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961.
描述了发现于合川自流井组东岳庙段的三种似木贼植物化石,即Equisetites flus Harris,E.1ateralis(Phillips)和E.columnaris(Brongn.)Phillips。标本保存良好,依据植物和双壳类化石的分布关系,提出自流井组东岳庙段的时代为早侏罗世晚期至中侏罗世早期。同时,分析了东岳庙段的岩相特征和沉积环境。  相似文献   
962.
近50 a全球和三大洋海温距平的时空变化特征   总被引:5,自引:0,他引:5  
利用49a(1950-1998年)NCEP/NCAR逐月SSTA资料和EOF方法,分别对太平洋、大西洋、印度洋和全球海洋SSTA主要特征向量的空间分布和相应的时间变化进行了讨论。利用Morlet小波进一步分析了要素场的周期变化和能量变化。发现经EOF分解后的SSTA场具有很好的空间整体性和明显的年际和年代际变化。各大洋海温变化存在明显的同期和时滞相关关系,很好地体现了大洋间的协同作用和太平洋的主导作用。从不同的空间分布模态中选择海温变化显著的区域作为关键区,进行同期和时滞相关分析,结果发现各关键区之间具有明显的同期和时滞相关关系。  相似文献   
963.
五台山区构造对铁矿的控制规律浅析   总被引:2,自引:2,他引:0       下载免费PDF全文
李朝辉  张文亮 《地质找矿论丛》2002,17(3):191-194,202
五台山区富含铁矿资源。区域构造以多期次运动叠加的褶皱为主,后期构造对前期构造进行了改造。构造外貌总体呈“之”字型展布。区域构造以及其次级构造对矿体(床)有明显的控制作用,表现为区域构造控制矿体(床)的分布,二级构造控制矿体(床)的形态,三级以下构造对矿体(床)起局部控制或改造作用。区域铁矿床亦受“之”字型的控制。  相似文献   
964.
西北干旱地区凝结水试验研究   总被引:24,自引:0,他引:24       下载免费PDF全文
采用称重法,分别在非冻结期和冻结期,对不同土质的土样进行凝结水观测试验,分析讨论凝结水发生的条件、凝结水发生的时间、凝结水形成的主要影响因素、积雪条件下的凝结水、凝结水的数量及其变化以及凝结水的生态环境意义,研究成果对于认识干旱地区凝结水的形成机制及其生态环境意义具有重要价值.  相似文献   
965.
中扬子区海相沉积盆地性质研究   总被引:5,自引:1,他引:4  
分析了中扬子区海相沉积盆地基底和层序充填特性;研制了M判别图解,研究了沉积盆地的性质,认为盆地基底具有三分性,盆地层序充填具有阶段性和分区性,沉积盆地主体具有克拉通盆地的特点和性质。  相似文献   
966.
张招崇  李树才 《岩石学报》2000,16(3):327-336
镜泊湖地区全新世玄武岩分布在镜泊湖西北方向的“火山口森林”地区和蛤蟆塘地区。这两个地区相距只有15km,但其玄武质岩石在岩石学上具有明显的区别,前者为碱性橄榄玄武岩,后者为白榴石碱玄岩,并且具有钛角闪石、金云母和歪长石巨晶,而前者则没有这些巨晶。对它们的地球化学特征研究表明,两个地区的玄武夺石虽然均属于偏钠质的碱性玄武岩,但是白榴石碱玄岩相对于碱性橄榄玄武岩总体上具有高的Al2O3、Na2O、K2  相似文献   
967.
赣南地区煤矿分布规律及找煤方向   总被引:1,自引:0,他引:1  
赣南地区各含煤岩系及煤矿(田)产布特征,具有东西向成片、北北东向成行,受东西向与北北东向推昨合控制的分布规律。因此,深入研究推覆构造系统的特点及其控煤规律,从而确定出煤系“构造窗”、覆于煤系之上的“飞来峰”,甚至辨认出覆于煤系之上的大片外来岩席(包括花岗岩外来岩席),是确定找煤方向和预测隐伏煤矿(田)的重要途径。  相似文献   
968.
1 Spacial Organization Optimizing Theory 1.1 The centeral place theoryThe "centeral place theory" hypothesizes that there is a region: (1) the region is a uniform plain; (2) the motion of economic activities in regions can be carried through in every directions forever; (3) the purchasing power of residents is a successive and uniform distribution; (4) the movement of consumers has rationality in space, namely, proceeding by the shortest distance. The rural settlements as the central place of…  相似文献   
969.
Gully erosion of cultural sites in Grand Canyon National Park is an urgent management problem that has intensified in recent decades, potentially related to the effects of Glen Canyon Dam. We studied 25 gullies at nine sites in Grand Canyon over the 2002 monsoon–erosion season to better understand the geomorphology of the gully erosion and the effectiveness of erosion‐control structures (ECS) installed by the park under the direction of the Zuni Conservation Program. Field results indicate that Hortonian overland flow leads to concentrated flow in gullies and erosion focused at knickpoints along channels as well as at gully heads. Though groundcover type, soil shear strength and permeability vary systemat‐ically across catchments, gradient and, to a lesser degree, contributing drainage area seem to be the first‐order controls on gully extent, location of new knickpoints, and ECS damage. The installed ECS do reduce erosion relative to reaches without them and initial data suggest woody checkdams are preferable to rock linings, but maintenance is essential because damaged structures can exacerbate erosion. Topographic data from intensive field surveys and detailed photogrammetry provide slope–contributing area data for gully heads that have a trend consistent with previous empirical and theoretical formulations from a variety of landscapes. The same scaling holds below gully heads for knickpoint and ECS topographic data, with threshold coefficients the lowest for gully heads, slightly higher for knickpoints, and notably higher for damaged ECS. These topographic thresholds were used with 10‐cm digital elevation models to create simple predictive models for gully extent and structure damage. The model predictions accounted for the observed gullies but there are also many false‐positives. Purely topographical models are probably inadequate at this scale and application, but models that also parameterize the variable soil properties across sites would be useful for predicting erosion problems and ECS failure. Copyright © 2006 John Wiley & Sons, Ltd.  相似文献   
970.
Relationships between riverbed morphology, concavity, rock type and rock uplift rate are examined to independently unravel the contribution of along-strike variations in lithology and rates of vertical deformation to the topographic relief of the Oregon coastal mountains. Lithologic control on river profile form is reflected by convexities and knickpoints in a number of longitudinal profiles and by general trends of concavity as a function of lithology. Volcanic and sedimentary rocks are the principal rock types underlying the northern Oregon Coast Ranges (between 46°30′ and 45°N) where mixed bedrock–alluvial channels dominate. Average concavity, θ, is 0·57 in this region. In the alluviated central Oregon Coast Ranges (between 45° and 44°N) values of concavity are, on average, the highest (θ = 0·82). South of 44°N, however, bedrock channels are common and θ = 0·73. Mixed bedrock–alluvial channels characterize rivers in the Klamath Mountains (from 43°N south; θ = 0·64). Rock uplift rates of ≥0·5 mm a−1, mixed bedrock–alluvial channels, and concavities of 0·53–0·70 occur within the northernmost Coast Ranges and Klamath Mountains. For rivers flowing over volcanic rocks θ = 0·53, and θ = 0·72 for reaches crossing sedimentary rocks. Whereas channel type and concavity generally co-vary with lithology along much of the range, rivers between 44·5° and 43°N do not follow these trends. Concavities are generally greater than 0·70, alluvial channels are common, and river profiles lack knickpoints between 44·5° and 44°N, despite the fact that lithology is arguably invariant. Moreover, rock uplift rates in this region vary from low, ≤0·5 mm a−1, to subsidence (<0 mm a−1). These observations are consistent with models of transient river response to a decrease in uplift rate. Conversely, the rivers between 44° and 43°N have similar concavities and flow on the same mapped bedrock unit as the central region, but have bedrock channels and irregular longitudinal profiles, suggesting the river profiles reflect a transient response to an increase in uplift rate. If changes in rock uplift rate explain the differences in river profile form and morphology, it is unlikely that rock uplift and erosion are in steady state in the Oregon coastal mountains. Copyright © 2006 John Wiley & Sons, Ltd.  相似文献   
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