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991.
基于采自柴达木盆地内部牦牛山的祁连圆柏树木样芯,新建采样区域过去2710 a的树轮宽度年表,并计算了器测时期(1957—2017 AD)气象数据与树轮宽度年表的相关系数。结果表明:树轮宽度年表与上一年7月至当年6月降水量变化的相关性最高(r=0.753,n=60,p <0.01),基于此重建了该区392 BC—2017 AD上一年7月至当年6月的降水量变化。器测时期方差解释量高达64%。重建结果显示,在年代际尺度上存在9个湿润期(106—75 BC、6—39 AD、179—229 AD、581—646 AD、823—914 AD、1026—1095 AD、1378—1414 AD、1567—1609 AD和1985—2017 AD)和7个干旱期(328 BC—297 BC、86—151 AD、694—747 AD、1168—1199AD、1444—1525 AD、1680—1725 AD和1792—1860 AD),1792—1860 AD是过去2400 a最干旱时期。功率谱分析结果表明,过去2400 a柴达木盆地东北部地区降水量存在2~8 a、40 a、80 a和225 a准周... 相似文献
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D. Baratoux N. Mangold O. Arnalds J.‐M. Bardintzeff B. Platevoët M. Grégoire P. Pinet 《地球表面变化过程与地形》2011,36(13):1789-1808
The origin, formation and evolution of volcanic sands are less well known than the formation of the much more common quartz‐rich sand sheets. Combining active volcanism and a cold climate, Iceland is covered for about 21% of its surface by sandy areas. The sands were analyzed in detail at two sites and results reveal their diverse origins. The first site is Dyngjusandur, located north of Vatnajökull, and the second site is the Lambahraun area, located south of Langjökull. At both sites, the sand origin is determined from field observations (wind directions from ventifacts), chemical and mineralogical analyses of rocks and sands. At Dyngjusandur, the sand is dominated by glass grains, a situation typical of sand plains in Iceland. Hyaloclastite ridges presently buried beneath Vatnajökull are the dominant source of the sand, and only large size plagioclase crystals (0.5 cm) in sands seem to be derived from the lava flows. Hyaloclastite ridges were crushed by glaciers and mechanically eroded sediments were washed out by melt‐water onto flood plains. The sand chemical composition is spatially homogeneous and similar to the average composition of neighboring sub‐aerial lava flows, reflecting efficient mixing of distinct sources below the glacier. The presence of sand north of Dyngjujökull can be taken as a way to explore the average chemical composition of non‐exposed volcanic material beneath the glacier. In the case of Lambahraun, prevailing winds indicate several potential sources of sand at the north of the sand sheet. Comparison of chemical and mineralogical analyses of sands and rock samples helped to refine the exact origin. In contrast with the first site, the sand is dominated by crystals and is chemically consistent with a mixture of material derived from the lava flows of Eldborgir and Skersli shield volcanoes. Analysis of the contact between the lava flows and the glacier reveals that basaltic sand grains formed as the result of recent advances of the glacier abrading the rocks. The direct interaction of glacial and fluvio‐glacial activity with basaltic plains appears to be necessary to produce a large amount of sands in a relatively short period of time (<4000 years). This site appears to be an excellent natural laboratory for further studies concerning the sand evolution and physical sorting processes in basaltic material, which have important implications for understanding aeolian processes on Mars. Copyright © 2011 John Wiley & Sons, Ltd. 相似文献
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RUSSELL J. WHITE GLENN A. SPINELLI PETER S. MOZLEY NELIA W. DUNBAR 《Sedimentology》2011,58(5):1138-1154
A minor amount (ca 1 wt%) of amorphous silica cement sourced from volcanic glass inhibits consolidation of hemipelagic sediment approaching the Nankai Trough subduction zone throughout the Shikoku Basin. The distribution and nature of the cement were examined via secondary and backscattered electron imaging. The amorphous silica occurs as altered material in contact with volcanic glass, coating grains (including grain contacts) and filling pores. Based on chemical and petrographic evidence, the cement is probably sourced from volcanic glass; this is in contrast to a previous suggestion that this silica cement is sourced dominantly from biogenic silica. Amorphous silica sourced from disseminated volcanic glass shards has the ability to form a thin coating on clay‐dominated sediment throughout the Shikoku Basin. Measured amorphous silica content in hemipelagic sediments suggests that the cementing process is active throughout the Shikoku Basin (at sites separated by >500 km). The cementation process may occur in other locations where sediment containing hydrated disseminated volcanic glass is buried sufficiently for heat to facilitate alteration (i.e. Central America, Cascadia and the Gulf of Alaska). 相似文献
996.
火山岩作为特殊的油气储集岩类型,在国内外均有成功的勘探和开发实例。然而因其规模和储量相对较小,储集空间和成藏系统较为复杂,研究工作起步较晚。鉴于前人研究多依赖于钻井岩芯描述和测井数据分析,为了获得岩石孔隙和各类裂缝在古火山机构中的空间分布规律,本文对福建漳州牛头山玄武质火山岩进行了野外调查和岩石物性分析。牛头山古火山历经四期喷发,地表可见四层喷溢相玄武岩层和两处火山颈相岩石出露。喷溢相玄武质火山岩的孔隙度变化较大,从5.34%到23.73%间不等,但渗透率均较低(平均值为0.173×10-3μm2)。火山机构中节理和裂缝较为发育,除火山颈相的柱状节理、火山喷溢相的爆炸缝、冷凝节理外,熔岩/下伏地层接触热变质成因的高孔带、幔源包体裂缝和爆炸孔以及后期形成的构造裂缝、风化破碎带等均有着重要的意义,这些面型单元构成了贯通整个火山机构的空间网络,使古火山机构的储集潜力不容忽视。 相似文献
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青藏高原拉萨地块西部雄巴盆地后碰撞钾质-超钾质火山岩年代学与地球化学 总被引:9,自引:4,他引:5
青藏高原拉萨地块后碰撞钾质和超钾质岩浆活动广泛分布且已有不少研究成果,但是它们的年龄主要是17~8Ma,而对于拉萨地块西部雄巴地区时代为24~23Ma的岩浆作用则研究较少。本文对雄巴盆地新识别出的三种类型火山岩的锆石LA-ICP-MS U-Pb定年和岩石地球化学研究表明,它们分别是超钾质安粗岩(23.9±0.6Ma)、粗面英安岩(23.3±0.4Ma)和钾质流纹岩(24.1±0.3Ma),这三种岩石近于同时产出。三类岩石的源区明显不同,其中钾质流纹岩是中、上地壳部分熔融产物;具有埃达克质特征的钾质粗面英安岩可能为加厚下地壳部分熔融;而超钾质安粗岩可能富集地幔部分熔融的产物。雄巴三种火山岩均含数量不等的继承锆石,钾质流纹岩具有~150Ma、~90Ma和~50Ma的继承锆石年龄群;钾质粗面英安岩突出显示了~90Ma左右岩浆活动记录和两个新元古代继承锆石年龄;幔源超钾质安粗岩的继承锆石则绝大多数继承锆石为晚白垩纪以来的岩浆活动记录,突出显示110~80Ma和62~30Ma两个峰值。 相似文献
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吉林南部辉南-靖宇地区岩石圈地幔氧化-还原状态及研究意义 总被引:3,自引:2,他引:1
吉林省南部辉南-靖宇地区第四纪碱性玄武岩中的地幔包体主要为尖晶石相二辉橄榄岩和方辉橄榄岩。二辉橄榄岩和方辉橄榄岩的平衡温度分别为770~1000℃和850~1025℃,对应的氧逸度 (fO2)值分别为FMQ -0.70至+0.34 (均值为FMQ -0.06) 和FMQ -0.46至+0.05 (均值为FMQ -0.15),它们与深海橄榄岩(abyssal peridotites)以及软流圈地幔的fO2相似。橄榄岩的fO2值,连同其全岩化学成分(如Mg#、Al2O3、CaO、Ni、Co和Cr)和矿物化学成分(如橄榄石的Fo、尖晶石的Cr#和Mg#,以及辉石的Mg#)特征,表明辉南-靖宇地区龙岗火山群下面的岩石圈地幔很可能是在晚中生代以来,伴随着华北克拉通和扬子板块的碰撞以及来自东侧太平洋板块和北侧蒙古-额霍次克(Mongolo-Okhotsk)板块分别向西和向南的俯冲叠加,原来的古老岩石圈失衡、塌陷(拆沉?),取而代之的深部软流圈底辟、上涌,又经历了低度部分熔融的产物。 相似文献
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