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1.
Xu  Yue  Shen  Zehao  Ying  Lingxiao  Zang  Runguo  Jiang  Youxu 《地理学报(英文版)》2019,29(7):1142-1158
Journal of Geographical Sciences - Understanding biogeographic patterns and the mechanisms underlying them has been a main issue in macroecology and biogeography, and has implications for...  相似文献   
2.
东沙海域潮汕坳陷中生界研究程度相对较低,油气分布规律不明,为了加强对该区油气分布和富集规律的研究,针对潮汕坳陷西部地质目标首次应用微生物地球化学勘探技术(MGCE),探讨其含油气性。MGCE技术以轻烃微渗漏理论为基础,采用地质微生物学方法和地球化学方法检测研究区海底表层的微生物异常和吸附烃异常,预测研究区下伏地层中油气的富集区及其油气性质。检测结果显示研究区西部凹陷的斜坡区微生物异常呈块状发育,轻烃微渗漏强度变化大,可能为潜在油气富集区,酸解吸附烃成果显示可能的油气性质为干气和凝析油气。  相似文献   
3.
张知春 《地质与勘探》2020,56(2):277-287
桂西北林旺金矿是近年来右江盆地新发现的卡林型金矿,位于乐业碳酸盐台地边缘乐业-浪全同生断裂带上。通过对矿区进行野外调查、岩矿鉴定并结合勘探成果进行综合研究,发现I号矿体群与断裂、褶皱的时空联系具有构造分带的特征,以F1断层为界,上盘褶皱鞍部发育石英杂砂岩夹粉砂质泥岩矿体,矿体近F1断层破碎带部位发育破碎的硅化构造岩带,F1下盘近破碎带部位发育强烈劈理化、炭化粉砂质泥岩带,指示矿区在印支期挤压过程中,石英杂砂岩顺着先存构造薄弱面以泥岩层为滑动系统,往上部逆冲并逐渐发生褶皱,产生许多张裂隙,成为成矿流体富集的场所。林旺金矿床是层滑-褶皱构造体系与成矿流体耦合作用的产物,分析了矿床构造成矿规律,提出了以层滑-褶皱运动机制为基础的成矿模式以及成矿远景。  相似文献   
4.
滦县-滦南县段滦河冲积平原铁矿群司家营铁矿区、马城铁矿区、坎上铁矿区、常裕铁矿、高官营铁矿总储量达几十亿吨,均覆盖有巨厚的第四系含水体,水文地质条件复杂,一直未能开采,成为“大水呆滞金属矿”,被视为开发过程中可能对区域水文地质环境造成较大影响的大水矿区,列为限制开采区,至本世纪初才相继解限投产.通过对司家营铁矿北区、司家营铁矿南区、马城铁矿区、坎上铁矿区、常裕铁矿、高官营铁矿等6处矿山的水文地质条件的分析,论述了滦县-滦南县段滦河冲积平原的水文地质特征.  相似文献   
5.
科技进步使得地震采集数据量及其精度实现质的飞跃,南沙海域的地震调查,采用国际先进水平的等离子震源,获得地震剖面精度优于3 m局部甚至可在1 m之内,为科学研究、工程、浅层资源、地质灾害预警等研究奠定基础.在南沙第四系识别出了七个地震反射界面,确定500 ms至海底沉积区间内地震层序与三期海平面升降并与冰期、间冰期对应,典型地震剖面展示第四纪至少有三套完整的具有三角洲顶积层、前积层、底积层的地震相证据,与全球的第四纪海平面的变化一致.精细的浅层地震结构表明:南沙的地质现象丰富,浅层断层非常发育,下切河谷、泥石流、滑坡等地质遗迹的形成的地震相清晰,是地质活动频繁的地区.  相似文献   
6.
李军  褚宏亮  李滨  贺凯  高杨 《中国岩溶》2020,39(4):453-466
文章在分析采矿型崩滑灾害发育特征的基础上,得出西南煤系地层山区地下采动型崩滑灾害常发生在层状碳酸盐岩与碎屑岩地层组成的褶皱翼部和核部的陡崖带上,与地形地貌、地层结构与地下采矿工程活动等因素关系密切,并指出薄矿层开采诱发大型山体崩滑灾害的具体过程:①采空后覆岩顶板塌落—覆岩顶板离层,采空区上覆岩层内部及层间自下而上应力传递;②地下水运移通道形成,并加快更大范围岩体结构破坏及扩展,加速了岩体结构面的松动与破坏;③上覆岩层不均匀沉降导致坡脚压裂,山体大型岩体结构面逐渐拉剪或压剪变形扩展,最终山体发生累积损伤与大规模崩滑灾害。此外,传统经验公式的计算方法对此类采矿型崩滑灾害已不适用,建议开展西南煤系地层山区地质结构与地下采动诱发崩滑灾害的相互作用关系、薄矿层采空区上部山体累积断裂损伤—岩体松动、裂隙扩展-岩溶管道流、裂隙流变化的链式响应机制、地下采动型崩滑灾害评价方法等关键科学问题的研究,以推动采矿型地质灾害防灾减灾工作的发展。   相似文献   
7.
新疆准噶尔盆地是中国油气、煤炭等能源矿产的重要储集场所。本次研究对搜集到的准噶尔盆地东缘五彩湾地区20个煤田钻孔资料进行二次开发利用,通过提取钻孔坐标、高程、地层分层厚度、颜色、测井曲线解译数据等重要信息,重新建立了钻孔数据集。数据集共包含20个钻孔资料的Excel数据库型数据,每个Excel数据库由“钻孔基本信息”、“测井解释岩性分层”、“地质编录柱状分层”、“综合柱状信息”、“钻孔岩性分层”、“地层名称及代号表”、“地层颜色”、“测井曲线配置”、“测井曲线数据”、“数据字典”等10个工作表组成。利用石文软件可读取数据集信息,绘制地层沉积三维立体图,该成果能够对准噶尔盆地东缘五彩湾地区砂体的空间展布、三维地质结构等提供更加直观的认识,对研究准噶尔盆地东缘五彩湾地区的沉积环境具有重要意义。  相似文献   
8.
The Ulleung Basin, East Sea/Japan Sea, is a Neogene back-arc basin and occupies a tectonically crucial zone under the influence of relative motions between Eurasian, Pacific and Philippine Sea plates. However, the link between tectonics and sedimentation remains poorly understood in the back-arc Ulleung Basin, as it does in many other back-arc basins as well, because of a paucity of seismic data and controversy over the tectonic history of the basin. This paper presents an integrated tectonostratigraphic and sedimentary evolution in the deepwater Ulleung Basin using 2D multichannel seismic reflection data. The sedimentary succession within the deepwater Ulleung Basin is divided into four second-order seismic megasequences (MS1 to MS4). Detailed seismic stratigraphy interpretation of the four megasequences suggests the depositional history of the deepwater Ulleung Basin occurred in four stages, controlled by tectonic movement, volcanism, and sea-level fluctuations. In Stage 1 (late Oligocene through early Miocene), syn-rift sediment supplied to the basin was restricted to the southern base-of-slope, whereas the northern distal part of the basin was dominated by volcanic sills and lava flows derived from initial rifting-related volcanism. In Stage 2 (late early Miocene through middle Miocene), volcanic extrusion occurred through post-rift, chain volcanism in the earliest time, followed by hemipelagic and turbidite sedimentation in a quiescent open marine setting. In Stage 3 (late middle Miocene through late Miocene), compressional activity was predominant throughout the Ulleung Basin, resulting in regional uplift and sub-aerial erosion/denudation of the southern shelf of the basin, which provided enormous volumes of sediment into the basin through mass transport processes. In Stage 4 (early Pliocene through present), although the degree of tectonic stress decreased significantly, mass movement was still generated by sea-level fluctuations as well as compressional tectonic movement, resulting in stacked mass transport deposits along the southern basin margin. We propose a new depositional history model for the deepwater Ulleung Basin and provide a window into understanding how tectonic, volcanic and eustatic interactions control sedimentation in back-arc basins.  相似文献   
9.
宁夏灵武幅、磁窑堡幅综合地质调查LS01孔设计深度800 m,钻探过程中钻遇200余米第四系未胶结松散地层,主要有砾石(漂砾)—粗砂—中砂—细砂互层,钻孔护壁难度大,容易发生掉块、塌孔事故,取心困难;进入第三系钻遇清水营组紫红色泥岩,地层造浆且易打滑;进入白垩系宜君组,钻遇365.91 m的破碎砾岩,地层松散破碎,钻进过程易卡钻,回转阻力大,回次进尺少,进尺慢。根据类似钻孔施工资料及地层情况最终采用成膜护壁冲洗液,钻进过程中穿过多层复杂地层,成膜护壁冲洗液在破碎砾岩孔段起到了很好的护壁效果,没有出现掉块、塌孔事故;岩心采取率满足地质设计要求,全孔平均采取率达到95.89%;节约了套管下入深度,终孔深度800 m,终孔口径124.00 mm。  相似文献   
10.
The southeast section of Zhongdian-Daju Fault is located in the northern part of Haba and Yulong Snow Mountain, belonging to the southwestern boundary of the secondary block in northwestern Sichuan, an important boundary fault striking 310°~320° on the whole. The nature of the fault, the age of its activity and the slip rate are of great significance for the analysis of the secondary block movement in the northwestern Sichuan and the intersection relationship with the eastern piedmont fault of Yulong Mountains. Based on the 1 ︰ 5 million-scale active fault geological mapping, this paper studies in detail the stratigraphic landform, scarp landform, surface rupture, typical fault profile and river terrace along the fault. Based on the research results, we divide the southeastern section of Zhongdian-Daju Fault into two sub-segments, the Majiacun-Daju sub-segment and the Daju-Dadong sub-segment, according to the geometric structure, fault landforms and fault activity. (1)Fault scarp:In the Majiacun-Daju sub-segment, the fault parallelly controls the two sides of the Haba fault depression. It cuts the late Pleistocene moraine deposits, forming a fault scarp of about 4.5km long and(14±2)m high. The continuity of the scarp is very good, and it is also very obvious in the remote sensing image. In the Daju-Dadong sub-segment, a scarp with a height of about 2m is formed, and an optical luminescence dating sample is collected from the upper part of the gravel layer on the second-order terrace to obtain an age of(22±2.2)ka. (2)Horizontal dislocation:In the Majiacun-Daju sub-segment, through the analysis of the development of outwash fans in the area and the measurement and induction of the gully dislocations, it is considered that there are at least three stages of outwash fans developed in the area and there may be four phases of faulting. That is, the earliest-stage outwash fan and gully are horizontally dislocated about 1km; the second-stage outwash fan and gully are horizontally dislocated about 47m, and the vertical dislocation is about(14±2)m; the gully in the third stage outwash fan is horizontally dislocated twice, the first dislocation formed a beheaded gully with a dislocation of 22m, and the second formed a beheaded gully with a dislocation of 8.5m. It is further proved that the fault has strong activity since the Holocene in the Majiacun to Daju area. In the Daju-Dadong sub-segment, there are no obvious horizontal dislocations in the alluvial deposits since the Holocene. Only 3~4 gullies are found to be offset right-laterally in the ridges east of Wenhe Village, with the maximum dislocation of 210m, which may be the older phase dislocation. (3)Surface rupture:In the northwest direction of Dabazi Village on the T3 terrace in the basin between Majiacun and Daju, an earthquake surface rupture zone is found, extending in the NW direction. The rupture zone left clear traces on the about 1m-thick, hard T3 terrace surface formed by calcification of sand gravels, and the overburden either upwarps and bulges, or ruptures, generates ground fissures, or forms small pull-apart "depressions" locally. However, the rupture zone is not large in size, about 350m long, 60m wide at the widest point, and 0.3~1.5m high. It is partially en-echelon or obliquely arranged, dominated by compressive ruptures. Through observation, the possibility of artificial transformation is ruled out for these upwarping bulges, ruptures or ground fissures. The fault section is found in the southeast direction of the rupture zone. The slickensides at the section show that the fault is dominated by right-lateral strike-slip with a small amount of thrust. In the eastern sub-segment, only intermittently distributed surface ruptures are found in the northern part of the village, and the scale is small. In summary, through the field geological survey, it is found that the Majiacun-Daju sub-segment is a Holocene active segment. Though the Daju-Dadong sub-segment also offset the late Pleistocene to Holocene strata, it is considered that its Holocene activity is weak in terms of either the dislocation amount or the slip rate of this segment. By analyzing the geological and geomorphological evidences, such as fault scarps, horizontal dislocation and surface ruptures along the fault, it is considered that the Majiacun-Daju sub-segment is a right-lateral strike-slip fault with a normal faulting component, and its vertical slip rate since the late Pleistocene is(0.4~0.8)mm/a, the horizontal slip rate is 1.5~2.4mm/a. The Daju-Dadong sub-segment is dominated by right-lateral strike-slip with a normal faulting component, and its vertical slip rate since the late Late Cenozoic is 0.1mm/a. The formation of the NW-trending surface rupture zone found in the Daju Basin is very young, where there are only two major earthquakes, namely, the MS6.4 1966 Zhongdian earthquake and the 1996 Lijiang MS7.0 earthquake, and both earthquakes produced NW-oriented surface rupture zones. Therefore, it cannot be ruled out that the rupture zone is a product of the 1966 Zhongdian MS6.4 earthquake or the 1996 Lijiang MS7.0 earthquake.  相似文献   
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