧利用草地资源之一。选择青藏高原东北隅海北站内具有代表性的高寒草甸土壤进行高分辨率采样,测定土壤根系和有机碳含量。研究得出,青藏高原高寒草甸土壤贮存有巨大的根系生物量 (23544.60 kg ha-1~27947 kg ha-1) 和土壤有机碳 (21.52 GtC);自然土壤表层 (0~10 cm) 储存了整个剖面土壤有机碳总量的30%左右。比较发现,高寒草甸土壤的有机碳平均贮存量 (23.17×104 kgCha-1) (0~60 cm) 较相应深度的热带森林土壤、灌丛土壤和草地土壤的有机碳贮存量高约1~5倍多。在全球碳预算研究中,青藏高原高寒草甸土壤有机碳库不可忽视。随着全球变暖,表层土壤有机碳分解释放的CO2将增加。为了减少高寒草甸生态系统的碳排放,应加强高寒草甸土壤地表覆被的保护,合理种植深根系植物。这对减缓全球大气CO2浓度升高的速率以及可持续开发高寒草甸的生态服务功能都具有重要意义。  相似文献   

5.
俞洁辉  刘新圣  罗天祥  张林 《地理学报》2012,67(9):1246-1254
本研究基于西藏念青唐古拉山北麓高山嵩草草甸海拔分布上限(5125 m) 地下10 cm和30 cm土壤温度和水分连续3 年(2008-2010 年) 的监测数据, 分析了草甸海拔分布上限土壤温度和未冻水含量的季节动态特征。结果表明:1) 土壤在4 月中下旬解冻, 10 月中下旬冻结;6-8月份土壤温度日振幅最大, 10 cm和30 cm分别为3.8℃和1.4℃;2) 土壤未冻水含量回升(下降) 在解冻(冻结) 开始后, 5-10 月份未冻水含量较高, 其中10 cm和30 cm 分别为2%~6%和15%~20%;3) 基于10 cm土壤温度推算的本地区高山嵩草草甸海拔分布上限的生长季在6 月初至8 月末或9 月初, 持续时间为80-87 天, 生长季平均土壤温度和含水量分别为6.78±0.73℃和4.14±0.91%, 生长季期间日最低温度集中在3~7℃之间(占90%以上天数);4) 与较低海拔处(4980 m) 相比, 高山嵩草草甸海拔分布上限处10 cm土壤温度和未冻水含量均明显偏低, 生长季8月份出现日最低温< 5℃的天数也明显增加。  相似文献   

6.
Locatedinthenuddle-eastempartofQingl1ai-XizangPlateau,thezoneofalpinescrubandmeadow,charaCterizedbyhigl1landsubpolarhu1hid/subhumiddimate,isatransitionalroponfromdeePgorgestoinIandofh1eplateauproper.ThezoneofalpinescrtlbandmeadowstretchesinadireCtionofWSWtoENE,forminganaturalzoneontheplateau.Tl1enaturalzoneisLutiqueinphyslcalenvirorunentsandnaturalecosystems,andcouldnotbefoUndatthelowlandselseWhereonEarth(Figurel).I.CharacteristicsofPbysicalEnvironmentsStartedfromZoigeandAbaofSichuan…  相似文献   

7.
围栏对新疆山区草地植被下土壤动物多样性的影响   总被引:7,自引:2,他引:7  
通过对新疆典型山区草地———高山草甸、亚高山草甸、高山草原和亚高山草原野外实地监测,比较了草原围栏内外土壤动物的类群组成、个体数量及生态分布,讨论了围栏这一人为手段对山区草地植被下土壤动物的影响:土壤动物多样性为围栏内高于围栏外,但是受构建时间的限制,围栏内外差异不显著。土壤动物类群数和个体数的分布主要取决于草原植被、土壤有机质、土壤含水率等因子。  相似文献   

8.
博尔塔拉河流域位于中哈边境,其植被和土壤具有十分明显的垂直分布和区域性差异,根据该流域一条自西向东沿着海拔高度从210 m 到3 235 m 长约200多km的样带上所采集的人为干扰较少的49 个表土花粉样品的孢粉组合图式和现代植被样方调查资料,探讨了博尔塔拉河流域植被与表土花粉之间的关系。该区孢粉谱从上至下可划分为6个带,分别对应高山草甸带、亚高山草甸草原带、森林灌丛带、灌丛草原带、荒漠草原带、荒漠植被带。值得注意的是第6个孢粉带因含有具湿地特征的隐域性植被类型花粉组分,故又分成2个亚带,即荒漠植被亚带Ⅵ1和荒漠植被亚带Ⅵ2。森林灌丛植被带上限的云杉花粉含量明显比该带下限的含量高,表明云杉花粉的传播在沟谷地区受山谷风的影响较大。与此同时,将孢粉数据与气象数据相结合,分析结果得出比较有代表性的云杉属(Picea)、桦属(Betula)、藜科(Chenopodiaceae)、麻黄属(Ephedra)等花粉,与降水量和温度的关系较为密切。  相似文献   

9.
Understanding the energy balance on the Tibetan Plateau is important for better prediction of global climate change. To characterize the energy balance on the Plateau, we examined the radiation balance and the response of albedo to environmental factors above an alpine meadow and an alpine wetland surfaces in the eastern Tibetan Plateau, using 2014 data. Although our two sites belong to the same climatic background, and are close geographically, the annual incident solar radiation at the alpine meadow site(6,447 MJ/(m2·a)) was about 1.1 times that at the alpine wetland site(6,012 MJ/(m2·a)),due to differences in the cloudiness between our two sites. The alpine meadow and the alpine wetland emitted about 38%and 42%, respectively, of annual incident solar radiation back into atmosphere in the form of net longwave radiation; and they reflected about 22% and 18%, respectively, of the annual incident solar radiation back into atmosphere in the form of shortwave radiation. The annual net radiation was 2,648 and 2,544 MJ/(m2·a) for the alpine meadow site and the alpine wetland site, respectively, accounting for only about 40% of the annual incident solar radiation, significantly lower than the global mean. At 30-min scales, surface albedo exponentially decreases with the increase of the solar elevation angle; and it linearly decreases with the increase of soil-water content for our two sites. But those relationships are significantly influenced by cloudiness and are site-specific.  相似文献   

10.
To reveal the characteristics of evapotranspiration and environmental control factors of typical underlying surfaces(alpine wetland and alpine meadow)on the Qinghai-Tibetan Plateau,a comprehensive study was performed via in situ observations and remote sensing data in the growing season and non-growing season.Evapotranspiration was positively correlated with precipitation,the decoupling coefficient,and the enhanced vegetation index,but was energy-limited and mainly controlled by the vapor pressure deficit and solar radiation at an annual scale and growing season scale,respectively.Compared with the non-growing season,monthly evapotranspiration,equilibrium evaporation,and decoupling coefficient were greater in the growing season due to lower vegetation resistance and considerable precipitation.However,these factors were restricted in the alpine meadow.The decoupling factor was more sensitive to changes of conductance in the alpine wetland.This study is of great significance for understanding hydro-meteorological processes on the Qinghai-Tibetan Plateau.  相似文献   

11.
青海高寒草甸退化演替中的植被指数   总被引:2,自引:0,他引:2  
随着气候变化和人为活动干扰,高寒草甸退化已成为青藏高原严重的生态环境问题,精准识别其退化程度并制定相应恢复策略,对实现高寒草甸可持续发展具有重要意义。目前,低空间分辨率MODIS数据为草地遥感监测的主要数据源,但难以满足景观破碎度或异质性较强地区的应用。本研究基于野外调查资料,利用多源遥感数据(MODIS、Landsat、Sentinel-2)研究不同空间分辨率归一化植被指数(NDVI)对高寒草甸退化演替的响应,为准确评估青藏高原高寒草甸退化程度提供依据。结果表明:(1)随着高寒草甸退化,植被群落优势种演化趋势为禾草—矮嵩草—小嵩草—杂草群落;植被高度和生物量先快速下降,然后缓慢下降或趋于稳定,植被覆盖度和NDVI的变化呈相反特征。(2)随着湿地草甸旱化,植被群落优势种从藏嵩草演变为矮嵩草或小嵩草,湿地旱化初期植被高度、生物量和覆盖度平均值略低于原生湿地,NDVI略大于原生湿地,差异不显著。(3)植被高度、覆盖度和生物量与Sentinel-2或Landsat的NDVI相关性均优于MODIS,说明Sentinel-2和Landsat的NDVI对高寒草甸退化演替过程更加敏感,采用该数据能更准确评估高寒草甸退化程度。  相似文献   

12.
高寒草甸是广布于青藏高原的主要植被类型,它是青藏高原大气与地面之间生物地球化学循环的重要构成部分,在区域碳平衡中起着极为重要的作用。基于对青藏高原主要高寒草甸生态系统类型CO2通量研究方面的综述,系统分析了高寒草甸生态系统CO2通量日、季、年等不同时间尺度的变化特征以及温度、光合有效辐射、降水等主要环境因子对高寒草甸生态系统CO2通量的影响;同时,结合其他地区草地生态系统,就青藏高原三种典型高寒草甸生态系统类型源汇效应和Q10值进行了比较;最后,结合青藏高原高寒草甸生态系统CO2通量研究的现实与需要,提出了当前存在一些不确定性和有待深入研究的问题。  相似文献   

13.
天山南坡表土孢粉分析及其与植被的数量关系   总被引:32,自引:4,他引:32  
本文通过对天山南坡各植被带的表土孢粉分析,研究了主要植物花粉的百分含量与其相应樾物盖度之间的数量关系,计算出不同植被带中主要植物的R值之比的比值。  相似文献   

14.
Aboveground biomass in grasslands of the Qinghai-Tibet Plateau has displayed an overall increasing trend during 2003-2016, which is profoundly influenced by climate change. However, the responses of different biomes show large discrepancies, in both size and magnitude. By applying partial least squares regression, we calculated the correlation between peak aboveground biomass and mean monthly temperature and monthly total precipitation in the preceding 12 months for three different grassland types (alpine steppe, alpine meadow, and temperate steppe) on the central and eastern Qinghai-Tibet Plateau. The results showed that mean temperature in most preceding months was positively correlated with peak aboveground biomass of alpine meadow and alpine steppe, while mean temperature in the preceding October and February to June was significantly negatively correlated with peak aboveground biomass of temperate steppe. Precipitation in all months had a promoting effect on biomass of alpine meadow, but its correlations with biomass of alpine steppe and temperate steppe were inconsistent. It is worth noting that, in a warmer, wetter climate, peak aboveground biomass of alpine meadow would increase more than that of alpine steppe, while that of temperate steppe would decrease significantly, providing support for the hypothesis of conservative growth strategies by vegetation in stressed ecosystems.  相似文献   

15.
Based on geographical and hydrological extents delimited, four principles are identified, as the bases for delineating the ranges of the source regions of the Yangtze and Yellow rivers in the paper. According to the comprehensive analysis of topographical characteristics, climate conditions, vegetation distribution and hydrological features, the source region ranges for eco-environmental study are defined. The eastern boundary point is Dari hydrological station in the upper reach of the Yellow River. The watershed above Dari hydrological station is the source region of the Yellow River which drains an area of 4.49×104 km2. Natural environment is characterized by the major topographical types of plateau lakes and marshland, gentle landforms, alpine cold semi-arid climate, and steppe and meadow vegetation in the source region of the Yellow River. The eastern boundary point is the convergent site of the Nieqiaqu and the Tongtian River in the upstream of the Yangtze River. The watershed above the convergent site is the source region of the Yangtze River, with a watershed area of 12.24×104 km2. Hills and alpine plain topography, gentle terrain, alpine cold arid and semi-arid climate, and alpine cold grassland and meadow are natural conditions in the source region of the Yangtze River.  相似文献   

16.
伊犁河谷不同植被带下土壤有机碳分布   总被引:10,自引:0,他引:10  
结合2008年和2009年野外实地调查与室内分析的资料,运用方差分析等方法对伊犁河谷高山草甸、草甸草原、典型草原、荒漠草原、温性针叶林等9种不同植被条件下的土壤有机碳含量分布及其储量进行了分析估算.研究结果表明:伊犁河谷土壤有机碳含量因植被类型变化而不同.在0~50 cm土层范围,高山草甸、草甸草原土壤有机碳含量较高,其次是温性针叶林和典型草原,含量最低的是隐域植被和荒漠植被土壤.除隐域植被外,各植被类型下土壤有机碳含最基本呈随着土层深度增加而降低的,变化趋势.有机碳密度同样是高山草甸、草甸草原和温性针叶林土壤有机碳密度较高且比较相近,荒漠植被下土壤有机碳密度最低.伊犁河谷草地表层土壤有机碳含量高、密度大,因此应重视对伊犁河谷草地的保护,尤其要保护草地表层土壤以降低浅层土壤有机碳发生变化的可能性,维护土壤碳库的稳定性.  相似文献   

17.
We analyzed and estimated the distribution and reserves of soil organic carbon under nine different vegetation conditions including alpine meadow, meadow steppe, typical steppe, desert steppe, and temperate coniferous forest and so on, in the Ili River valley, Xinjiang according to data from field investigations and laboratory analyses in 2008 and 2009. The study results show that the soil organic carbon content in the Ili River valley varies with the type of vegetation. In the 0–50 cm soil horizon, the soil organic carbon content is the highest under the vegetation types of alpine meadow and meadow steppe, slightly lower under temperate coniferous forest and typical steppe, and the lowest under the intrazonal vegetation and desert vegetation types. The soil organic carbon content shows basically a tendency to decrease as soil depth increases under various vegetation types except in the case of the intrazonal vegetation. Similarly, the soil organic carbon density is the highest and varies little under the vegetation types of alpine meadow, meadow steppe and temperate coniferous forest, and is the lowest under the desert vegetation type. Both the soil organic carbon content and density in the topsoil of meadows in the Ili River valley are high, so protecting meadows in the Ili River valley, and especially their topsoil, should be a priority so that the potential of change in soil organic carbon in the shallow soil horizon is reduced, and this means maintenance of the stability of the soil carbon pool.  相似文献   

18.
We analyzed and estimated the distribution and reserves of soil organic carbon under nine different vegetation conditions including alpine meadow,meadow steppe,typical steppe,desert steppe,and temperate coniferous forest and so on,in the Ili River valley,Xinjiang according to data from field investigations and laboratory analyses in 2008 and 2009.The study results show that the soil organic carbon content in the Ili River valley varies with the type of vegetation.In the 0-50 cm soil horizon,the soil organic carbon content is the highest under the vegetation types of alpine meadow and meadow steppe,slightly lower under temperate coniferous forest and typical steppe,and the lowest under the intrazonal vegetation and desert vegetation types.The soil organic carbon content shows basically a tendency to decrease as soil depth increases under various vegetation types except in the case of the intrazonal vegetation.Similarly,the soil organic carbon density is the highest and varies little under the vegetation types of alpine meadow,meadow steppe and temperate coniferous forest,and is the lowest under the desert vegetation type.Both the soil organic carbon content and density in the topsoil of meadows in the Ili River valley are high,so protecting meadows in the Ili River valley,and especially their topsoil,should be a priority so that the potential of change in soil organic carbon in the shallow soil horizon is reduced,and this means maintenance of the stability of the soil carbon pool.  相似文献   

19.
中国草原区植被变化及其对气候变化的响应   总被引:4,自引:4,他引:0  
利用1982~2006年GIMMS NDVI和气象数据,探究中国草原区植被变化及对气候的响应。结果表明,近25 a中国草原区植被覆盖总体呈上升趋势,但季节变化空间差异明显。春季温度对温带典型草原、高寒草甸草原和高寒典型草原植被生长有重要影响,而夏季和秋季温度同样对高寒草甸草原影响显著;夏季降水增多能明显促进夏季温带荒漠草原植被生长。除8月份以外,温带草原5~9月NDVI均与前一个月降水显著正相关;在生长季内,高寒草原NDVI与同期温度显著正相关,但8月份除外。此外高寒草原植被在生长最旺盛时期对降水变化存在1~3个月滞后期。  相似文献   

20.
风蚀坑是高寒地区草原沙漠化的起点,气流对坑内沙物质的侵蚀、搬运和堆积为沙漠化进程提供了重要的物源。以共和盆地龙羊峡水库上游黄河阶地高寒草原上不同发育阶段的风蚀坑为研究对象,通过分析表层沉积物的粒度组成特征,比较风蚀坑表层沉积物粒度组成随坑体形态和地貌部位的变化趋势,探讨风蚀坑内沉积物的粒度分异在其形成演化过程中的动力学意义。结果表明:风蚀坑表面沉积物来源主要是古风沙沉积物。尽管研究区风蚀坑空间尺度相差很大,但因为动力学过程的相似性,沉积物粒度变化依然在宏观尺度上表现出了一致性。随着风蚀坑面积扩大,在积沙区迎风坡的中下部以及坑底部位粗沙、极粗沙成分显著增多。与此同时,沉积物分选性变差,表层沉积物分布模式由单峰态渐趋向多峰,粒度参数变幅明显增大。受盆地内盛行风以及坡向影响,风蚀坑两侧侵蚀壁受侵蚀程度差异明显,东北壁受到了更强的风力掏蚀且分选性更好。沉积物粒度分析作为风沙地貌学的基础性工作,也为高寒草原风蚀坑的发育演变、空气动力学过程等后续研究提供了基础参数。  相似文献   

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