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91.
水口山矿田花岗质潜火山杂岩的成因特征   总被引:5,自引:1,他引:5  
水口山矿田内发育的花岗质岩石并非是互不联系的单体,而是一套由地下火山作用一潜火山作用在特定的构造条件和不同深度环境下,以不同方式形成的并规律结合的岩浆岩组合──花岗质潜火山杂岩。包括浅成(超浅成)侵入的花岗闪长质岩石、次火山侵入的英安份岩质岩石及其伴生的隐爆碎屑岩类。老鸦巢Ⅳ号角砾岩是英安玢岩质母岩浆在超浅成环境下隐蔽爆破而形成的隐爆角砾岩,它至少存在三条标志以区别于其它各类角砾岩。这套潜火山杂岩具过渡性地质地球化学特征。  相似文献   
92.
二维地电条件下充电法地形改正的一种方法   总被引:2,自引:0,他引:2  
本文首先讨论了充电法地形改正方法及存在的问题,提出了一种基于比值法思想的地改方法,经理论模型验算表明,有较好的地改效果  相似文献   
93.
Numerical modeling of 3-D terrain effect on MT field   总被引:1,自引:0,他引:1  
Using the boundary element method, the numerical modeling problem of three-dimensional terrain effect on magnetotelluric (MT) field is solved. This modeling technique can be run on PC in the case of adopting special net division. The result of modeling test for 2-D terrain by this modeling technique is basically coincident with that by 2-D modeling technique, but there is a great difference between the results of 3-D and 2-D modeling for 3-D terrain. Project supported by the National Natural Science Foundation of China.  相似文献   
94.
地幔热柱具有多级演化特征。河淮亚热柱顶部地幔物质以薄板状斜插至燕山造山带之下,燕山造山带轴部东西向尚义-赤城韧性剪切带与太行山构造岩浆带轴部北北东向乌龙沟-上黄旗韧性剪切带交汇叠加,使深部中下地壳应变软化岩石及深部幔源物质减压释荷产生深熔岩浆并上侵,从而加速了造山带的上隆速度,并可形成地幔热柱的第三级构造单元——幔枝构造。其中隆升较快的地段发育成为典型的变质核杂岩构造。幔枝构造控制着构造变形-岩浆活动-蚀变变质-成矿作用统一体系,并形成与幔枝构造密切相关的内带为金(铜钼)、外带为银(铅锌)多金属的成矿系列。论述了不同构造部位的成矿特征及其相关性、统一性。据此提出了在有利构造部位(参照已有矿点分布)扩大找矿和向深部扩大找矿的认识。  相似文献   
95.
刘希强  林怀存  黄耘  李红 《中国地震》2004,20(3):247-256
基于Morlet小波变换,提出一种新的定量划分地震活跃期或平静期的分析方法,形成了根据复小波变换得到不同周期累加能谱极大值点变化、实小波变换振动周期谱时频分布以及指定周期的小波振动周期随时间变化的极值分布规律来研究地震活动韵律性及其时变特征的物理思路。通过对全球、中国大陆和华北地区浅源地震年释放能量的时间序列分析。对研究区强震活动的韵律性及其时变特征有了新的认识。根据目前强震活动具有的韵律性,结合历史地震活动情况,对未来研究区地震趋势进行了初步分析。  相似文献   
96.
内蒙古满都拉泥盆纪基性火山岩特征及其形成环境   总被引:7,自引:0,他引:7  
满都拉西部出露的蛇绿混杂岩中橄榄辉长岩的单颗粒锆石U-Pb年龄(385.6±1.7)Ma,显示该蛇绿岩形成于早泥盆世晚期。其中的基性火山岩岩块为一套浅变质的枕状玄武岩、橄榄玄武岩,多与超基性岩岩块伴生。玄武岩的SiO2为47.16%~51.93%,TiO2为1.44%~2.13%,Al2O314.08%~17.51%,Na2O3.42%~5.39%,K2O0.22%~0.83%;具低钾特点,显示拉斑玄武岩特征。其富集大离子亲石元素Rb,Ba,Th和U,贫高场强元素Zr,Ti,Y等,似岛弧玄武岩或岛弧-洋中脊过渡型玄武岩或弧后盆地玄武岩。ΣREE为(113.130~189.560)×10—6,LREE/HREE为0.684~1.369,配分曲线呈右缓倾、平坦型,显示岛弧、洋中脊或E-洋中脊玄武岩特征。根据岩石学、岩石地球化学特征,结合区域构造背景,认为该套火山岩或该蛇绿岩的形成环境为弧后盆地。  相似文献   
97.
俄罗斯远东金属矿床形成条件的古地球动力学分析   总被引:1,自引:0,他引:1  
根据本区地质构造的新资料,提出了区域板块构造模型。研究了从俯冲到加利福尼亚型转换和由后者又到俯冲的古地球动力学环境更替的意义。这种更替发生在对本区最重要的中—新生代历史时期,对区域成矿带整体乃至一些金属矿床的形成具有重要影响。论证了一些地体性质,尤其是俯冲-增生杂岩对矿床形成的重要意义。  相似文献   
98.
The Sanchazi mafic-ultramafic complex in Mianlue tectonic zone, South Qinling can be subdivided into two blocks, i.e. Sanchazi paleo-magmatic arc and Zhuangkegou paleo-oceanic crust fragment (ophiolite). The Sanchazi paleo-magmatic arc is mainly composed of andesite, basaltic and basalt-andesitic gabbro (or diorite), andesitic dyke, plagiogranite and minor ultramafic rocks, which have typical geochemical features of island arc volcanic rocks, such as high field strength element (e.g. Nb, Ti) depletions and lower Cr, Ni contents. The Light rare earth element (LREE) and K enrichments of these rocks and zircon xenocrystals of 900 Ma from plagiogranite suggest that this magmatic arc was developed on the South active continental margin of the South Qinling micro-continent. The U-Pb age of (300 ± 61)Ma for zircons from plagiogranite indicates that the Mianlue paleo-oceanic crust was probably subducted underneath the South Qinling micro-continent in Carboniferous. This is consistent with the formation time (309Ma) of the Huwan eclogite originating from oceanic subduction in Dabie Mountains, suggesting that the Mianlue paleo-ocean probably extended eastward to the Dabie Mountains in Carboniferous. The high-Mg adakitic rocks in Sanchazi paleo-magmatic arc suggest that the subducted oceanic crust was relatively young (<25Ma) and hot.  相似文献   
99.
Yujiro  Nishimura  Philippa M.  Black  Tetsumaru  Itaya 《Island Arc》2004,13(3):416-431
Abstract A southwest dipping Mesozoic accretionary complex, which consists of tectonically imbricated turbiditic mudstone and sandstone, hemipelagic siliceous mudstone, and bedded cherts and basaltic rocks of pelagic origin, is exposed in northern North Island, New Zealand. Interpillow limestone is sometimes contained in the basaltic rocks. The grade of subduction‐related metamorphism increases from northeast to southwest, indicating an inverted metamorphic gradient dip. Three metamorphic facies are recognized largely on the basis of mineral parageneses in sedimentary and basaltic rocks: zeolite, prehnite‐pumpellyite and pumpellyite‐actinolite. From the apparent interplanar spacing d002 data for carbonaceous material, which range from 3.642 to 3.564 Å, the highest grade of metamorphism is considered to have attained only the lowermost grade of the pumpellyite‐actinolite facies for which the highest temperature may be approximately 300°C. Metamorphic white mica K–Ar ages are reported for magnetic separates and <2 µm hydraulic elutriation separates from 27 pelitic and semipelitic samples. The age data obtained from elutriation separates are approximately 8 m.y. younger, on average, than those from magnetic separates. The age difference is attributed to the possible admixture of nonequilibrated detrital white mica in the magnetic separates, and the age of the elutriation separates is considered to be the age of metamorphism. If the concept, based on fossil evidence, of the subdivision of the Northland accretionary complex into north and south units is accepted, then the peak age of metamorphism in the north unit is likely to be 180–130 Ma; that is, earliest Middle Jurassic to early Early Cretaceous, whereas that in the south unit is 150–130 Ma; that is, late Late Jurassic to early Early Cretaceous. The age cluster for the north unit correlates with that of the Chrystalls Beach–Taieri Mouth section (uncertain terrane), while the age cluster for the south unit is older than that of the Younger Torlesse Subterrane in the Wellington area, and may be comparable with that of the Nelson and Marlborough areas (Caples and Waipapa terranes).  相似文献   
100.
Noriko  Hasebe  Hiroaki  Watanabe 《Island Arc》2004,13(4):533-543
Abstract   To determine how local geological events contributed to the evolution of accretionary complexes and eventual exposure of rocks with different structural levels, geochronological mapping was carried out using fission track (FT) analysis at the Kii Peninsula, southwest Japan. At this site, the original zonal structure of Cretaceous accretionary complexes parallel to the subduction zone is disturbed by the northward projection of the Shimanto accretionary complex. Twenty-six zircon FT ages were obtained from an area of ∼12 km in an east–west direction and ∼15 km in a north–south direction, and classified into three groups: (i) ages ∼15 Ma (range ∼10–20 Ma), which are distributed along the northwest–southeast valley; (ii) ages of ∼50 Ma in the northwest of the study area; and (iii) ages older than those in Groups 1 and 2. Based on results from eight zircon FT length distributions, the Miocene ages appear to be the result of spatial variations in heat influx and cooling after the regional exhumation of the area, as recorded by FT ages of ∼50 Ma.  相似文献   
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