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1.
本文对北京地区中元古代及中生代火山岩的地质学、岩石学、矿物化学、地球化学、岩石成因学及构造环境学进行了综合研究。对火山岩的时空分布及成分变化进行了论述,对酸度频率及岩浆系列进行了分析,对构造环境及拉张距离进行了估算,对岩浆的来源及演化机理进行了探讨。  相似文献   

2.
河北省地质构造重力推断解释   总被引:1,自引:0,他引:1  
通过对河北省重力场特征的深入研究,结合地质及其他物探资料,进行了地质构造的推断解译,划分了全省主要的构造单元及断裂构造,圈定了岩体、盆地及凹陷,为矿产资源潜力评价及成矿预测提供了重要信息。  相似文献   

3.
介绍了浮球式海底取样器的结构、性能特点、典型应用及性能参数;论述了振动式及振动冲击式贯入理论的原理;并分析了海流及船体飘移对海上取样作业的影响及解决办法。  相似文献   

4.
贵州雷山县CK1地热勘探井施工技术   总被引:1,自引:0,他引:1       下载免费PDF全文
赵岩  仲玉芳 《探矿工程》2014,41(10):32-35,40
通过对贵州省雷山县CK1地热井的特点及施工难点的研究,提出了地热井的钻进及完井工序的要求及改进,并针对现地勘单位地热资源开发的实际情况进行了总结和分析,找出了存在的问题及解决的办法。总结了地热田的开发经验。  相似文献   

5.
阐述了矿区所处的大地构造位置、区域地质及矿区地质特征,较详细地介纠了矿体及矿石特征,重点介绍了该矿体的矿化特征及找矿标志,为今后在该区及其他地区寻找同类矿床提供指导。  相似文献   

6.
本文总结分析了在日本京都召开的第二十九届国际地质大会上沉积学及地层学方面研究的主要特点及动态,其中重点介绍了层序地层学及海平面变化研究的最新进展,同时还概述了海洋事件沉积及地层学方面的新动向。  相似文献   

7.
深圳市地下水资源评价及开发利用对策研究   总被引:1,自引:1,他引:1  
本文详细论述了深圳市地下水的类型及分布,评价分析了该区地下水的资源量及水质状况,指明了地下水的富集地段及开发前景,并针对水资源开发利用中存在的问题提出了一系列对策。  相似文献   

8.
黄志鹏  董燕军 《岩土力学》2006,27(Z1):1175-1178
介绍了锦屏一级水电站右岸导流洞的工程地质概况及施工期安全监测成果,对围岩及边坡的变形、应力规律及特征进行了深入的分析,分析结果表明,隧道围岩及边坡处于稳定状态。  相似文献   

9.
刘志国 《探矿工程》2005,32(6):57-58
郑州市某千米地热井水温、水量及水质发生变化,,采用修补及酸化处理的工艺,处理后水温、水量及水质均达到了要求。介绍了处理技术及处理效果。  相似文献   

10.
《地下水》2020,(4)
基于某地铁区间隧道工程地质分析,在区间隧道各标段内衬砌方式依序采用单线Vc型、单线Vd型及单渡线B型,并给出了相应的支护设计参数,施工方式采用台阶法及CRD法。针对区间隧道开挖及支护施工工艺,给出了区间竖井施工工艺及各工序的具体施工方法及流程;研究了超前预报与超前支护施工工艺参数及注意事项,获得了台阶法与CRD法施工工艺流程,分析了二次衬砌施工与初期支护施工的联系。论文为地铁区间隧道支护方案设计及施工工艺研究提供一定的参考依据。  相似文献   

11.
RS和GIS技术集成及其应用   总被引:13,自引:3,他引:10  
本文简要地介绍了RS(遥感图像处理系统)和GIS(地理信息系统)技术及其集成的基本概念和方法。讨论了RS和GIS技术及其集成的内在涵义、相互关系,认为RS是GIS重要的外部信息源,是其数据更新的重要手段,尤其对于全球性的 地理动力学分析,更必须有RS所提供的覆盖全球的动态数据与GIS的结合。反之,GIS则可以提供RS所需要的一些辅助数据,以提高RS图像的信息量和分辨率,同时,GIS可以将实地调查所  相似文献   

12.
在分析和总结前人对红藻石和蓝藻石研究成果基础上,结合岩石薄片显微镜下观察实例,发现在以往碳酸盐岩颗粒分类中没有红藻石和蓝藻石的合适位置。鉴于红藻石重要的成因意义和造礁作用,有必要明确红藻石的概念和归属。珊瑚藻本身极易钙化,经生物矿化作用最终保存下来的珊瑚藻屑一直放在生物碎屑中,而红藻石是由非固着的珊瑚藻构成的钙质独立结核,因此也可以被划分到生物碎屑中。蓝藻石作为蓝细菌钙化作用的产物,同时鉴于蓝藻石的广泛存在,把钙化蓝细菌形成的核形石命名为蓝藻石,这一重要概念从提出到现在一直被使用。然而蓝绿藻概念已变更为蓝细菌,蓝藻石的形成与藻类无关,显然将其称作蓝菌石更加确切。因此,应将红藻石和蓝藻石分别归为生物碎屑和核形石当中,并用新的术语蓝菌石替代蓝藻石。其意义在于使红藻石和蓝藻石的概念及归属更为规范,并为碳酸盐岩颗粒的深入研究提供有益线索。  相似文献   

13.
为解决5000 m地质岩芯钻探基础准则与依据缺失问题,提高钻探装备的自动化、智能化水平,启动了5000 m智能地质钻探技术装备研发工作,通过钻机装备、钻探器具研制,钻探工艺技术研究并经试验示范验证,取得多项创新成果,形成了5000 m地质岩芯钻探技术体系。通过特深孔钻孔口径与管柱规格优化研究、钻杆规格设计、装备性能参数选配,形成了5000 m地质岩芯钻探技术规范体系;基于5000 m特深孔地质岩芯钻机、孔口自动化作业装置等关键设备研制,实现了绳索取芯钻进的孔口作业全流程自动化,形成了轻量化钻机孔口管柱柔顺控制技术;基于复杂地层孔内工况判别、钻进参数优化与轨迹优化控制等技术问题研究,形成了多源信息融合的地面与孔底一体化钻进过程智能控制技术;基于高性能薄壁绳索取芯钻杆和系列小口径高效钻具研制,形成了大深度绳索取芯系列钻杆钻具技术;研发了耐高温环保型冲洗液、生物破胶废浆处理技术、“广谱型”双浆堵漏技术,形成了绿色环保型冲洗液体系与护壁堵漏技术。  相似文献   

14.
自动化智能化地质岩芯钻探技术装备研发与应用   总被引:1,自引:0,他引:1       下载免费PDF全文
张金昌  尹浩  刘凡柏  黄洪波  梁健  王瑜  吴敏  陶士先 《地质论评》2022,68(2):2022030029-2022030029
为解决5000 m地质岩芯钻探基础准则与依据缺失问题,提高钻探装备的自动化、智能化水平,启动了5000 m智能地质钻探技术装备研发工作,通过钻机装备、钻探器具研制,钻探工艺技术研究并经试验示范验证,取得多项创新成果,形成了5000 m地质岩芯钻探技术体系。通过特深孔钻孔口径与管柱规格优化研究、钻杆规格设计、装备性能参数选配,形成了5000 m地质岩芯钻探技术规范体系;基于5000 m特深孔地质岩芯钻机、孔口自动化作业装置等关键设备研制,实现了绳索取芯钻进的孔口作业全流程自动化,形成了轻量化钻机孔口管柱柔顺控制技术;基于复杂地层孔内工况判别、钻进参数优化与轨迹优化控制等技术问题研究,形成了多源信息融合的地面与孔底一体化钻进过程智能控制技术;基于高性能薄壁绳索取芯钻杆和系列小口径高效钻具研制,形成了大深度绳索取芯系列钻杆钻具技术;研发了耐高温环保型冲洗液、生物破胶废浆处理技术、“广谱型”双浆堵漏技术,形成了绿色环保型冲洗液体系与护壁堵漏技术。  相似文献   

15.
赵振华  严爽 《岩石学报》2019,35(1):31-68
单颗粒矿物微量元素激光原位定量分析测试数据的大量积累和研究,使矿物成为矿床地球化学研究和矿床勘查的重要示踪剂。本文重点选择磁铁矿、磷灰石、石榴子石、榍石、锆石、绿泥石和绿帘石等的原位分析研究所获得的认识,介绍单颗粒矿物成分组合及变化在矿床类型划分、成矿年龄测定、氧逸度、成矿过程与物质来源、找矿与勘探等方面的应用。不同矿床类型中普遍存在的矿物,如磁铁矿、磷灰石等的微量元素含量及组合差异,提供了矿床类型识别的标志。单颗粒矿物,特别是矿石矿物和密切共生矿物如锡石、铌钽铁矿、赤铁矿、石榴子石、方解石等的原位定年,使成矿年龄的直接准确测定成为现实。矿物中变价元素,如Fe、V、Mn、Ce、Eu含量和/或比值的变化,指示了成矿过程氧逸度及其变化特点。从矿物核部向震荡环带与边部的微量元素含量或同位素组成的变化,示踪了成矿过程中流体来源或性质的变化。斑岩和矽卡岩矿床中与成矿作用关系密切的蚀变矿物,如绿泥石、绿帘石的形成温度、特征微量元素比值,如Ti/Sr、Ti/Co、V/Ni、Mg/Sr等,与距矿床中心距离呈线性函数关系,可定量预测距矿床中心的距离,使以绿泥石、绿帘石为代表的找矿指示矿物研究迅速发展。  相似文献   

16.
宋兵  蔡健 《岩土力学》2011,32(8):2313-2318
研究桩与岩石的侧摩阻力组成及影响因素,有助于准确地把握桩与岩石的侧摩阻力取值原则。在对桩与岩层的摩擦黏着机制分析的基础上,指出界面力与岩层抗剪力的区别,并提出岩层的极限侧摩阻力由界面强度及岩石强度两者较弱一方决定的观点。进行了中风化岩中4组混凝土短桩的抗压及抗拔极限摩阻力对比试验,获得了相应的极限侧摩阻力值以及抗拔与抗压极限侧摩阻力值的比值。抗拔时由于上部岩层对桩侧岩层的约束作用较弱,会使侧摩阻力相对抗压时有较大降低。通过有限元计算及其与试验值的比较分析,研究短桩与岩层的界面强度条件,发现岩层和混凝土灌注桩间的侧摩阻力中界面黏着力占很大比例。  相似文献   

17.
Etch and intracutaneous landforms and their implications   总被引:1,自引:0,他引:1  

Many landforms, major and minor, and including plains of various types, inselbergs, boulders, flared slopes, Rillen and rock basins, are initiated beneath the land surface, at the weathering front. They have evolved in various lithological settings. Most are formed by differential moisture attack, either controlled, or strongly influenced, by bedrock structure. Such forms of subsurface derivation may be differentiated into etch or subcutaneous features that were initiated at the base of the regolith, and intracutaneous forms that had their origin within the weathering zone. Although the agent or agents responsible for eroding the regolith and exposing the bedrock forms have varied in space and time, the similarity of etch and intracutaneous forms is such that their basic morphology persists regardless of the climatic regime in which they now occur. As the regolith is widely developed on the land surface, the forms initiated beneath and within it cannot be taken as climatic indicators. Indeed, like structural forms, these convergent forms represent a varied but significant azonal element in the physiographic landscape.  相似文献   

18.
Cumulate and Cumulative Granites and Associated Rocks   总被引:1,自引:0,他引:1  
Abstract. Processes that move crystals relative to melt, that is crystal fractionation, are of major importance in producing variations that are observed within cogenetic suites of granites. In low‐temperature granite suites, crystal fractionation initially involves the progressive separation of crystals residual from partial melting from that partial melt. Once separation of those crystals, or restite, has been completed, further fractionation may occur through the separation of crystals that had precipitated from the melt, the process known as fractional crystallization. High‐temperature granite magmas are largely or completely molten and elements such as Ca, Mg and Fe, and their associated minor elements, are in that case dissolved in the melt. Such magmas, particularly those that are more potassic and hence contain a higher fraction of low temperature melt, may evolve compositionally through fractional crystallization. Cumulate rocks result, comprising a framework of cumulus minerals with interstitial melt. In this process some of the melt is also displaced to form more felsic rocks. Such cumulate rocks may have distinctive chemical compositions, but that is often not the case. Distinctive features include SiC>2 contents near or below 50 % in rocks that are transitional in the field to more felsic granites, very high Cr and Ni, very low K, P, Ba, Rb and Zr, and anomalous abundances of the anorthite components Ca and Al. These rocks may also have positive Eu anomalies. Cumulate rocks do not necessarily have distinctive textures, at least as such features are understood at this time. Fractional crystallization can also involve the movement of precipitated crystals relative to melt. We refer to rocks as cumulative when formed from the fractions in which the abundance of crystals has increased. The production of cumulative granites typically occurs at more felsic melt compositions than is the case for cumulate granites, and this process may have its greatest significance in the fractional crystallization of the felsic haplogranites. Relative to felsic granites of broadly similar compositions lying on a liquid line of descent, cumulative granites contain more Ca, reflecting the addition from elsewhere of plagioclase crystals with solidus compositions. The abundances of Sr and Ba may be high to very high, and sometimes there are positive Eu anomalies. Cumulative I‐type granites may have low abundances of Y and the heavy REE, while the S‐type granites can be very distinctive with anomalously high abundances of Th and the heavy REE resulting from the concentrating of monazite. Generally, but not always, those who propose fractional crystallization as a mechanism for producing compositional variation within a suite of granites do not state whether the rocks in that particular case are thought to lie on a liquid line of descent or are cumulates/cumulative, although it is generally presumed that they were melts. Our experiences in eastern Australia have shown that the mechanism of fractional crystallization was quantitatively not as important during granite evolution as many workers would expect. However, there are some excellent examples of that process, most notably the Boggy Plain Supersuite. Overall in eastern Australia, varying degrees of separation of restite is a much more common mode of crystal fractionation, and that may also be seen to be the case for some other granite provinces if they are examined with that possibility in mind.  相似文献   

19.
现代新技术新方法与工程地质   总被引:1,自引:0,他引:1  
本文阐述了瓣技术,新方法应用于工程地质研究取得的进展,内容涉及原位测试技术,数值模拟技术,物理模拟技术和物探测技术,这些方面的研究推动了工程地质学的发展。  相似文献   

20.
The impact of gigantic meteorites momentarily creates extremely high pressures and temperatures, leading to the formation of distinctive objects — impact breccias and impactites — at the points where they fall. The Zhamanshin crater is one such place. This annular structure has a diameter of about 10 km, contoured by a low rim made up of a body of shattered Paleozoic rocks thrown out from the ring's center, from depths exceeding 100 - 200 m. Among these breccias have been found pieces and lenticular bodies of remelted rocks — impactites, called zhamanshinites. These thermally altered rocks from a series ranging from baked clays to cinder-like, partly recrystallized substances, glass, and black drops and spattered droplets (up to 1 - 5 cm) of isotropic glass that undoubtedly hardened as they fell through the air. The refused neogenic substances formed by selective evaporation are characterized by a considerable deficit of K and Na, excess Al2O3 and SiO2, a lack of H2O, and a sharp predominance of Fe+2 over Fe+3. Their characteristic shape and distinctive structure and composition suggests that these remelted droplets are tektites, which were called irgizites when first found in the USSR. Their occurrence in the meteorite crater confirms the idea of a genetic unity between tektites and impactites. Selective evaporation of the more volatile elements is characteristic of the surfaces of small planets lacking an atmosphere, but is not characteristic of the earth's surface. The processes and substances occurring at the impact points of gigantic meteorites are therefore unique on the earth, but highly typical of the surfaces of the Moon, Mars, Mercury, and other relatively small celestial bodies.  相似文献   

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