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71.
西秦岭嘉陵江上游瞬时地貌发育特征   总被引:1,自引:0,他引:1       下载免费PDF全文
西秦岭位于青藏高原东北缘,是青藏高原晚新生代构造扩展的前缘部位。西秦岭地区发育的一系列河流水系作为高原物质向外扩展的载体,记录了高原扩展过程中的地貌演化信息。本文选取西秦岭嘉陵江上游的支流作为研究对象,以河流纵剖面的形态和陡峭指数的空间分布为基础数据,初步分析了嘉陵江上游的地貌特征及其影响因素。结果表明,嘉陵江上游地貌演化处于瞬时状态,裂点以上的低陡峭指数区域代表了残余地貌,裂点以下高陡峭指数区域是裂点响应基准面下降后形成的新地貌。通过对比区域岩性和降水条件发现,岩性和降水对河流裂点发育以及陡峭指数的影响是有限的,河流裂点的发育和陡峭指数的变化主要受控于区域构造抬升引起的基准面下降。陡峭指数的空间分布特征表明构造作用对地貌发育起了重要的塑造作用。西秦岭瞬时地貌的发育是对印度板块与欧亚板块碰撞汇聚以来的远程效应的响应。  相似文献   
72.
纵向沙丘和横向沙丘模拟流场的实验研究   总被引:18,自引:10,他引:8  
李志忠  关有志 《中国沙漠》1996,16(4):360-363
实验选用半圆柱体沙丘模型脊线与风洞实验段风向构成6组不同大小的交角, 通过对其纯气流绕流流场、表面压力分布以及风沙堆积形态的观测和分析, 查明了纵向沙丘和横向沙丘模拟流场的结构特征。模拟结果可与野外观测资料对比  相似文献   
73.
长江第一弯成因及形成时代探讨   总被引:1,自引:0,他引:1  
长江第一弯成因及形成时代关系到金沙江—长江水系的形成演化、西南纵向岭谷地理环 境演化、青藏高原隆升对周边环境的影响等重大科学问题, 故近百年来一直为学术界所关注。本 文通过综合考察、地貌和沉积物等的综合分析认为: 长江第一弯是在金沙江水系未曾溯源连通至 三江口段之前的古金沙江与古冲江河、水洛河的汇流口。长江在三江口袭夺了水洛河, 导致水洛 河倒流, 古金沙江与三江口下的长江贯通, 才形成真正的金沙江—长江水系。根据玉龙山强烈隆 起时间、周边层状地貌发育年代、中国水系大局形成等进行推断, 长江第一弯形成时代为中更新 世以来, 说明昆黄运动为本区构造地貌—水系发育的重大转型事件。  相似文献   
74.
1INTRODUCTIONFrom14toearly20century,thatisintheMingandQingDynastiesinChina,thereexistedapointofviewthatthecontinuoussiltation...  相似文献   
75.
澜沧江干流河谷盆地气候特征及变化趋势   总被引:12,自引:0,他引:12  
何云玲  张一平 《山地学报》2004,22(5):539-548
关于气候变化,许多学者已在全球或全国范围内做过很多研究。但是全球气候变化是非同步的,受地形、自然条件的变更、人为活动的影响,区域气候将发生变化,特定地点的气候变化特征将具有时间和空间的特殊性。而且,区域气候变化研究对其经济等各方面发展具有十分重要的影响。为研究特殊区域-纵向岭谷区气候变化特征和趋势,把握区域气候对全球变化的响应程度,利用贯穿于澜沧江干流河谷盆地的18个气象站1960-2000年的观测资料,通过统计分析,探讨了干流河谷盆地区域的气温和降水的时空分布特征及其变化趋势。结果表明:澜沧江干流河谷盆地气温和降水总体上有自南部向北部递减的趋势,即南部的气温比北部高,降水比北部多。澜沧江干流河谷盆地气候变化与全球和全国气候变化趋势基本一致:气温变化总趋势是增温(年平均气温上升率为0.0152℃(2/a),其增温率大于全国和全球的平均增温率;降水变化趋势则较为复杂,总体趋势为减少,但其变化规律不如气温明显;气温和降水的变化趋势具有明显的区域性和季节性,流域内各分区的气候变化幅度不同,时空分布也存在显著差异。澜沧江流域森林面积的减少乃是该区域气候变化的原因之一。  相似文献   
76.
China’s southwestern special terrain pattern as parallel arrangement between longitudinal towering mountains and deep valleys has significant effects on the differentiation of local natural environment and eco-geographical pattern in this region.The 1:50,000 Digital Elevation Model(DEM) data of Longitudinal Range-Gorge Region(LRGR),meteorological observation data from the station establishment to 2010,hydrological observation data,Normalized Difference Vegetation Index(NDVI) and Net Primary Productivity(NPP) products of MOD13 and MOD17 as well as 1:1,000,000 vegetation type data were used.Moisture indices including surface atmospheric vapor content,precipitation,aridity/humidity index,surface runoff,and temperature indices including average temperature,annual accumulated temperature,total solar radiation were selected.Based on ANUSPLIN spline function,GIS spatial analysis,wavelet analysis and landscape pattern analysis,regional differentiation characteristics and main-control factors of hydrothermal pattern,ecosystem structure and function in this region were analyzed to reveal the effects of terrain pattern on regional differentiation of eco-geographical elements.The results show that:influenced by terrain pattern,moisture,temperature and heat in LRGR have shown significant distribution characteristics as intermittent weft differences and continuous warp extension.Longitudinal mountains and valleys not only have a north-south corridor function and diffusion effect on the transfer of major surface materials and energy,but also have east-west barrier function and blocking effect.Special topographic pattern has important influences on vegetation landscape diversity and spatial pattern of ecosystem structure and function,which is the main-control factor on vegetation landscape diversity and spatial distribution of ecosystem.Wavelet variance analysis reflects the spatial anisotropy of environmental factors,NDVI and NPP,while wavelet consistency analysis reveals the control factors on spatial distribution of NDVI and NPP as well as the quantitative relationship with control degree.Special terrain pattern in LRGR is the major influencing factor on eco-geographical regional differentiation in this region.Under the combined effect of zonality and non-zonality laws with "corridor-barrier" function as the main characteristic,special spatial characteristics of eco-geographical regional system in LRGR is formed.  相似文献   
77.
1956-2000年云南红河流域径流的时空分布   总被引:4,自引:1,他引:3  
This paper studies the variation of runoff of Red River Basin and discusses the influence of"corridor-barrier"functions of valleys and mountains on variation of runoff by using GIS and statistic methods based on the monthly precipitation,temperature and evaporation data from 1960 to 2000 at 32 meteorological stations in Red River Basin,and the annual runoff data of Yuanjiang River,Lixian River and Panlong River from 1956 to 2000.The results show out:(1)Under the effect of"corridor-barrier"functions of valleys and mountains in Red River Basin,the patterns of annual precipitation and runoff depth distribution in spatial change a NW-SE direction,which is similar with the trend of the Red River valley and Ailao mountains.(2)In the long temporal scale averaged over years,the most obvious effects of the"corridor-barrier"functions is on runoff variation,and the second is on the precipitation, but not obvious on the temperature.(3)Under the superposed effect of climate changes and the"corridor-barrier"functions of valleys and mountains in Red River Basin,the difference of runoff variation is obvious in the east-west direction:the runoff variation of Yuanjiang River along the Red River Fault present an ascending trend,but the Lixian River on the west side of the Fault and the Panlong River on the east present a descending trend;the annual runoff in Yuanjiang River and Panlong River had a quasi-5a periods,and Panlong River had a quasi-8a periods;the runoff variation are quite inconsistent in different periods among the three river basins.  相似文献   
78.
基于磁层-电离层-热层耦合模型(Coupled Magnetosphere-Ionosphere-Thermosphere Model,CMIT),本文探究了当行星际磁场Bz分量(Interplanetary magnetic field,IMF) 60 min周期震荡时,白天热层扰动风的经度差异特征.由于地磁构型、热...  相似文献   
79.
Knickzones are common features along rivers on the basaltic plateaus of the Paraná Basin. According to current conceptual models, knickpoints are formed in massive basalts that have a high density of vertical joints. Vesicular–amygdaloidal basalts and those with horizontal joints tend to form reaches of low slope due to their lower resistance to erosion. However, field surveys revealed complexities in this general relationship. The research presented here sought to verify the controls on the genesis of knickzones in this type of geological environment. We studied a 61 km-long mixed bedrock–alluvial river. The longitudinal profile of the river was surveyed on a topographic map with 5 m contour intervals. Tectonic lineaments oriented transverse to the channel and longitudinal lineaments in which the river lies were identified from maps. A detailed field survey of the lithologic characteristics of the riverbed was also performed. The results show that knickzones may form in any litho-structural zone in the flood basalts. On the other hand, low slope zones are predominantly sculpted into vesicular–amygdaloidal basalts, which are less resistant to erosion. The fracture densities of vesicular–amygdaloidal basalts are similar in low slope zones and in knickzones (4.86 and 4.93 m/m2, respectively). This indicates that knickzones in this type of basalt are not caused by higher resistance to erosion. Approximately 60% of the 18 knickzones identified are associated with tectonic lineaments, irrespective of the structural characteristics of the basalts. Vesicular–amygdaloidal basalt and/or basalt with horizontal joints allow the fastest knickzone migration and aid in the formation of convexities. Knickpoints in these basalts do not migrate, but erosion in the pools advances downstream and breaks the bedrock steps, thus increasing the slope. Massive basalt with vertical joints causes slower migration, and its presence at convexities indicates local uplift. Convex segments are only formed upstream of faults.  相似文献   
80.
The dynamic response of a viscoelastic bearing pile embedded in multilayered soil is theoretically investigated considering the transverse inertia effect of the pile. The soil layers surrounding the pile are modeled as a set of viscoelastic continuous media in three-dimensional axisymmetric space, and a simplified model, i.e., the distributed Voigt model, is proposed to simulate the dynamic interactions of the adjacent soil layers. Meanwhile, the pile is assumed to be a Rayleigh–Love rod with material damping and can be divided into several pile segments allowing for soil layers and pile defects. Both the vertical and radial displacement continuity conditions at the soil–pile interface are taken into account. The potential function decomposition method and the variable separation method are introduced to solve the governing equations of soil vibration in which the vertical and radial displacement components are coupled. On this basis, the impedance function at the top of the pile segment is derived by invoking the force and displacement continuity conditions at the soil–pile interface as well as the bottom of pile segment. The impedance function at the pile head is then obtained by means of the impedance function transfer method. By means of the inverse Fourier transform and convolution theorem, the velocity response in the time domain can also be obtained. The reasonableness of the assumptions of the soil-layer interactions have been verified by comparing the present solutions with two published solutions and a set of well-documented measured pile test data. A parametric analysis is then conducted using the present solutions to investigate the influence of the transverse inertia effect on the dynamic response of an intact pile and a defective pile for different design parameters of the soil–pile system.  相似文献   
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