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101.
袁春  王嵩嵩 《吉林地质》2012,31(1):80-83
古河流冲刷是影响煤矿规划、设计、开采方式不同的常见原因之一,并直接影响煤炭回收率、原煤质量。本文系统地分析其产生的原因及其危害,并结合生产实践,提出三种比较合理的预测方法。三种不同方法预测的综合利用,使之能更好的为生产服务。  相似文献   
102.
匡立春  齐雪峰 《地质学报》2011,85(2):224-233
本文记述了首次在西准噶尔布龙果尔地区发现的古油藏基本地质情况,探讨古油藏产出的地质层位及时代归属,对古油藏油源问题进行了初步分析,在此基础上提出古油藏成藏预测模式.认为上古生界古油藏所在的和布克河组一段地质时代为晚泥盆世法门期,中生界古油藏产出层位为下侏罗统八道湾组;推断和布克河组古油藏油源可能来自中泥盆统呼吉尔斯特组...  相似文献   
103.
据青藏高原北部1∶25万区域地质调查资料引对阿尔金和东昆仑造山带中主要出露的中酸性侵入岩类岩体地质、岩石地球化学特征进行对比研究,探讨原始古陆系统隶属关系结果得出:岩体类型、岩石类型组合、成岩时代、岩浆系列、岩浆源岩物性及形成的地球动力学背景均可完全进行对比,认为前晋宁和晋宁期S型花岗岩类,可能是在碰撞造山地球动力学背景下,由成年期TTG陆壳局部或循环熔融形成;加里东和华力西期以I型和A型花岗岩类为主,推测是在一种大陆岩石圈伸展减薄或是大陆裂谷动力学背景下,由地幔基性超基性岩浆上侵引起中下地壳岩石局部熔融产生的一种岩浆作用产物,源区可能是副变质类型榴辉岩相和麻粒岩相下地壳结合前人研究成果,初步提出阿尔金和东昆仑造山带古老基底同属一个古陆系统.  相似文献   
104.
额尔古纳地块古老变质岩系重新厘定为古元古界兴华渡口群与风水山片麻杂岩.对兴华渡口群与风水山片麻杂岩的岩石学、岩石化学化学与地球化学特征进行了分析,论述了本区的变质作用特征,并对额尔古纳地块的基底构造背景及成因模式进行了探讨.  相似文献   
105.
古气候变化与地下热水中氢氧稳定同位的关系   总被引:1,自引:0,他引:1  
关中盆地地下热水中氢氧稳定同位素的研究表明:研究区地下热水中氢氧稳定同位素组成变化与当地古气候变化具有良好的对应关系,古气候变化直接影响了地下热水接受补给时的氢氧稳定同位素组成。研究区地下热水的补给为更新世前古代大气降水。大约在8.2~10.2 kaB.P.和18.1~19.2 kaB.P.这两个时间段,可能是由于当时温度较低导致关中盆地地下热水补给偏少;关中盆地地下热水的补给过程受古气候的变化影响呈现非等速补给特征,可能存在一定的古地下水形成期。  相似文献   
106.
The northern Tien Shan is the northern front of the Himalayan mountain belt, which resulted from the collision between the Indian and Eurasian Plates. This region encompasses the most active seismic zones of the orogen, which generated the strongest (M > 8) earthquakes. Since there are scarcely any written accounts, the only way to trace back strong earthquakes is the paleoseismologic method. Since 1984 we have been studying the northwestern Issyk Kul’ basin, where there are differently directed anticlines, which constitute the Kungei meganticline. Here, several active tectonic structures (faults, folds) are located, whose development was accompanied by strong earthquakes. Our field studies of 2008 in the Iiri-Taldybulak Valley, along the adyrs (foothills) of the Kungei-Ala-Too Range, revealed two unknown historical earthquakes. The first one, which occurred along the southern rupture in the late 7th century A.D., gave rise to a seismic scarp; the latter broke through the river floodplain and a tash-koro (ancient settlement). The second one, which occurred along the northern rupture in the late 9th century A.D., increased the height of the seismic scarp, existing on the Early Holocene and older terraces. Note that this region already records a strong seismic event around 500 A.D. Archeologic data have revealed one more strong earthquake, which took place in the 14th century A.D. Note that the above-mentioned strong seismic events are coeval with the decline of the nomadic cultures (Wusun, Turkic, Mogul) in the northern Tien Shan and Zhetysu (Semirech’e).  相似文献   
107.
目前仍然坚守在防洪御潮第一线的钱塘江明清古海塘,由于年代久远,部分塘段的塘趾部位存在流土现象,因此,选用合理且不破坏古海塘风貌的塘基防渗加固方案来保护古海塘十分必要。以浙江海宁某明清古海塘试验段为依托,通过现场试验,对比研究了4种塘基防渗加固保护方案,通过有限元分析、现场渗透试验、加固后开挖检验、施工期对古海塘的影响监测等手段,分析总结了各加固方案的优缺点,得到了机械适当改制后的“塘趾旋喷注浆”方案为优选方案的结论,研究成果对下一步钱塘江临江古海塘保护工程的塘基防渗加固方案选取具有重要参考价值。  相似文献   
108.
The earthquakes of Calabria are among the strongest in the whole Mediterranean, and they all occurred between the disruptive sequences of 1638 and 1908 (6.7 ≤ M ≤ 7.2). Recent paleoseismological studies show that the return time of these events on their causative fault are larger than 1 ky, thus making ancient earthquakes not recognizable through ‘conventional’ historical research. On the other hand, in those areas characterized by highly erodible deposits, the identification and paleoseismic trenching of active seismogenetic faults has remained a challenge. In order to overcome these issues, we took an archaeoseismological approach for casting light on earthquake occurrence in one of these regions, i.e., the SE area of central Ionian Calabria (Marchesato region). The extensive traces of simultaneous and abrupt collapses in the Roman settlement of Capo Colonna (in the area of the sixth and fifth b.c. sanctuary of Hera Lacinia, near the town of Crotone) are evidence of a disruptive earthquake, which occurred possibly in the third century a.d. To the same event we ascribe the definitive collapse of the Hera Lacinia temple. Considering the seismotectonic framework of the region, this event could be tentatively associated with the active fault system which cuts from NW to SE the whole Sila massif and its Ionian slope, and which should be responsible for all the others known M > 6 earthquakes in the area.  相似文献   
109.
遥感考古在安徽的实践   总被引:3,自引:0,他引:3  
宫希成 《安徽地质》2001,11(4):292-296
为了查清寿春古城以及皖南土墩墓和台形遗址的范围和分布规律,1987年和1996年分另4对这两个地区进行了遥感考古,不仅达到了预期目的并发现了皖南西周时期古城址,获得多项重要成果,展示出遥感考古优势和良好的发展前景。通过实践,无论是对局部小区域还是对大范围的遥感考古,都取得一定经验。在此基础上,逐渐探索出一套适合安徽特点的遥感考古工作方法,为在安徽考古和文物保护工作中系统地开展遥感考古创造了条件。  相似文献   
110.
The polygenetic Albano maar is the most recent centre of the Colli Albani volcano, located just few kilometres to the south-east of Roma. Presently the maar hosts a 167.5 m deep crater lake, the deepest in Europe. The maar is to be considered quiescent, as phreatic activity is documented throughout the Holocene. This paper illustrates the close relationships between the activity of the maar and the history of settlement in the Roman region as recorded in the geology, archaeology, history and legends of the area. Severe fluctuations of the groundwater table and catastrophic overflows of the Lake Albano from the maar rim had occurred prior to and after the early prehistoric settlements dated in the maar area at the Eneolithic times (ca. III millennium B.C.). Repeated lahars occurred along the northwestern slope of the maar filling in the paleodrainage network and forming a vast plain. Paleohydraulic analyses on fluvial and lahar deposits originated from the Holocene phreatic activity of the Albano maar indicate sediment–water flows in excess of hundreds of cubic metres per second. Absolute age determinations of the paleosoil underlying one of the most recent deposits of the lahar succession at 5800 ± 100 yr B.P. (14C CAL) are in perfect agreement with the age of the overlying Eneolithic age settlements. The last catastrophic overflow is described in the Roman literature as a consequence of the anger of Poseidon against the Romans in 398 B.C. for their war against the Etruscans. In 394 B.C. the Romans decided to prevent the repetition of such events by the excavation through the maar crater wall of a 1.5 km long drain tunnel, which is still operational, keeping the lake 70 m below the lowest point of the maar rim. This tunnel drain may be regarded as the first prevention device for volcanic hazard in history and shows an unprecedented development of the engineering technology under the pressure of hazard perception. The surprising and still largely unknown results of this study are very important to redefine the hazard of the Roman region.  相似文献   
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