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31.
钙贝塔石发现于四川西昌的霓辉石-钠铁闪石脉中,与之共生的矿物是霓辉石,钠铁闪石,钠长石,铈磷灰石,硅钛铈矿,沥青铀矿,重晶石,方解石和彩钼铅矿等。钙贝塔石呈黑色,黑褐色,具八面体晶形,大小为2mm~8mm,条痕为黑色或黄褐色,油脂到沥青光泽,贝壳状断口。摩氏硬度为6.05~6.44(Hv=570.08kg/mm^2~689.06kg/mm^2);无解理,比重4.51(扭力天平法测定),反射率从406nm(13.53%)到659nm(11.87%)。经计算钙贝塔石的化学式为:(Ca,Na,U)2(Nb,Ti)2(0,OH),。钙贝塔石的强X射线:2.975(10.222),2.570(5.400),1.816(9.440),1.549(8.622),1.050(6.844),等轴晶系,α=1.029nm。  相似文献   
32.
基岩中存在软弱夹层为岩石的差异性风化的主要特征。在不均匀性地基土上选用该类地层作为钻孔灌注桩持力层时,它的存在将对桩长、单桩承载力、桩体沉降等带来不同程度的影响。以黄石电厂为例,指出在选用差异性风化岩石作为桩基持力层时应注意的若干问题。  相似文献   
33.
新疆天山地区地貌分形与多重分形特征研究   总被引:1,自引:0,他引:1  
利用投影覆盖法和投影覆盖概率对新疆天山地区不同构造地貌类型进行了分形与多重分形特征的研究。结果表明:在所研究的标度范围内,不同地貌区均表现出明显的多度域分形,分维值总体上呈现出高山区>中低山区>盆地区特点,多重分形谱Dq的形态和值域范围也表现出不同特征。研究认为,地貌表面的分维值与地貌形成的内外力地质作用方式和强度密切相关,并提出5-6km的尺度可作为地貌学研究中宏观与微观作用的分界点。  相似文献   
34.
西北四省(区)2000年的水资源足迹   总被引:78,自引:4,他引:78  
水资源足迹是如实反映人类对水资源消费利用的新概念,能深刻揭示社会经济系统对水资源的消费,为干旱缺水地区水资源科学管理提供了一个新视角.提出了水资源足迹的概念和衡量方法,引进了虚拟水概念,简要介绍了产品虚拟水计算方法,并以新疆、青海、甘肃和陕西为例,计算分析了2000年各省水资源足迹.结果表明,2000年西北四省(区)总的水足迹是为613.3×108m3,人均水足迹为712.3m3·人-1·a-1和1952L·人-1·d-1,高于统计的水资源利用量.以虚拟水概念为基础的水资源足迹更真实地衡量了社会经济系统对水资源的消费利用状况,为解决区域水资源短缺和创新水资源管理体制提供了新思路,产品形式的虚拟水贸易是平衡水资源赤字、维持区域水安全的有效工具.  相似文献   
35.
分形学:现代地图学的非线性数学分析方法   总被引:3,自引:0,他引:3  
分析了地图学的传统数学分析方法,讨论了对象复杂性与方法简单化的矛盾,阐述了分形几何学,为现代地图学研究的定量化、系统化提供了新的数学分析方法。  相似文献   
36.
This study assesses temperatures of formation of common granulitesby combining experimental constraints on the P–T stabilityof granulite-facies mineral associations with a garnet–orthopyroxene(Grt–Opx) thermobarometry scheme based on Al-solubilityin Opx, corrected for late Fe–Mg exchange. We appliedthis scheme to 414 granulites of mafic, intermediate and aluminousbulk compositions. Our findings suggest that granulites aremuch hotter than traditionally assumed and that the P–Tconditions of the amphibolite–granulite transition portrayedin current petrology textbooks are significant underestimatesby over 100°C. For aluminous and intermediate granulites,mean corrected temperatures based on our method are 890 ±17 and 841 ± 11°C, respectively (uncertainties reportedas 95% confidence limits on the mean), consistent with minimumtemperatures for orthopyroxene production by fluid-absent partialmelting in these bulk compositions. In contrast, mean temperaturesbased on Grt–Opx Fe–Mg exchange equilibria, usingthe same thermodynamic data, are 732 ± 22 and 723 ±11°C, respectively, well below the minimum temperaturesfor Opx stability. For mafic granulites, the mean correctedtemperature using our method is 816 ± 12°C, similarto the mean temperature of 793 ± 13°C from Fe–Mgexchange. Reasons for the differences between the mafic granulitesand aluminous–intermediate granulites are unclear butmay be due to the lower Al concentrations in Opx in the maficrocks and possible deficiencies in the thermodynamic modellingof these low concentrations. We discuss a number of well-knowngranulite terrains in the context of our findings, includingthe Adirondacks, the Acadian granulites of New England, theincipient charnockites of southern India and Sri Lanka, andthe Kerala Khondalite Belt. Our findings carry implicationsfor thermotectonic models of granulite formation. A computerprogram to perform our thermobarometry calculations, RCLC, isavailable from the Journal of Petrology website at http://www.petrology.oupjournals.orgor from the authors at http://www.geo.ucalgary.ca/~pattison/drm_pattison-rclc.htm. KEY WORDS: granulite-facies metamorphism; thermobarometry; garnet; orthopyroxene  相似文献   
37.
38.
The Pliocene-early Pleistocene history of the ancestral Rio Grande and Quaternary history of the Rio Mimbres in the southern Rio Grande rift, New Mexico, illustrate how axial rivers may alternately spill into and subsequently abandon extensional basins. Three types of spillover basins are recognized, based on the angle at which the axial river enters the basin and whether it descends the hanging wall dip slope or footwall scarp to reach the basin floor. In the Mimbres basin type, the axial river enters and flows through the spillover basin nearly parallel to the footwall scarp, resulting in a narrow belt of basin-axis-parallel channel sand bodies located near the footwall scarp. In contrast, an axial river may enter a spillover basin at a high angle to its axis, either descending the hanging wall dip slope (Columbus basin type) or footwall scarp (Tularosa basin type), and construct a fluvial fan, consisting of radiating distributary channels orientated nearly perpendicular to the basin axis. Faulting exerts significant control on river spillover by creating the topographic gaps through which the axial river moves and by terminating spillover by subsequently uplifting or tilting the gap. Spillover may also be autocyclic in origin as a result of aggradation to the level of a pre-existing gap, headward erosion creating and/or intersecting a gap, or simple river avulsion upstream of a gap. Predicting facies architecture in the three types of spillover basins is critical to successful subsurface exploration for hydrocarbon reservoirs, groundwater aquifers or placer mineral deposits.  相似文献   
39.
40.
ABSTRACT The high-grade migmatitic core to the southern Brittany metamorphic belt has mineralogical and textural features that suggest high-temperature decompression. The chronology of this decompression and subsequent cooling history have been constrained with 40Ar/39 Ar ages determined for multigrain concentrates of hornblende and muscovite prepared from amphibolite and late-orogenic granite sheets within the migmatitic core, and from amphibolite of the structurally overlying unit. Three hornblende concentrates yield plateau isotope correlation ages of c. 303–298 Ma. Two muscovite concentrates record well-defined plateau ages of c. 306–305 Ma. These ages are geologically significant and date the last cooling through temperatures required for intracrystalline retention of radiogenic argon. The concordancy of the hornblende and muscovite ages suggest rapid post-metamorphic cooling. Extant geochronology and the new 40Ar/39Ar data suggest a minimum time-integrated average cooling rate between c. 725 °C and c. 125 °C of c. 14 ± 4°C Ma-1, although below 600 °C the data permit an infinitely fast rate of cooling. Mineral assemblages and reaction textures in diatexite migmatites suggest c. 4 kbar decompression at 800–750 °C. This must have pre-dated the rapid cooling. Emplacement of two-mica granites into the metamorphic belt occurred between 345 and 300 Ma. The youngest plutons were emplaced synkinematically along shallow-dipping normal faults interpreted to be reactivated Eo-Variscan thrusts. A penetrative, west-plunging stretching lineation developed in these granites suggests that extension was orogen-parallel. Extension was probably related to regional uplift and gravitational collapse of thermally weakened crust during constrictional (escape) tectonics in this narrow part of the Variscan orogen. This followed slab breakoff during the terminal stages of convergence between Gondwana and Laurasia; detachment may have been consequent upon a change in kinematics leading to dextral displacement within the orogen. Dextral ductile strike-slip displacement was concentrated in granites emplaced synkinematically along the South Armorican Shear Zone. Rapid cooling is interpreted to have resulted from tectonic unroofing with emplacement of granite along decollement surfaces. The high-grade migmatitic core of the southern Brittany metamorphic belt represents a type of metamorphic core complex formed during orogen-parallel extensional unroofing and regional-scale ductile flow.  相似文献   
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