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151.
This paper proposes a basic equation of thermal radiation interaction between surface objects on the basis of the principle of heat balance in the interface. The solution of this equation takes account of the contribution of sensible heat flux and latent heat flux more completely, compared with traditional solution for surface cooling and heating processes. By the aid of the experimental data conducted in the Xiaotangshan experimental site, Beijing, both the non-applicability of Kirchoff's law and the measurability of surface emissivity in a non-isothermal system have been highlighted. Two methods called ventilation and time-delay compensations have been proposed to reduce the error induced by change of surface temperatures of non-isothermal objects during the measurement of emissivity. Based on the solution of the basic equation, this paper has analyzed and pointed out the misunderstanding in comprehension and application of Kirchoff's law published in literature.  相似文献   
152.
鲁东南岚山头含柯石英榴辉岩主要产于花岗质片麻岩内,是苏鲁超高压变质带主要榴辉岩体密集分布区之一。流体包裹体研究表明,榴辉岩矿物及细脉石英中捕获有四种类型包裹体:在超高压-高压榴辉岩相条件下捕获的 N_2±CO_2包裹体;在高压榴辉宕重结晶阶段被捕获的 CO_2-H_2O 包裹体和含子矿物高盐度 H_2O 溶液包裹体:在超高压岩石折返过程中的最晚(角闪岩相退变质甚至更晚)阶段捕获的低盐度 H_2O 溶液包裹体。利用榴辉岩矿物及脉体石英中捕获的流体包裹体相互期次关系,可以对本区超高压变质作用板片折返过程中的流体演化史进行重建。  相似文献   
153.
Continent-continent collision is the most important driving mechanism for the occurrence of various geological processes in the continental lithosphere. How to recognize and determine continent-continent collision,especially its four-dimensional temporal-spatial evolution, is a subject that geological communities have long been concerned about and studied. Continent-continent collision is mainly manifested by strong underthrnsting (subduction) of the underlying block along an intracontinental subduction zone and continuous obduction (thrusting propagation) of the overlying block along the intracontinental subduction zone, the occurrence of a basin-range tectonic framework in a direction perpendicular to the subduction zone and the flexure and disruption of the Moho. On the basis of numerical modeling, the authors discuss in detail the couplings between various amounts and rates of displacement caused by basin subsidence, mountain uplift and Moho updoming and downflexure during obduction (thrusting propagation) and subduction and the migration pattern of basin centers. They are probably indications or criteria for judgment or determination of continent-continent collision.  相似文献   
154.
通过2 0 0 4年度各相关图幅的大力工作,在基础地质、矿产和资源等方面取得了大量实际材料,综合研究区域构造地层格架、青藏高原地质图和青藏高原南部火山岩及其地球动力学意义等,取得重要进展和新认识,在矿产资源、旅游和人文景观等方面也取得重要阶段性成果。  相似文献   
155.
着重调查了以阿坝盆地为代表的青藏高原东缘新生代盆地的形成演化及其环境变化,新建立了若干生物组合;对第四纪冰川堆积物进行了比较细致的研究,初步建立了气候地层单位;首次于壤塘县曼迪乡上三叠统侏倭组的滑塌堆积层中,采获异地埋葬珊瑚群化石,建立三叠纪双壳类两个生物带;调查了侏倭组、新都桥组、如年各组3个岩石地层单元基本层序、剖面韵律结构及沉积构造;获得若末柯火山岩和小石头山花岗岩Rb Sr等时线年龄。  相似文献   
156.
概要论述了地质微生物学、地下水微生态学、微生物地球化学作用的基本概念、研究内容、研究现状、科学意义、关键问题、发展前景和在地下水环境保护中的作用。该研究领域不仅拓宽了整个地质科学的研究范畴,而且推动了地质科学的发展,具有一定的创新性。  相似文献   
157.
铅锌矿山开发导致的重金属在环境介质中的积累   总被引:35,自引:4,他引:35  
以连续提取法和相关性分析研究了土法冶炼锌、铅锌和矿山开采导致的重金属在废渣及环境介质土壤、溪流沉积物中的积累,并分析了其环境危害性。结果显示,贵州赫章土法炼锌导致的重金属Pb、Zn、Cd在环境介质中的积累相当高。水城杉树林铅锌矿山开采引起的重金属积累则相对较低,但也明显高于背景值;土壤和沉积物中的铁矿物对重金属有强烈的固定作用。除残渣态外,Pb、Zn在土壤、炼锌废渣中主要呈铁锰氧化物结合态,沉积物中则为碳酸盐结合态。可交换态Pb、Zn含量变异较大,但在炼锌废渣、土壤中含量明显高于河流沉积物,暗示铅锌矿开发对土壤环境的潜在危害更大。  相似文献   
158.
胶东西北部地区金矿床铅同位素特征及其地质意义   总被引:5,自引:0,他引:5  
胶东地区不同类型金银、铅锌矿床及交代—深熔花岗岩三者的铅同位素特征相似,皆为来自铀针亏损型源区的多阶段铅。在Pb~(207)/Pb~(204)-Pb~(206)/Pb~(204)图解上,它们的投影点可拟合成一条直线。据此,并根据大量的K-Ar、U-Pb、Rb-Sr和Ar~(30)-Ar~(40)年龄数据,得t_1=3.2Ga,t_2=0.15Ga,μ_1=7.07~8.17,W_1=29.16~35.80,Th/U=3.97~4.52。矿石铅与胶东群变质岩岩石铅同位素统计对比表明,金银、铅锌和交代—深熔花岗岩中的铅皆来自再活化的下地壳源铅。  相似文献   
159.
峨眉山玄武岩的地幔热柱成因   总被引:32,自引:4,他引:32  
根据峨眉山玄武岩的岩石组合、岩相学特征将峨眉火成岩省分为盐源-丽江岩区、攀西岩区、贵州高原岩区和松潘-甘孜岩区。通过对研究区二叠世的区域地质背景和古地理环境的分析,对峨眉山玄武岩喷发与地幔热柱的关系及其火山喷发的大地构造背景进行了进一步系统归纳和总结。根据地层学关系大致确定峨眉山玄武岩的主喷发期是阳新世(中二叠)晚期-乐平世(晚二叠)早期,时限大致为259Ma-257Ma。峨眉山玄武岩微量元素地幔标准化曲线特征与OIB基本一致,反映出其成因与地幔热柱活动有密不可分的关系。  相似文献   
160.
Based on detailed and systematic researches of the geology of ore deposits, fluid inclusions and isotope geochemistry etc., and regarding the Late Paleozoic fluid system of the Yuebei Basin as an integrated object in this paper, we have revealed the temporo-spatial evolution law of the basin's fluid system and discussed its ore-forming effects by simulating and analyzing the distribution of ore-forming elements, the fluid thermodynamics and dynamics of evolution processes of this basin. The results show that Late Paleozoic ore-forming fluid systems of the Yuebei Basin include four basic types as follows. (1) The sea floor volcanic-exhalation system developed during the rapid basin slip-extension stage in the Mid-Late Devonian, which affected the Dabaoshan region. It thus formed the Dabaoshan-type Cu-Pb-Zn-Fe sea floor volcanic-exhalation sedimentary deposits. (2) The compaction fluid system developed during the stable spreading and thermal subsidence-compression stage of the basin in the Mid-Late Devonian. The range of its effects extended all over the whole basin. It resulted in filling-metasomatic deposits, such as the Hongyan-type pyrite deposits and pyrite sheet within the Fankou-type Cu-Pb-Zn-S deposits. (3) The hot water circulation system of sea floor developed during the stage of basin uplifting and micro-aulacogen from the late Late Carboniferous to Middle Carboniferous. The range of its effects covered the Fankou region. It thus formed MVT deposits, such as the main orebody of the Fankou-type Pb-Zn-S deposits. (4) The gravity fluid system developed during the stage of fold uplifting and the basin closed from Middle Triassic to Jurassic, forming groundwater hydrothermal deposits, e.g. the veinlet Pb-Zn-calcite orebodies of the Fankou-type Pb-Zn- S deposits. Migration and concentration of the ore-forming fluids were constrained by the state of temporo-spatial distribution of its fluid potential. Growth faults not only converged the fluids and drove them to move upwards, but also the fluids often crossed the faults to the edges of the basin at the bottom of these faults and the lithologic interfaces, and even migrated to the basin's edges from top to bottom along the faults, which may be one of the basic reasons for the stratabound deposits to cluster mainly along the contemporaneous faults on the inner border of the basin. The superposed mineralization resulting from the multi-stage activity of contemporaneous faults and ore-forming fluid systems in the basin may be one of the key factors for forming superlarge ore deposits.  相似文献   
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