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龙特金锑矿成矿条件及成矿远景分析
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作者 王利文 路耀祖 《西部探矿工程》 CAS 2008年第1期123-126,共4页
从矿区岩性、构造、脉岩地质特征及地球化学特征几个方面逐层深入分析了矿区有利于金锑矿床成矿的地质因素,并结合矿区矿体特征、矿石特征、矿石类型对矿区的成矿远景在深部找矿前景及外围找矿远景两个方面进行了分析。
关键词 龙特 类复理石建造 中铁断裂 构造应力 阿尼玛卿山
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青海省兴海县浪贝儿金(锑)矿深部成矿预测
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作者 赵寿 王少华 +1 位作者 李恒恒 刘永乐 《青海科技》 2010年第2期27-30,共4页
浪贝儿地区金(锑)矿位于中铁断裂—切木曲断裂一带,两条断裂是区域上对金成矿的最有利的构造,次级构造发育,已发现的金矿化就受该断裂的控制。从地质环境分析,具备了区域上所有对金矿形成有利的地质条件,且已发现较强的矿化蚀变,因此认... 浪贝儿地区金(锑)矿位于中铁断裂—切木曲断裂一带,两条断裂是区域上对金成矿的最有利的构造,次级构造发育,已发现的金矿化就受该断裂的控制。从地质环境分析,具备了区域上所有对金矿形成有利的地质条件,且已发现较强的矿化蚀变,因此认为该地区是区域上最具找金远景地段之一。 展开更多
关键词 金锑矿 中铁断裂 成矿预测 浪贝儿地区
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Engineering Geological Assessment for Route Selection of Railway Line in Geologically Active Area:A Case Study in China 被引量:1
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作者 HUANG Run-qiu LI Yan-rong +1 位作者 QU Ke WANG Ke 《Journal of Mountain Science》 SCIE CSCD 2013年第4期495-508,共14页
The Cheng-Lan railway links Chengdu, a central city in Southwestern China, and Lanzhou, a central city in Northwestern China. The railway passes through the Longmenshan fault zone (Wenchuan earthquake happened there o... The Cheng-Lan railway links Chengdu, a central city in Southwestern China, and Lanzhou, a central city in Northwestern China. The railway passes through the Longmenshan fault zone (Wenchuan earthquake happened there on May 12, 2008), Minjiang fault zone, and Dongkunlun fault zone, which are all active. It runs over the Yangtze River and the Yellow River, and crosses high mountains and deep valleys. There exists, along the railway's alignment, different kinds of strata of hard granite and soft, weak metamorphic rocks such as carbonaceous slate, schist, and phyllite. It is, therefore, a key issue for such an infrastructure construction to assess the engineering geological conditions and risks, so as to mitigate or avoid possible georisks and to offer optional designs. Geological survey and georisk assessment along the railway corridor are carried out. Special attention is given to active faults, earthquakes and seismic zones. Based on these, discussions about geological aspects for route selection of the railway are conducted and countermeasures for georisk control are proposed accordingly. Main conclusions are achieved as follows: (1) Geohazards such as landslides, rockfalls and debries flows dominate both the route selection of the railway and the engineering structures (e.g., tunnels or bridges) adopted; (2) Tunnel has been proved to be an excellent structure for linear engineering in geologically active area; and (3) In the case where avoiding is impractical, necessary protection measures should be taken to engineering slopes in high earthquake intensity areas, especially the area with earthquake of Ms. 8 or greater. 展开更多
关键词 Railway route selection Geologicallyactive area EARTHQUAKE Active fault
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