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131.
内蒙古孟恩陶勒盖银铅锌铟矿床成因研究   总被引:10,自引:1,他引:10  
文章从地质特征及地球化学特征方面论证了孟恩陶勒盖矿床的成因。地质特征显示该矿床的形成与花岗岩之间不存在成因联系,矿床相对于岩浆岩围岩是后成的,花岗岩及断裂构造只是为矿床提供了储存空间。矿床地球化学特征显示该矿床的成因与可能位于深部的燕山期岩浆活动有关,成矿元素及硫主要来自岩浆,成矿流体以岩浆水为主。因此该矿床属于岩浆热液型多金属矿床。  相似文献   
132.
从赋矿岩系岩石类型的多样性论羊拉铜矿的成因   总被引:17,自引:0,他引:17  
通过野外调查和室内工作,将羊拉铜矿床按矿石的矿物成分和组构分出9种类型,包括矽卡岩型、大理岩型、砂板岩型、角岩型、凝灰质流纹岩型、玄武岩-辉绿岩型、花岗质碎裂岩-花岗斑岩型、安山岩型和绢英岩型。矽卡岩型矿石是构成矿体的最主要矿石类型,但在不同矿段可由碳酸盐岩(里农)和凝灰质火山岩(贝吾)两种原岩形成。矿体在赋矿岩系中有3种产出形态:顺层呈层状.似层状;沿花岗岩与沉积岩接触面呈透镜状;贯穿岩体和沉积岩呈大脉状。它们均与后期构造密切相关,矿体无确定的顶、底板岩石,围岩蚀变以矿体为中心呈环带状分布。研究表明,矿床相对赋矿岩系显示出明显的后成性,属于印支期花岗岩-花岗斑岩与古生代混杂岩通过强烈的接触交代作用形成的矽卡岩型铜矿床。  相似文献   
133.
塔里木盆地西部古岩盐地质地球化学特征与成钾条件分析   总被引:11,自引:1,他引:11  
塔里木盆地是我国重要的成盐盆地,为我国最有远景的找古钾矿地区之一。本文通过多年野外实地调查和大量岩盐样品的化学分析,特别是岩盐中可以指示沉积阶段的Br×103/Cl系数等区域分布特征,联系前人研究资料,分别从构造环境、地层和岩相古地理、地球化学特征等方面进行了成钾条件分析。结果表明,莎车盆地西部喀什坳陷和库车盆地中部拜城坳陷宏观地质特征均有利于钾盐沉积;岩盐地球化学组成相对于正常海相沉积表现出明显的贫Br特征,属海陆交互相或海源陆相沉积。相比之下,莎车盆地的喀什次级坳陷是目前最有前景的找钾远景区。  相似文献   
134.
大陆内部弥散性的变形表明经典板块构造理论未能阐述大陆构造。矿物变形的实验室研究结果、岩石流变学性质随深度改变和地震测深剖面资料都提示大陆岩石圈具有三明治式的强度包络面。任纪舜、张国伟和钟大赉分别把岩石圈不同深度层次的三维交切构造称为立交桥式构造或多向层架构造。它们的出现提示岩石圈发生了构造解耦,新的变形体制在拆离面以上发展起来。前苏联地质学家把它称为岩石圈的构造成层作用。本文列举了喜马拉雅东、西构造结和秦岭造山带可能出露于地表的三维交切构造实例,呼吁重视这类代表大陆岩石圈不同深度层次的构造堆叠体,并把它作为揭示岩石圈构造变形的最佳切入点。  相似文献   
135.
高坪-吉心段公路喀斯特工程地质综合勘察   总被引:1,自引:0,他引:1  
以沪蓉国道主干线湖北省高坪-吉心段的喀斯特地质勘察工作为例,探讨喀斯特地区公路工程地质综合勘察的基本方法。在喀斯特地区运用遥感和地理信息技术技术、地质测绘、综合物探以及地质钻探等勘察手段,通过综合分析各种勘探成果,能够较准确地查明可溶岩的分布、喀斯特形态类型、分布规律、控制因素以及喀斯特水的赋存、分布和运移规律等,并根据不同的喀斯特地貌提出了有针对性的处理对策。通过不断的实践和经验总结。针对喀斯特工程地质问题合理运用综合工程勘察方法,能做出科学的分析评价,可以适应喀斯特区公路建设的需要,并且供今后在喀斯特地区修建公路时参考和借鉴。  相似文献   
136.
贡嘎山东坡海螺沟的河川径流特征   总被引:4,自引:1,他引:4  
对贡嘎山高山水文观测试验系统进行了简要介绍,并对海螺沟冰川河以及黄崩溜沟的径流特征进行了初步探讨。由于大气降水同是冰川河及黄崩溜沟径流的重要补给来源,故其径流量的季节变化明显带有大气降水过程的烙印,显得丰、枯分明。在冰川河,冰雪融水和地下水在枯水季节的稳定补给改变了大气降水对冰川河径流的年内分配过程;在黄崩溜沟,由于冰雪融水和地下水对其径流的补给非常有限,大气降水过程对其径流过程的影响便明显大过冰川河。  相似文献   
137.
Proglacial suspended sediment transport was monitored at Haut Glacier d'Arolla, Switzerland, during the 1998 melt season to investigate the mechanisms of basal sediment evacuation by subglacial meltwater. Sub‐seasonal changes in relationships between suspended sediment transport and discharge demonstrate that the structure and hydraulics of the subglacial drainage system critically influenced how basal sediment was accessed and entrained. Under hydraulically inefficient subglacial drainage at the start of the melt season, sediment availability was generally high but sediment transport increased relatively slowly with discharge. Later in the melt season, sediment transport increased more rapidly with discharge as subglacial meltwater became confined to a spatially limited network of channels following removal of the seasonal snowpack from the ablation area. Flow capacity is inferred to have increased more rapidly with discharge within subglacial channels because rapid changes in discharge during highly peaked diurnal runoff cycles are likely to have been accommodated largely by changes in flow velocity. Basal sediment availability declined during channelization but increased throughout the remainder of the monitored period, resulting in very efficient basal sediment evacuation over the peak of the melt season. Increased basal sediment availability during the summer appears to have been linked to high diurnal water pressure variation within subglacial channels inferred from the strong increase in flow velocity with discharge. Basal sediment availability therefore appears likely to have been increased by (1) enhanced local ice‐bed separation leading to extra‐channel flow excursions and[sol ]or (2) the deformation of basal sediment towards low‐pressure channels due to a strong diurnally reversing hydraulic gradient between channels and areas of hydraulically less‐efficient drainage. Copyright © 2005 John Wiley & Sons, Ltd.  相似文献   
138.
Stable isotope data on humid tropical hydrology are scarce and, at present, no such data exist for Borneo. Delta18O, δ2H and δ13C were analysed on 22 water samples from different parts of the Sungai (river) Niah basin (rain, cave drip, rainforest pool, tributary stream, river, estuary, sea) in north‐central Sarawak, Malaysian Borneo. This was done to improve understanding of the modern stable isotope systematics of the Sungai Niah basin, essential for the palaeoenvironmental interpretation of the Late Quaternary stable isotope proxies preserved in the Great Cave of Niah. The Niah hydrology data are put into a regional context using the meteoric water line for Southeast Asia, as derived from International Atomic Energy Agency/World Meteorological Organization isotopes in precipitation network data. Although the Niah hydrological data‐set is relatively small, spatial isotopic variability was found for the different subenvironments of the Sungai Niah basin. A progressive enrichment occurs towards the South China Sea (δ18O ?4·6‰; δ2H ?29·3‰; δ13C ?4·8‰) from the tributary stream (δ18O ?8·4‰; δ2H ?54·7‰; δ13C ?14·5‰) to up‐river (δ18O c. ?8‰; δ2H c. ?51‰; δ13C c. ?12‰) and down‐river values (δ18O c. ?7·5‰; δ2H c. ?45‰; δ13C c. ?11‰). This is thought to reflect differential evaporation and mixing of different components of the water cycle and a combination of depleted biogenic δ13C (plant respiration and decay) with enriched δ13C values (due to photosynthesis, atmospheric exchange, mixing with limestone and marine waters) downstream. Cave drip waters are relatively enriched in δ13C as compared to the surface waters. This may indicate rapid degassing of the cave drips as they enter the cave atmosphere. Copyright © 2005 John Wiley & Sons, Ltd.  相似文献   
139.
Paired catchment studies have been widely used as a means of determining the magnitude of water yield changes resulting from changes in vegetation. This review focuses on the use of paired catchment studies for determining the changes in water yield at various time scales resulting from permanent changes in vegetation. The review considers long term annual changes, adjustment time scales, the seasonal pattern of flows and changes in both annual and seasonal flow duration curves. The paired catchment studies reported in the literature have been divided into four broad categories: afforestation experiments, deforestation experiments, regrowth experiments and forest conversion experiments. Comparisons between paired catchment results and a mean annual water balance model are presented and show good agreement between the two methodologies. The results highlight the potential underestimation of water yield changes if regrowth experiments are used to predict the likely impact of permanent alterations to a catchment's vegetation. An analysis of annual water yield changes from afforestation, deforestation and regrowth experiments demonstrates that the time taken to reach a new equilibrium under permanent land use change varies considerably. Deforestation experiments reach a new equilibrium more quickly than afforestation experiments. The review of papers reporting seasonal changes in water yield highlights the proportionally larger impact on low flows. Flow duration curve comparison provides a potential means of gaining a greater understanding of the impact of vegetation on the distribution of daily flows.  相似文献   
140.
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