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81.
蚁群算法(ACO)主要应用于组合优化问题(COPs),很少应用于地球物理重磁资料物性反演。首先,对蚁群系统中目标函数值与信息素的映射机制进行改进。理论模拟表明,改进后的Gauss模型在收敛速度和反演精度方面比传统的ant-cycle模型要好,适用于重磁资料物性反演。然后,将蚁群算法应用于南岭地区千里山岩体和九嶷山岩体重力资料反演与解释。结果表明:蚁群算法圈定的花岗岩岩体与地面地质填图结果及大地电磁测深反演结果吻合,较好地控制了千里山岩体和九嶷山岩体的深度和形状。该结果可为研究南岭地区花岗岩侵入模式和多金属成矿规律提供参考。  相似文献   
82.
Our goal was to evaluate effects of broad-scale changes in vegetation from grasslands to shrublands over the past 150 years on near-surface atmosphere over the Jornada Experimental Range in the northern Chihuahuan Desert, using a regional climate model. Simulations were conducted using 1858 and 1998 vegetation maps, and data collected in the field. Overall, the vegetation shift led to small changes in sensible heat (SH) and an increase in latent heat (LH). The impacts of shrub encroachment depended on shrubland type: conversion from grass to mesquite cools the near-surface atmosphere and from grass to creosotebush warms it. Higher albedo of mesquite relative to grasses reduced available energy, which was dissipated mainly as LH due to the deeper root system in mesquite. In creosotebush-dominated areas, a decrease in albedo, an increase in roughness length and displacement height contributed to the SH increase and warmer temperatures. Sensitivity simulations showed that an increase in soil moisture content enhanced shrub LH and a reduction in mesquite cover enhanced the temperature differences. The observed shift in vegetation led to complex interactions between land and surface fluxes, demonstrating that vegetation itself is a weather and climate variable as it significantly influences temperature and humidity.  相似文献   
83.
This paper demonstrates the plausibility of inferring the spatial variability of geology from topographically derived landscape dissection patterns. This enables surveying large regions for spatial variability in geology, for which direct remote sensing is not feasible, by studying variability in dissection pattern, a feature extracted straight off from digital elevation model data. Dissection pattern is obtained automatically by a novel algorithm, especially designed to delineate the valleys with high accuracy in order to reflect spatial variability in dissection density. The dissection pattern is encapsulated by a continuous map of drainage density, a raster variable best suited for showing spatial variability of dissection. Such a map, constructed for the study area in the Cascade Range, Oregon, USA, shows a sharp discontinuity in the dissection pattern, indicating change in underlying geology. Possible factors controlling the dissection pattern such as climate, local and regional slopes, vegetation, and geology are examined, and geology has been found to be the dominant controlling factor. The dissection contrast coincides with the boundary between the Western and High Cascades, two geologic provinces with different rock ages and types. The older and less permeable Western Cascades are associated with denser dissection pattern, whereas the younger and more permeable High Cascades correspond to less dissected pattern. This new mapping method can be applied to locations where topography is the only readily available data, and the generated map could be used to extract previously unknown geologic or environmental information.  相似文献   
84.
南岭离子吸附型稀土矿床成矿规律研究新进展   总被引:13,自引:1,他引:12  
赵芝  王登红  陈郑辉  陈振宇 《地质学报》2017,91(12):2814-2827
离子吸附型稀土矿是我国的优势资源,是全球重稀土的主要来源。20世纪80年代我国对此类矿床的成矿规律开展过大量研究,但仍有诸多未解之谜。为了解目前离子吸附型稀土资源的分布特征和成矿规律,2011~2015年中国地质科学院矿产资源所三稀项目组对52个离子吸附型稀土矿床进行了综合研究,本文介绍稀土成矿规律研究方面取得的一些新进展:(1)离子吸附型稀土矿床广泛分布在华南地区,以南岭最为发育,近些年在越南、老挝、泰国及美国也有发现。矿床主要产在花岗岩和酸性火山岩风化壳中,近几年也在变质岩和灰岩风化壳中有所发现,但花岗岩离子吸附型稀土矿床规模较大,品位较高,仍是最为重要的一类(亚类)稀土矿床;(2)成矿花岗岩的形成时代范围较宽,锆石U-Pb年龄集中在461~384Ma、228~242Ma和189~94Ma三个区间。相对于LREE型成矿花岗岩,HREE型更加富硅,富HREE,具有强烈的负Eu异常,普遍高Rb,低Ti、Zr、Hf、Nb、Ta、Ba、Sr等微量元素,暗示HREE型成矿花岗岩岩浆经历了高度分异。值得注意的是,部分LREE型成矿花岗岩相对富集HREE,特别是富集Y,轻重稀土元素比值(LREE/HREE)多介于1~3之间,风化易形成HREE型风化壳,这很可能是今后重稀土资源的重要来源之一;(3)成矿花岗岩中稀土矿物的成因多样,有岩浆成因(如榍石、褐帘石、独居石、磷钇矿等)、流体交代成因(稀土氟碳酸盐类)和表生成因(水磷铈矿、水磷镧矿等),稀土元素的内生矿化很大程度上受流体交代作用影响;(4)发育完整的风化壳垂向剖面中稀土元素含量呈"弓背式"分布,即表土层和半风化层中含量低,全风化层中含量高,但受地形、地貌及地表水等因素的影响,稀土含量变化曲线呈多种形态。垂向上LREE和HREE可分层富集,即全风化层上部富集LREE,下部富集HREE,也可以同时富集在全风化层下部。华南大量成矿母岩和风化壳样品的化学风化蚀变指数(CIA)与稀土元素总量(∑REE)之间存在明显的相关性,当CIA85%时,CIA与∑REE呈正相关,当85%CIA100%时,CIA与∑REE呈负相关;(5)表生过程中,母岩中易风化的稀土矿物不断释放出可交换性吸附态的稀土元素,酸性淋滤作用是稀土元素迁移的动力,黏土矿物是稀土元素赋存的载体,风化程度影响稀土元素的次生富集。  相似文献   
85.
The Chalukou deposit is located in the North Great Xing’an Range of the Xing’an-Mongolia Orogen bordering and to the northeast of the North China Craton. The deposit is a high-F-type porphyry Mo deposit hosted by the Chalukou composite igneous body containing small intrusive bodies genetically related to Mo mineralization. The composite igneous body includes pre-mineralization dolerite, monzogranite and syenogranite, syn-mineralization rhyolitic porphyry, granitic porphyry and fine-grained monzogranite, and post-mineralization rhyolitic porphyry, quartz porphyry, dioritic porphyry and andesitic porphyry. Detailed laser ablation inductively coupled plasma mass spectrometry (LA-ICP-MS) U-Pb zircon dating of the igneous components of the composite igneous body was carried out to determine the temporal framework for magmatism in the Chalukou region. The new LA-ICP-MS U-Pb ages constraint documented here, together with the published ages, indicate that there was a protracted porphyry Mo ore-forming event of approximately 7 million years between ca. 152 when the ore related rhyolitic porphyry was emplaced and ca.145 Ma when molybdenite ceased being deposited. The dating reveals that the mineralization is a part of relatively long-lived magmatic cycle involving the emplacement of small doleritic stocks at ca. 165 Ma that progressively evolved into extensive granitic intrusions at ca. 164 Ma, and then diminished with the emplacement of mineralization-related porphyries to ca. 152 Ma. The emplacement of barren Early Cretaceous magmatism, represented by volcanic units in the ca. 136 Ma Guanghua Formation and porphyries, followed the mineralized magmatism.The syn-mineralization porphyry units associated with Mo contain zircons assaying ∼15 times higher in U and Th than the pre-mineralization magmatic phases. This indicates that there was a significant enrichment of Mo, U and Th in the magma, and directly associated with ore fluid exsolution. The return to their normal levels in the three elements in the post-mineralization magmatic phases indicates that they were exhausted from the magma chamber in the later phases. A genetic model is proposed for the enormous introduction of ore metals and enrichment at the Chalukou deposit. The protracted and multiphase igneous activity during the long-lived magmatism reflects a multistage enrichment of metal, and may play a crucial role in the formation of a volatile-enriched, fertile and large-volume magma chamber beneath the Chalukou deposit. Such a chamber is envisaged to be required for the formation of porphyry Mo deposits in general.  相似文献   
86.
The Nanling Range in South China is characterized by extensive Mesozoic magmatism and coeval nonferrous and rare metal mineralization. Huangshaping is a world-class Pb-Zn-W-Mo polymetallic skarn deposit in the central Nanling Range. Magmatic rocks occurring in this ore district include quartz porphyry, granite porphyry, granophyre, dacite porphyry, and aplite, with only the first three granitoids genetically associated with polymetallic mineralization. Most of the orebodies are constrained within the contact zones as skarn and veins between these granitic stocks and the carbonate wall rocks.Since the age of the quartz porphyry is still controversial, and studies of the dacite porphyry and aplite are absent, we focus on these magmatic rocks first. LA-ICP-MS zircon U-Pb dating suggests that the crystallization ages of the quartz porphyry, dacite porphyry, and aplite are 154.3 ± 1.9 Ma, 158.1 ± 0.8 Ma, and 148.4 ± 3.4 Ma, respectively. Combined with previously published age data, we infer the evolutionary sequence of magmatic rocks should be dacite porphyry  quartz porphyry  granite porphyry (granophyre)  aplite. The quartz porphyry, dacite porphyry, and aplite yield high contents of high field strength elements (Zr + Nb + Ce + Y = 255–440 ppm), high ratios of 10,000 × Ga/Al (2.6–3.2), and prominent depletions in Ba, Sr, Eu, P, and Ti, indicating their crustal affinities to A-type granites. They have negative εNd(t) values (−9.4 to −7.0) and high initial Pb isotopic ratios (206Pb/204Pbi = 18.307–18.644, 207Pb/204Pbi = 15.689–15.742, 208Pb/204Pbi = 38.589–38.986), suggesting that they were probably derived by partial melting of ancient granulitic crustal materials.The sulfide minerals exhibit a wide range of δ34SV-CDT values from −22.6 to 24.2‰, with 206Pb/204Pb of 17.669–19.708, 207Pb/204Pb of 15.492–15.714, and 208Pb/204Pb of 37.880–39.789, indicating that sulfur, lead, and other associated metals were derived from a mixture of magmatic components and the Carboniferous wall rocks. Fluid inclusions in pyrrhotite, sphalerite, and marmatite samples have 3He/4He ratios of 0.12 to 1.53 Ra, with calculated mantle helium proportions of 1.3 to 18.9%, indicating a predominantly crustal origin for the ore fluids, with minor inputs from the mantle. The Huangshaping deposit is a typical example of the genetic relationship both spatially and temporally between Jurassic magmatism and polymetallic metallogeny in the Nanling Range.  相似文献   
87.
新近发现的印支期富林矽卡岩铜矿床位于大兴安岭北段新林区新林镇东约90km。矿区发育与成矿直接相关的花岗岩和侵入花岗岩中的花岗斑岩,矿体主要赋存于花岗岩与古元古代兴安桥组大理岩和早奥陶世黄斑脊山组钙质粉砂岩接触带内。富林矿床矿化与矽卡岩密切相关,整个矿化过程可分为两期:矽卡岩期和石英-硫化物期,5个阶段:早期矽卡岩阶段、退化蚀变阶段、氧化物阶段、早期硫化物阶段和晚期硫化物阶段,其中铜矿化主要发生在早期硫化物阶段。硫化物主要包括黄铜矿和黄铁矿,并含少量闪锌矿、方铅矿、斑铜矿等。蚀变类型包括石榴子石-透辉石矽卡岩化、阳起石-透闪石矽卡岩化、绿帘石矽卡岩化、绿泥石化、绢云母-粘土化、钾长石化和局部角岩化。电子探针分析(EMPA)结果表明:矿区内的石榴子石属钙铝-钙铁榴石系列,主要为钙铁榴石,辉石为透辉石-钙铁辉石系列,以透辉石为主,闪石主要为透闪石、阳起石以及少量镁绿钙闪石和铁浅闪石,帘石为黝帘石-绿帘石系列。黑云母以镁铁黑云母和铁叶云母为主,绿泥石主要为密绿泥石和铁叶绿泥石,长石以正长石和钠长石为主。石榴子石成分剖面显示从核部到边部,石榴子石呈现出钙铝榴石和钙铁榴石交替变化的环带特征,且Fe~(3+)含量的逐渐升高暗示后期成矿流体氧逸度升高,结合黑云母Mg-Fe~(3+)-Fe~(2+)图解,说明富林矽卡岩型铜矿床形成于较强的氧化环境。锆石LA-ICP-MS U-Pb测年结果显示花岗岩形成于~253Ma,花岗斑岩形成于~244Ma,为大兴安岭地区一期新的成矿事件。锆石原位Hf同位素测试结果表明,花岗岩εHf(t)介于-1.60~2.23,花岗斑岩εHf(t)介于-3.53~1.90,二者均具有古老的两阶段模式年龄,结合前人对区域构造背景的研究,认为富林花岗质岩石可能来自于松辽地块和兴安地块后碰撞背景下俯冲板片断离软溜圈上涌导致古老下地壳的部分熔融并卷入少量地幔物质而形成的岩浆。花岗斑岩及与斑岩有关的脉状矿化和蚀变的出现暗示富林地区可能存在印支期的斑岩型矿床,此外结合石榴子石、辉石成分特征以及辉石Mn/Fe比值与世界矽卡岩矿床对比,指出富林矿区外围找矿应综合考虑铜、钼、铁、金、铅、锌等矿化组合。  相似文献   
88.
杨乃峰  杨李汀 《世界地质》2017,36(2):361-370
呼中火山岩位于大兴安岭北段,塔木兰沟组是其喷发较早的一期中基性火山岩。锆石U-Pb年代学研究表明,呼中火山岩形成于(154±1)Ma,属晚侏罗世。呼中火山岩SiO_2为49.80%~55.96%、Al_2O_3为16.70%~18.93%、Na_2O+K_2O为6.35%~9.11%,属中基性高铝碱性岩石。微量元素特征显示,呼中火山岩富集大离子亲石元素Ba,亏损高场强元素Nb、Ta,Nb/Ta=12.44~15.58。呼中火山岩元素含量及其比值的变化显示了本区塔木兰沟组玄武岩浆在分离结晶作用过程中受到了壳源物质的影响,其形成环境为板块边缘岛弧造山带环境,由古亚洲洋和(或)蒙古—鄂霍茨克洋板块俯冲形成。  相似文献   
89.
IRNSS�������ǵ���ϵͳ�������ܷ���   总被引:1,自引:0,他引:1  
????IRNSS?????????????????????????????ξ?????????????????IRNSS?????????????λ????????????????????????????????IRNSS???????????Ч???????????????????????????????IRNSS??????????????????????????????????????????????2 000 km????????????????10 m??????λ????????????????????????????????????PDOPС??6????????????????Ч??????????95%???????????  相似文献   
90.
湘南黄沙坪多金属矿床位于南岭构造带中段北缘,属于矽卡岩型矿床。根据矽卡岩产出状态、矿物共生组合及岩相学特征,从早期到晚期可划分为矽卡岩阶段、退化蚀变阶段、早期硫化物阶段和晚期硫化物阶段。矽卡岩矿物主要为石榴石、辉石、符山石等;金属矿物主要为白钨矿、辉钼矿、磁铁矿、方铅矿、闪锌矿等。电子探针分析结果表明,石榴石为钙铝-钙铁榴石系列,从早期到晚期,石榴石具有由钙铝榴石逐渐向钙铁榴石演化的规律。且钙铁榴石普遍发育震荡环带,而环带结构可持续记录钙铁榴石物理化学条件演化的过程。同时两种石榴石中均含Sn的成分,但钙铁榴石中Sn的含量明显高于钙铝榴石。辉石为透辉石-钙铁辉石系列,而且由内接触带向外接触带,辉石中Fe和Mn的含量有逐渐升高的趋势。矽卡岩矿物学特征及矿物成分的变化表明,成矿流体至少经历了两次氧化还原性质的转变。矽卡岩矿物学特征,对W(Sn) Mo Bi等多金属的矿化具有重要的地质指示意义。  相似文献   
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