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331.
通过对山西组沉积特征及聚煤变化规律的研究,采用煤岩层组合特征、标志层、层间距、测井曲线形态和地震物性特征等方法,对井田内山西组的煤、岩层进行综合对比。确定了山西组主采煤层的赋存层位、形态及区内的构造方案,对周边地区找煤工作具有指导作用。  相似文献   
332.
东平县大洪顶山岩溶地貌类型属岩溶山地地貌单元,山坡顶部及陡峭坡段岩石裸露,岩溶裂隙发育,岩体切割破碎,边坡陡立。区内岩溶洞穴发育,岩溶景观资源众多。目前已发现的溶洞有6处,大洪顶山南坡3处,北坡3处,溶洞口出露位置呈NWW向展布,北部九仙洞已探测长度1862 m,南部神仙洞已探测长度2052.50 m,溶洞内岩溶景观发育不均匀,发育有石笋、石钟乳、石幔、石帽、边石等。区内岩溶洞穴发育规模宏大,景观资源丰富,属鲁西地区发育规模最大的溶洞,在北方地区具代表性、典型性、稀有性,属我国北方地区不可多得的地质自然遗产,具有良好的开发前景及旅游价值。  相似文献   
333.
通过对井田水文地质特征及矿井充水因素的分析,认为矿井的主要充水水源为3煤层顶底板砂岩裂隙含水层及三灰岩溶裂隙含水层。采用“大井法”对矿井涌水量进行了预算,确定矿井的正常涌水量为279 m3/h,预算结果为矿井的设计提供了科学依据。  相似文献   
334.
The Central Asian Orogenic Belt (CAOB) was produced as a consequence of the successive closure of the Paleoasian Ocean and the accretion of structures formed within it (island arcs, oceanic islands, and backarc basins) to the Siberian continent. The belt started developing in the latest Late Neoproterozoic, and this process terminated in the latest Permian in response to the collision of the Siberian and North China continents that resulted in closure of the Paleoasian ocean (Metcalfe, 2006; Li et al., 2014; Liu et al., 2009; Xiao et al., 2010; Didenko et al., 2010). Throughout the whole evolutionary history of this Orogenic Belt, a leading role in its evolution was played by convergent processes. Along with these processes, an important contribution to the evolution of the composition and structure of the crust in the belt was made by deep geodynamic processes related to the activity of mantle plumes.Indicator complexes of the activity of mantle plumes are identified, and their major distribution patterns in CAOB structures are determined. A number of epochs and areas of intraplate magmatism are distinguished, including the Neoproterozoic one (Rodinia breakup and the origin of alkaline rock belt in the marginal part of the Siberian craton); Neoproterozoic–Early Cambrian (origin of oceanic islands in the Paleoasian Ocean); Late Cambrian–Early Ordovician (origin of LIP within the region of Early Caledonian structures in CAOB); Middle Paleozoic (origin of LIP in the Altai–Sayan rift system); Late Paleozoic–Early Mesozoic (origin of the Tarim flood-basalt province, Central Asian rift system, and a number of related zonal magmatic areas); Late Mesozoic–Cenozoic (origin of continental volcanic areas in Central Asia).Geochemical and isotopic characteristics are determined for magmatic complexes that are indicator complexes for areas of intraplate magmatism of various age, and their major evolutionary trends are discussed. Available data indicate that mantle plumes practically did not cease to affect crustal growth and transformations in CAOB in relation to the migration of the Siberian continent throughout the whole time span when the belt was formed above a cluster of hotspots, which is compared with the African superplume.  相似文献   
335.
肖波 《地质与勘探》2014,50(1):182-191
[摘 要]赞比亚位于著名的中非新元古代沉积型铜(-钴)矿带上,铜带省和西北省是该国最主要的铜-钴矿集中分布区;相对于找矿程度已经很高的铜带省,西北省成矿地质条件优越,且地质工作程度较低,因此拥有巨大的找矿潜力,已成为该国找矿突破的重点区域。目前西北省主要著名的矿山/矿床有3个:坎桑希、卢穆瓦纳、卡伦比拉。这些铜-钴-金-铀-镍矿床的含矿地层、矿化特征与铜带省传统经典的沉积型铜-钴矿既有相似性,又明显具有差别。本文通过对西北省区域地质和已发现矿床地质特征的介绍,对该省的找矿潜力进行初步分析。  相似文献   
336.
The Illapel Plutonic Complex (IPC), located in the Coastal Range of central Chile (31°–33° S), is composed of different lithologies, ranging from gabbros to trondhjemites, including diorites, tonalites and granodiorites. U/Pb geochronological data shows that the IPC was amalgamated from, at least, four different magmatic pulses between 117 and 90 Ma (Lower to mid-Cretaceous). We present new paleomagnetic results including Anisotropy of Magnetic Susceptibility (AMS) from 62 sites in the plutonic rocks, 10 sites in country rocks and 7 sites in a mafic dyke swarm intruding the plutonic rocks.Remanent magnetizations carried by pyrrhotite in deformed country rock sediments nearby the intrusive rocks indicate that tilting of the sedimentary rocks occurred prior or during the intrusion. The paleomagnetic study shows no evidence for either a measurable tilt of the IPC or a significant rotation of the forearc at this latitude range. Moreover, new 40Ar/39Ar ages exclude any medium- to low-temperature post-magmatic recrystallization/deformation event in the studied samples. AMS data show a magnetic foliation that is often sub-vertical. Despite an apparent N–S elongated shape of the IPC, the large variations in the orientation of the AMS foliation suggests that this plutonic complex could be made of several units distributed in a N–S trend rather than N–S elongated bodies.Previous works have suggested for this area a major shift on tectonic evolution from highly extensional during Lower Cretaceous to a period around 100 Ma, associated with exhumation and compressive deformation to conform the present day Coastal Range. The low degree of anisotropy and the lack of evidence for a tectonic fabric in the intrusive rocks indicate that the shift from extensional to compressional should postdate the emplacement of the IPC, i.e. is younger than 90Ma.  相似文献   
337.
Magmatism at Andean Central Volcanic Zone (CVZ), or Central Andes, is strongly influenced by differentiation and assimilation at high pressures that occurred at lower levels of the thick continental crust. This is typically shown by high light to heavy rare earth element ratios (LREE/HREE) of the erupted lavas at this volcanic zone. Increase of these ratios with time is interpreted as a change to magma evolution in the presence of garnet during evolution of Central Andes. Such geochemical signals could be introduced into the magmas be high-pressure fractionation with garnet on the liquidus and/or assimilation from crustal rocks with a garnet-bearing residue. However, lavas erupted at San Pedro–Linzor volcanic chain show no evidence of garnet fractionation in their trace element patterns. This volcanic chain is located in the active volcanic arc, between 22°00S and 22°30S, over a continental crust ∼70 km thick. Sampled lavas show Sr/Y and Sm/Yb ratios <40 and <4.0, respectively, which is significantly lower than for most other lavas of recent volcanoes in the Central Andes. In addition, 87Sr/86Sr ratios from San Pedro–Linzor lava flows vary between 0.7063 and 0.7094. This is at the upper range, and even higher than those observed at other recent Central Andean volcanic rocks (<0.708). The area in which the San Pedro–Linzor volcanic chain is located is constituted by a felsic, Proterozoic upper crust, and a thin mafic lower crustal section (<25 km). Also, the NW–SE orientation of the volcanic chain is distinctive with respect to the N–S orientation of Central Andean volcanic front in northern Chile. We relate our geochemical observations to shallow crustal evolution of primitive magmas involving a high degree of assimilation of upper continental crust. We emphasize that low pressure AFC- (Assimilation Fractional Crystallization) type evolution of the San Pedro–Linzor volcanic chain reflects storage, fractionation, and contamination of mantle-derived magmas at the upper felsic crust (<40 km depth). The ascent of mantle-derived magmas to mid-crustal levels is related with the extensional regime that has existed in this zone of arc-front offset since Late-Miocene age, and the relatively thin portion of mafic lower crust observed below the volcanic chain.  相似文献   
338.
川中地区震旦系灯影组储层时代老、埋藏深,经历了多期构造运动和成藏历史。岩芯观察和显微薄片观察结果表明,震旦系灯影组储层经历了六期流体充注,分别是第一世代沥青→第二世代白云石→第三世代粗晶-巨晶白云石→第四世代粗晶-巨晶白云石→第五世代沥青→第六世代方解石/石英,每期矿物中对应的流体包裹体特征记录了震旦系从早期形成的古油藏被破坏→古油气藏再形成→油裂解气和古气藏形成→水溶气形成→现今气藏形成的成藏事件和完整的成藏过程。第二世代-第四世代矿物形成于深埋过程中,是古油气藏形成期的产物,矿物的Sr、C、O稳定同位素表明向震旦系灯影组充注的流体主要是外源流体,具有从深部向浅部流动运移的特征;第六世代矿物所记录的水溶气的形成,也是震旦系最重要的成藏事件;现今的震旦系灯影组气藏主要是晚白垩世以来的构造隆升导致的水溶气脱溶聚集以及油气藏调整和改造的结果。  相似文献   
339.
中亚前陆盆地地层中氧同位素和孢粉,以及黄土高原和北太平洋粉尘记录均表明,中中新世(16~12 Ma)中亚地区气候干旱化显著增强。然而,对其驱动机制的认识不一,包括全球降温、中亚地区的构造抬升、高海拔的"原西藏高原"的存在、副特提斯洋的退缩以及上述几者联合作用的结果。不过,全球降温(约14 Ma)、"原西藏高原"的抬升(≥40 Ma)、以及副特提斯洋退缩的时间(34 Ma)与中中新世中亚气候干旱化增强的时间(16~12 Ma)不一致。因此,它们可能是导致中中新世中亚干旱化增强的重要边界条件,或者是有利的辅助条件,但没起直接的主导作用。对塔里木盆地东南缘江尕勒萨伊剖面的前期研究结果表明,阿尔金山快速抬升始于16 Ma。在获得了磁性地层年龄的基础上,前人的碳氧同位素数据指示了16 Ma江尕勒萨依地区气候干旱化逐渐增强。鉴于同时发生,笔者把16 Ma气候干旱化增强归因于此时阿尔金山的快速抬升。从更广范围看,中中新世中亚发生了广泛的的地壳缩短变形和造山运动。对中国黄土高原的红粘土以及北太平洋粉尘沉积的多指标分析(磁化率、粒径、粉尘通量以及物源等)表明,中中新世中亚构造抬升及其引起的雨影效应是中亚气候干旱化增强的主因。  相似文献   
340.
黔中—渝南沉积型铝土矿区域成矿模式及找矿模型   总被引:2,自引:2,他引:0       下载免费PDF全文
刘平  廖友常 《中国地质》2014,41(6):2063-2082
黔中—渝南沉积型铝土矿的区域成矿模式概括如下:志留纪末的广西运动和泥盆纪末的紫云运动等,可能都是在峨眉地幔柱演化的壳幔相互作用阶段,因地幔柱向地壳大量输送物质和辐射能量,从而引发的地壳升降运动,在此期间,全区大面积抬升,形成长期隆起区;泥盆纪末准平原化;早石炭世岩关期气候湿热,暴露地表的早古生代岩石全面红土化、钙红土化,形成的含三水铝石红土风化壳物质,为沉积型铝土矿提供了物源。修文及息烽—遵义沉积区,于早石炭世大塘期早—中期沉积了铝土矿含矿岩系—九架炉组。绥阳—正安—道真沉积区,在晚石炭世的黄龙组石灰岩沉积并钙红土化之后,于马平期沉积了铝土矿含矿岩系的大竹园组。3个沉积区的铝土矿含矿岩系,都是在以陆相为主的环境中沉积形成的。在成岩阶段,铝土矿中的三水铝石逐渐变质为硬水铝石。由于各沉积区形成含三水铝石红土风化壳的母岩不同,由此沉积而成的铝土矿及其含矿岩系,在化学成分和矿物成分上也就有所差异。  相似文献   
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