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41.
The Nanga Parbat Himalaya presents some of the greatest relief on Earth, yet sediment production and denudation rates have only been sporadically addressed. We utilized field measurements and computer models to estimate bank full discharge, sediment transport, and denudation rates for the Raikot and Buldar drainage basins (north slope of Nanga Parbat) and the upper reach of the Rupal drainage basin (south slope).The overall tasks of determining stream flow conditions in such a dynamic geomorphic setting is challenging. No gage data exist for these drainage basins, and the overall character of the drainage basins (high relief, steep flow gradients, and turbulent flow conditions) does not lend itself to either ready access or complete profiling.Cross-sectional profiles were surveyed through selected reaches of these drainage basins. These data were then incorporated into software (WinXSPRO) that aids in the characterization (stage, discharge, velocity, and shear stress) of high altitude, steep mountain stream conditions.Complete field measurements of channel depths were rarely possible (except at several bridges where the middle of the channel could actually be straddled and probed) and, when coupled with velocity measurements, provided discrete points of field-measured discharge calculations. These points were then used to calibrate WinXSPRO results for the same reach and provided a confidence level for computer-generated results.Flow calculations suggest that under near bank full conditions, the upper Raikot drainage basin produces discharges of 61 cm and moves about 11,000 tons day−1 (9980 tons day−1) of sediment through its channel. Bank full conditions on the upper portion of the Rupal drainage basin generate discharges of 84 cm and moves only about 3800 tons day−1 (3450 tons day−1) of sediment. Although the upper Rupal drainage basin moves more water, the lower slope of the drainage basin (0.03) generates a much smaller shear stress (461 Pa) than does the higher slope (0.12) of the upper Raikot drainage basin (1925 Pa).Dissolved and suspended sediment loads were measured from water/sediment samples collected throughout the day and night over a period of 10 days at the height of the summer melt season but proved to be a minor variable in transport flux. Channel bed loads were measured using a pebble count method of bank material and then used to generate ratings curves of bed loads relative to discharge volumes. When coupled with discharge data and basin area, mean annual sediment yield and denudation rates for Nanga Parbat are produced. Denudation rates calculated in this fashion range from 0.2 mm year−1 in the slower, more sluggish Rupal drainage basin to almost 6 mm year−1 in the steeper, faster flowing Raikot and Buldar drainage basins.  相似文献   
42.
青海东昆仑肯德可克金-有色金属矿床矿物特征研究   总被引:4,自引:0,他引:4  
肯德可克贵金属-有色金属矿床有多种元素达到工业要求,矿物组成复杂,本文在详细的光、薄片鉴定和电子探针分析的基础上,分析研究了该矿床的矿物组成特征,并根据成矿地质特征、矿物组合特点和矿物间的穿插关系,划分了成矿期次,进而确定该矿床为-多期成矿作用叠加的叠生型金-有色金属矿床。  相似文献   
43.
新疆天山地区地貌分形与多重分形特征研究   总被引:1,自引:0,他引:1  
利用投影覆盖法和投影覆盖概率对新疆天山地区不同构造地貌类型进行了分形与多重分形特征的研究。结果表明:在所研究的标度范围内,不同地貌区均表现出明显的多度域分形,分维值总体上呈现出高山区>中低山区>盆地区特点,多重分形谱Dq的形态和值域范围也表现出不同特征。研究认为,地貌表面的分维值与地貌形成的内外力地质作用方式和强度密切相关,并提出5-6km的尺度可作为地貌学研究中宏观与微观作用的分界点。  相似文献   
44.
There are many thrust-related structures occurring in the Paleozoic strata of the Niushou Mountain in the central part of Ningxia Hui Autonomous Region. The fault-related folds are the typical structures in this area. Based on the analysis about these structures and their relationships, the processes by which these structures of the Miboshan Formation were formed are reconstructed, and the strata underwent about three stages of deformation: (1) horizontal shortening, (2) folding, and (3) thrusting. And the fact that the Niushou Mountain is the leading edge of an old thrust sheet was proved, the Niushou Mountain, the Daluo Mountain and the Xiaoluo Mountain together constitute the front part of this old thrust zone, so the Niushou Mountain and the Ordovician strata in the central and southern parts of Ningxia now are likely allochthons. In the period from middle Ordovician to Devonian, the areas of the central and southern Ningxia belonged to the back-arc foreland basin of North Qilianshan orogen, which was adjacent to the continent in the north. In the later part of the early Paleozoic period, the Niushou Mountain was formed after the closure of the back-arc foreland basin.  相似文献   
45.
碳酸盐与陆源碎屑的混合沉积研究至今尚未引起足够重视。文献屈指可数。扬子西经缘龙门山地区盆纪发育了了这类良好的混合沉积。作者根据实际材料,首次从这一思路出发,识别该区泥盆纪Emsian期到Givetian早期的混积相四种,混积亚相约14种,阐明了其优势混积作用;根据混积作用特征、沉积背景关系,划分出两大混积类型,即泥质背景下的混积1型和砂灰质背景下的混积Ⅱ型;对混积作用机理进行了探讨;并指出不同级次  相似文献   
46.
黄连山自然保护区的土壤及其地理分布规律   总被引:1,自引:1,他引:1  
本文根据野外调查,土样室内理化分析及对前人工作成果的系统分析结果表明,黄连山自然保护区的土壤及其地理分布规律是;海拔800m以下为砖红壤;海拔800-1100m为砖红壤性红壤;海拔1100—1600m为山地红壤;海拔1600—1900m为山地黄壤;海拔1900m以上为山地黄棕壤。  相似文献   
47.
以天山北坡头屯河流域为例,在对山区不同海拔的降水特征、侵蚀产沙情势以及河流水沙运移特点分析的基础上,详尽就山区降水对河流水沙情势的年际变化、年内变化以及月变化的影响进行了分析研究,并就降水对不同海拔的河流水沙情势的影响强度及相互关系作了探讨.  相似文献   
48.
调查的基础L,统计了太岳山种子植物有97科、316属、575种(含变种),分析了该区系的主要特征,即植物区系地理成分复杂,温带成分占优势;植物资源种类丰富,区系起源古老;植物区系具明显的过渡性;植被类型复杂,具明显的垂直分布.对该区野生经济植物进行了分类统计,为植物资源合理利用与生物多样性保护提供了基础资料穹科学依据.  相似文献   
49.
哀牢山-红河左旋走滑剪切带中新世抬升的时间序列   总被引:17,自引:1,他引:17  
陈文寄  李齐  汪一鹏 《地质论评》1996,42(5):385-390
在哀牢山-红河剪切带的元阳到者龙的6个不同地点,对18个变质岩样品进行系统分析钾长石的~(40)Ar-~(39)Ar年龄。发现用MDD模式得到的18条冷却曲线(温度范围在400-150℃之间)均存在一次(或两次)快速冷却过程(冷却速度>100°C/Ma),这种快速冷却(抬升)过程不仅反映了该剪切带在大约25-17Ma时,韧性走滑作用结束和正断作用的开始,而且它的起始时间还有自东南向西北逐渐变新的趋势。利用6个不同地点快速冷却(抬升)的起始时间与相对距离作图时,得到了较好的线性函数关系(斜率为34mm/a)  相似文献   
50.
 Yucca Mountain, the proposed site for the high-level nuclear waste repository, is located just south of where the present water table begins a sharp rise in elevation. This large hydraulic gradient is a regional feature that extends for over 100 km. Yucca Mountain and its vicinity are underlain by faulted and fractured tuffs with hydraulic conductivities controlled by flow through the fractures. Close to and parallel with the region of large hydraulic gradient, and surrounding the core of the Timber Mountain Caldera, there is a 10- to 20-km-wide zone containing few faults and thus, most likely, few open fractures. Consequently, this zone should have a relatively low hydraulic conductivity, and this inference is supported by the available conductivity measurements in wells near the large hydraulic gradient. Also, slug injection tests indicate significantly higher pressures for fracture opening in wells located near the large hydraulic gradient compared to the opening pressures in wells further to the south, hence implying that lower extensional stresses prevail to the north with consequently fewer open fractures there. Analytical and numerical modeling shows that such a boundary between media of high and low conductivity can produce the observed, large hydraulic gradient, with the high conductivity medium having a lower elevation than the water table. Further, as fractures can close due to tectonic activity, the conductivity of the Yucca Mountain tuffs can be reduced to a value near that for the hydraulic barrier due to strain release by a moderate earthquake. Under these conditions, simulations show that the elevation of the steady-state water table could rise between 150 and 250 m at the repository site. This elevation rise is due to the projected shift in the location of the large hydraulic gradient to the south in response to a moderate earthquake, near magnitude 6, along one of the major normal faults adjacent to Yucca Mountain. As the proposed repository would only be 200–400 m above the present water table, this predicted rise in the water table indicates a potential hazard involving water intrusion. Received: 7 June 1996 / Accepted: 19 November 1996  相似文献   
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