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71.
柴达木盆地北缘古生代超高压带中花岗质岩浆作用 总被引:38,自引:0,他引:38
吴才来 杨经绥 许志琴 Joseph L.WOODEN Trevor IRELAND 李海兵 史仁灯 孟繁聪 陈松永 Harold PERSING Anders MEIBOM 《地质学报》2004,78(5):658-674
祁连南缘古生代超高压变质带 (榴辉岩年龄为 4 6 6~ 4 95 Ma)上一套中高级变质岩系 (达肯大坂片麻岩 )中存在三类花岗岩组合 : 类 :石英二长闪长岩 -花岗闪长岩 -二长花岗岩 , 类 :二长花岗岩 -二云母花岗岩-含白云母花岗岩 -正长花岗岩 , 类 :花岗闪长岩 -二长花岗岩 -黑云母花岗岩。 类岩石组合中的二长花岗岩锆石SHRIMP年龄为 4 73Ma, 类岩石组合中的正长花岗岩锆石 SHRIMP年龄为 4 4 6 Ma, 类岩石组合中的二长花岗岩锆石 SHRIMP年龄为 397Ma。从三类花岗岩组合的组成矿物来看 , 类和 类的矿物组合主要为斜长石、角闪石、石英、碱性长石、黑云母 , 类的矿物组合为钾长石、石英、白云母、黑云母、斜长石 ;从岩石地球化学特征上看 , 类和 类花岗岩为 型花岗岩 ,岩石的 Si O2 =6 1%~ 6 9% ,Na2 O/ K2 O>1,ANK<1,δEu=0 .7~ 1.0 ; 类花岗岩为 S型花岗岩 ,岩石的 Si O2 =70 %~ 76 % ,Na2 O/ K2 O<1,ANK>1,δEu=0 .1~ 0 .3;从构造环境上看 , 类花岗岩形成于岛弧环境或活动大陆边缘 , 类花岗岩形成于同碰撞 , 类花岗岩形成于碰撞后。结合区域地质特征 ,我们认为 ,早奥陶世 ,南祁连洋板块向北俯冲于祁连陆块之下 ,规模不大的南祁连洋很快闭合 ,但俯冲下去的大洋板块仍拖动柴达木陆块继续俯冲 ,俯冲 相似文献
72.
区域大气环境质量灰关联评价方法探讨 总被引:7,自引:0,他引:7
针对区域中大气环境质量的特点,采用对数主成分分析方法获得各环境指标的权重及各监测点的横向排名,再用适宜的灰度关联方法进行了评价。整个过程在MATLAB6.5中实现,计算简便易行,与传统的综合指数法相比较,其评价结果更符合客观实际。 相似文献
73.
74.
内蒙额尔古纳在矿带中生代火山岩浆活动与金属成矿的关系 总被引:1,自引:0,他引:1
在岩石学和微量元素地球化学研究的基础上,通过对不同类型矿床的成矿岩体及围岩条件的分析,探讨了中生代火山岩浆活动与金属成矿的关系。认为晚侏罗世火山岩浆活动为成矿提供了有利的围岩的构造空间;早白垩世岩浆活动提供了成矿岩体及热力学条件,该期次火山岩浆的侵入并作用于不同的围岩、形成了由斑岩型Cu、Mo矿,浅成熟液型Ag、Pb、Zn矿等组成的一系列矿床组合。 相似文献
75.
76.
胶南造山带榴辉岩中的高压、超高压变质矿物主要有绿辉石、镁铝榴石、柯石英、金刚石、金红石等。柯石英、金刚石均呈微晶状包裹于石榴子石、绿辉石中。柯石英多已转化为石英聚晶,并使包裹它的矿物产生放射状胀裂纹;金刚石呈近等轴八面体等,其形成压力达3.5GPa以上。榴辉岩围岩中的高压、超高压变质矿物主要有辉石类(透辉石、霓石、暗硬玉)、钠钙质钠质角闪石(钠闪石、镁钠闪石)、多硅白云母(3T型)、钠长石、绿帘石等。高压、超高压变质矿物的广泛出现指示区内存在两期高压变质作用:早期为超高压榴辉岩相变质作用;晚期为高压绿片岩相榴辉岩相变质作用。华北板块与扬子板块的多次碰撞是区内高压、超高压变质作用产生的主要原因。 相似文献
77.
The Kos Plateau Tuff consists of pyroclastic deposits from a major Quaternary explosive rhyolitic eruption, centred about 10 km south of the island of Kos in the eastern Aegean, Greece. Five main units are present, the first two (units A and B) were the product of a phreatoplinian eruption. The eruption style then changed to `dry' explosive style as the eruption intensity increased forming a sequence of ignimbrites and initiating caldera collapse. The final waning phase returned to phreatomagmatic eruptive conditions (unit F). The phreatomagmatic units are fine grained, poorly sorted, and dominated by blocky vitric ash, thickly ash-coated lapilli and accretionary lapilli. They are non-welded and were probably deposited at temperatures below 100°C. All existing exposures occur at distances between 10 km and 40 km from the inferred source. Unit A is a widespread (>42 km from source), thin (upwind on Kos) to very thick (downwind), internally laminated, dominantly ash bed with mantling, sheet-like form. Upwind unit A and the lower and middle part of downwind unit A are ash-rich (ash-rich facies) whereas the upper part of downwind unit A includes thin beds of well sorted fine pumice lapilli (pumice-rich facies). Unit A is interpreted to be a phreatoplinian fall deposit. Although locally the bedforms were influenced by wind, surface water and topography. The nature and position of the pumice-rich facies suggests that the eruption style alternated between `wet' phreatoplinian and `dry' plinian during the final stages of unit A deposition.Unit B is exposed 10–19 km north of the inferred source on Kos, overlying unit A. It is a thick to very thick, internally stratified bed, dominated by ash-coated, medium and fine pumice lapilli in an ash matrix. Unit B shows a decrease in thickness and grain size and variations in bedforms downcurrent that allow definition of several different facies and laterally equivalent facies associations. Unit B ranges from being very thick, coarse and massive or wavy bedded in the closest outcrops to source, to being partly massive and partly diffusely stratified or cross-bedded in medial locations. Pinch and swell, clast-supported pumice layers are also present in medial locations. In the most distal sections, unit B is stratified or massive, and thinner and finer grained than elsewhere and dominated by thickly armoured lapilli. Unit B is interpreted to have been deposited from an unsteady, density stratified, pyroclastic density current which decelerated and progressively decreased its particle load with distance from source. Condensation of steam during outflow of the current promoted the early deposition of ash and resulted in the coarser pyroclasts being thickly ash-coated. The distribution, texture and stratigraphic position of unit B suggest that the pyroclastic density current was generated from collapse of the phreatoplinian column following a period of fluctuating discharge when the eruptive activity alternated between `wet' and `dry'. The pyroclastic density current was transitional in particle concentration between a dilute pyroclastic surge and a high particle concentration pyroclastic flow. Unidirectional bedforms in unit B suggest that the depositional boundary was commonly turbulent and in this respect did not resemble conventional pyroclastic flows. However, unit B is relatively thick and poorly sorted, and was deposited more than 19 km from source, implying that the current comprised a relatively high particle concentration and in this respect, did not resemble a typical pyroclastic surge. 相似文献
78.
根据石青硐—白银厂区域火山岩 (亚 )带中已知典型矿床的地质及地球化学异常特征 ,建立了折腰山矿床地质地球化学异常模型。以这一模型为指导 ,在白银厂黑石山地区成矿有利地段横湾沟系统全面地进行了地质和化探研究工作 ,预测在该地段存在与折腰山相类似的火山喷口型 Cu ( Zn)矿床。 相似文献
79.
Identifying local spatial association in flow data 总被引:5,自引:1,他引:4
In this paper we develop a spatial association statistic for flow data by generalizing the statistic of Getis-Ord, G
i (and G
i
*). This local measure of spatial association, G
ij, is associated with each origin-destination pair. We define spatial weight matrices with different metrics in flow space.
These spatial weight matrices focus on different aspects of local spatial association. We also define measures which control
for generation or attraction nonstationarity. The measures are implemented to examine the spatial association of residuals
from two different models. Using the permutation approach, significance bounds are computed for each statistic. In contrast
to the G
i statistic, the normal approximation is often appropriate, but the statistics are still correlated. Small sample properties
are also briefly discussed.
Received: 18 February 1998/Accepted: 29 September 1998 相似文献
80.
通过对前人有关火山构造分级分类方案的清理,归纳和总结,提出区域性火山构造分级分类体系及组合式火山构造分级分类体系,二者构成了一套较完整的火山构造分级分类系统。区域性火山构造体系划分的理论基础是火山作用的构造属性,火山活动与区域性全球性构造活化有关,共分四级四类;组合式火山构造体系是应用火山构造组合理论,低级火山构造通过并列式或叠置式组合方式,逐级组合归并为高级火山构造的分级分类方法,共分四级十五类 相似文献