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61.
针对黄土丘陵沟壑区土壤侵蚀非常严重、作物产量低而不稳以及农业生产力水平低下的特点 ,本文首先分析了近几年来王家沟流域不同种类和不同年份作物生产力变化的特征 ,然后在地理信息系统 (GIS)技术支持下 ,利用基于土壤侵蚀条件下的YIELD作物生产力模型并结合各作物的实际观测资料 ,从降雨量、气温等气象因素以及地膜覆盖、施肥、梯田等耕作措施两方面分析了该小流域作物生产力变化的原因 ,结果表明在气象因素 (大气降水 )和土壤侵蚀的共同影响下 ,土壤水分和养分的变化是影响该区域作物生产力变化的主要制约因素。  相似文献   
62.
黄土丘陵沟壑区小流域降雨入渗产流点面转化   总被引:7,自引:6,他引:7  
袁建平  蒋定生 《地理科学》2001,21(3):262-266
在充分考虑小流域土壤入渗速率点面转化及地表结皮等影响因素在内的基础上 ,提出了小流域土壤入渗速率点面转化公式 :fm=fn×Sn/S×an×bn。以纸坊沟小流域为例 ,将实测的流域土壤入渗速率值 (点渗值 )利用上式进行转化 (面渗值 ) ,并与流域径流出口观测站由降雨径流观测值根据水量平衡原理推算出的面渗值进行对比 ,平均相对误差仅为 2 .42 %。初步得出流域土壤面渗率与不同治理度、年内 5~ 9月降雨总量间的单因子和复合因子高精度回归方程 ,为流域综合治理后的水资源量变化趋势提供一条量化途径  相似文献   
63.
安徽省江淮分水岭地区水资源问题及对策   总被引:1,自引:0,他引:1  
郝安宁 《安徽地质》2001,11(1):60-63
地下水资源贫乏,水(境外地表水)工程地质环境恶化(引水干渠的边坡滑塌),地表水难以蓄存,是安徽江淮分水岭地区经济发展滞后的重要原因。本文通过对区内水资源分析,提出了改善的相关对策。  相似文献   
64.
I-DtjcrONAlpine environment enjoys a distinct set of physicochemical conditions asl compared to other aqueous systems. Thehydrochemical characteristics of meltwater draining from thisenvironment are different from the other aqueous ecosystemsdue to their mountainous nature and extreme cold climatic conditions. The high concentration of various chemical constitu.ents in meltwater shows the intensive chemical weathering inthe basin. The rapid physical weathering due tO grinding actionof the gl…  相似文献   
65.
Based on the geological background, R-mode factor statistics, and the analysis of the stability diagram for the corresponding system, five weathering reactions controlling the surface-water chemical composition in the watershed of the Changhuajiang River are deduced. In the mass balance model, the precipitation accounts for some solute input, since the rainwater is dilute without pollution. Most of the Ca2+ and HCO 3 ions are from the dissolution of calcite, K+, Na+, H4SiO4 and some of the Mg2+ and HCO 3 come from albite and biotite weathering to kaolinite. The dissolution of dolomite and gypsum controls the mass balances of Mg2+ and SO 4 2– . The dissolution of calcite is the dominant chemical weathering reaction in the watershed because of its reactivity and high concentration. In the watershed in 1986, the chemical weathering rate was 0.073 (kg/m2 a), and the mechanical denudation rate is 0.093 (kg/m2 a). The chemical weathering mass output proportion of carbonate rocks to silicate rocks was about three to one.  相似文献   
66.
Ultramafic rocks of Tibet and Xinjiang are the products of partial melting of the upper mantle. The evolution of their mineral composition is marked by two parallel evolutionary series: one is the progressive increase of the 100 Mg/(Mg+Fe~(2+) ratio of silicate minerals in order of lherzolite→harzburgite→dunite, i.e. the increase in magnesium; the other is the increase of the 100 Cr/(Cr+Al) ratio of accessory chrome spinel in the same order, i. e. the increase in Chromium. The above-mentioned evolutionary trends are contrary to that of magmatic differentiation. The evolution of fabrics of ultramafic rocks is characterized by progressive variation in order of protogranular texture→melted residual texture, symplectic texture and clastophyritic texture→equigranular mosaic texture and tabular mosaic texture. Experiments of partial melting of lherzolite have convincingly shown that the evolution of Alpine ultramafic rocks resulted from the partial melting of pyrolite. Various subtypes of them represent different degrees of partial melting. The vertical zoning marked by more basic rocks in the upper part and more acid rocks in the lower actually belongs to the fusion zoning of pyrolite.  相似文献   
67.
68.
云南境内澜沧江流域土地利用时空变化特征及动因分析   总被引:16,自引:0,他引:16  
    澜沧江-湄公河是一条集内河、界河、国际河流为一体的河流。云南境内澜沧江流域涉及云南西部 7个地州39个县市。复杂的地形地貌结构和多种气候带,形成植被垂直分布和地域分布的特点,呈现出多样性变化特征;域内94%为山区;占流域人口83%的民族(18个少数民族)大分散小聚居立体分布在山区,土地资源一直是他们赖以生存的最主要的生产生活资料,不同民族土地利用习俗,使流域内土地利用格局呈现出多元化特征。在这样一个边疆山区民族地区,寻求一条多元民族文化下土地资源合理利用和可持续发展战略,是加强民族团结,寻求均等发展机会脱贫致富,实现各民族共同繁荣和富裕的关键。
    采用遥感(RS)、地理信息系统(GIS)、全球卫星定位系统(GPS)高新技术,典型地区启用了快速农村评估(PRA,RapidRuralAppraise)方法,对流域1990年、1998年土地利用现状及空间结构演变进行了时空动态叠合研究、森林土地时空动态的整体演变研究以及变化动因分析,在此基础上,就多元民族文化下土地利用人地系统演变和流域发展的关联问题,提出一些看法,仅供商榷。  相似文献   
69.
Application of swat model in the upstream watershed of the Luohe River   总被引:6,自引:0,他引:6  
1INTRODUCTIONIntheHuanghe(Yellow) Riverbasin, soilerosionisaseriousproblem,whilerunoffandsedimentyieldsim-ulation hasnotbeenextensivelystudiedonthebasisofGIS(GeographicInformationSystem) and dis-tributedhydrologicalmodel.Inthisstudy,theLushiwatershed,whichislocatedattheupstreamoftheLushiHydrologicalStationintheLuoheRiver—thebiggesttributary oftheHuanghe Riveranddown-streamofXiaolangdiDam,isselectedasthestudyarea.ThelevelofsoilerosioninLushiwatershedismoderatein theHuangheRiverbas…  相似文献   
70.
Gullying has been widespread in the Ethiopian Highlands during the 20th century. It threatens the soil resource, lowers crop yields in intergully areas through enhanced drainage and desiccation, and aggravates flooding and reservoir siltation. Knowing the age and rates of gully development during the last few decades will help explain the reasons for current land degradation. In the absence of historical written or photographic documentation, the AGERTIM method (Assessment of Gully Erosion Rates Through Interviews and Measurements) has been developed. It comprises measurements of contemporary gully volumes, monitoring of gully evolution over several years and semi‐structured interview techniques. Gully erosion rates in the Dogu'a Tembien District, Tigray, Ethiopia, were estimated in three representative case‐study areas. In Dingilet, gullying started around 1965 after gradual environmental changes (removal of vegetation from cropland in the catchment and eucalyptus plantation in the valley bottom); rill‐like incisions grew into a gully, which increased rapidly in the drier period between 1977 and 1990. The estimated evolution of the total gully volume in the other areas show patterns similar to those of the Dingilet gully. Average gully erosion rate over the last 50 years is 6·2 t ha?1 a?1. Since 1995, no new gullies have developed in the study area. Area‐specific short‐term gully erosion rates are now on average 1·1 t ha?1 a?1. The successful application of the AGERTIM method requires an understanding of the geomorphology of the study area and an integration of the researchers with the rural society. It reveals that rapid gully development in the study area is some 50 years old and is mainly caused by human‐induced environmental degradation. Under the present‐day conditions of ‘normal’ rain and catchment‐wide soil and water conservation, gully erosion rates are decreasing. Copyright © 2006 John Wiley & Sons, Ltd.  相似文献   
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