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101.
In order to investigate the relationships between the change of TCO2, △PCO2 and SST, current, upwelling and biological activities during El Nin(~)o event in the subtropical Pacific, the responses of TCO2 and △PCO2 in surface water in the subtropical Pacific during El Nin(~)o and La Nina have been simulated using a three-dimension carbon cycle model with biota pump. The results of numerical simulations show that TCO2 in sea water increases with reducing of SST during mature phase of El Nin(~)o in the subtropical West Pacific . At the same period , the Kuroshio in this region was weakened , the zonal currents were divergence , the upwelling carried the water with high concentrations of CO2 to the sea surface , so both of TCO2 and △PCO2 in surface water were increased . But TCO2 and △pCO2 were decreased during La Nina period. These simulated results confirmed the observations in 1982/1983 , 1986/1987 ,1991/1995 and 1997/1998 El Nin(~)o events . 相似文献
102.
近1300年来古胶州港位置的变迁 总被引:4,自引:0,他引:4
本文主要依据有关方志、文史资料,着重考证了近1300年来古胶州港位置的变迁,研究发现,古胶州港的位置自唐代至清末近1300年间,沿胶州湾西、北岸大致经历了7次变更,特别自明代开始,港口位置变迁尤为频繁,作者初步分析认为这与历史时期胶州湾内西、北岸的不断淤涨和胶莱南河、大沽河口的冲淤作用有关。 相似文献
103.
104.
Floating tephra was deposited together with ice core,snow layer,abyssal sediment,lake sediments,and other geological records.It is of great significance to interpret the impact on the climate change of volcanic eruptions from these geological records.It is the first time that volcanic glass was discovered from the peat of Jinchuan(金川)Maar,Jilin(吉林)Province,China.And it is in situ sediments from a near-source explosive eruption according to particle size analysis and identification results.The tephra were neither from Tianchi(天池)volcano eruptions,Changbai(长白)Mountain,nor from Jinlongdingzi(金龙顶子)volcano about 1 600 aBP eruption,but maybe from an unknown eruption of Longgang(龙岗)volcano group according to their geochemistry and distribution.Geochemical characters of the tephra are similar to those of Jingiongdingzi,which are poor in s.Jica,deficient in alkali,Na20 content is more than K20 content,and are similar to distribution patterns of REE and incompatible elements,which helps to speculate that they originated from the same mantle magma with rare condemnation,and from basaltic explosive eruption of Longgang volcano group.The tephra,from peat with age proved that the eruption possibly happened in 15 BC-26 AD,is one of Longgang volcano group eruption that was not recorded and is earlier than that of Jinglongdingzi about 1 600 aBP eruption.And the sedimentary time of tephra is during the period of low temperature alteration.which may be the influence of eruption toward the local climate according to the correlativity of eruption to local temperature curve of peat cellulose oxygen isotope. 相似文献
105.
Lü Xixue 《中国地质大学学报(英文版)》2008,19(6):675-684
Jiyang (济阳) sag is an oil rich basin,consisting of Huimin (惠民),Dongying (东营),Zhanhua (沾化),and Chezhen (车镇) depressions.The elastic rock of Paleogene has undergone early and middle diagenetic stages and now the main clastic reservoir is in the middle diagenetic stage.Primary and secondary pores are developed in Paleogene sandstone,the latter is generated from the dissolution of feldspar and calcite cement in rocks owing to the organic acid from the maturated source rock,but the materials dissolved are different in different depressions.The reservoir secondary pores of Dongying depression are generated from the dissolution of calcite cement,the ones of Zhanhua and Huimin depressions from the dissolution of feldspar,the secondary pores of Chezhen depression from the dissolution of feldspar in upper section,and the dissolution of calcite cement in the lower section of Paleogene,respectively.The secondary pores are developed in two depths and the depth goes down from west to east,from south to north in Jiyang sag.The major controlling factors for secondary pore development are maturity and location of source rock.Lastly,the favorable reservoirs are evaluated according to reservoir buried depth,sedimentation,and diagenesis.The reservoir with high quality is located in the northern and central parts in Dongying depression; there are some good reservoirs in Gndao (孤岛),Gudong (孤东),and Gunan (孤南) areas in Zhanhua depression,and the favorable reservoirs are located in the north steep slope and the south gentle slope of Chezhen depression and central uplift,south gentle slope of Huimin depression. 相似文献
106.
107.
青藏高原西北部甜水海盆地地处内陆干旱区和喀喇昆仑山的东侧雨影区,气候环境极端干旱。但多次考察结果揭示晚更新世时期存在着大湖和高湖面的地质证据。为了探讨该地区过去气候与环境的演变历史,在甜水海盆地(海拔4840m)进行钻探采得沉积岩芯56.32m(TS95),通过对沉积岩芯其中一段的粒度、生物、同位素及地球化学多指标综合分析,探讨了MIS3时期甜水海地区气候环境演化过程。沉积岩芯显示沉积物岩性变化频繁,记录着湖面多次波动、沉积环境多变的演化过程,分别在59~56kaB.P.,49~47kaB.P.,45~41kaB.P.,35.5~34.0kaB.P.和28~25kaB.P.期间存在高湖面和湖水稀释。在其多环境指标的记录中,Heinrich事件和D-O旋回均有反映,揭示了全球变化信号在研究区的响应。同时,不同高湖面阶段内部环境波动也较明显,差别较大,其产生原因也各有不同,归结为3种情况:1)由于气候变暖导致冰雪融水补给增加而产生的高湖面;2)由于冷湿气候导致的高湖面;和3)由于暖湿气候导致的高湖面。本研究揭示出了MIS3时期气候频繁波动的特征和气候的不稳定性。 相似文献
108.
2002~2005年在长江中下游的洪湖、固城湖和太湖分别采集了沉积物柱样钻孔,测定了总有机碳(TOC)和金属元素包括Pb,Al,Fe,Ti等,并采用210Pb和137Cs进行了近代沉积物定年。研究结果表明,洪湖钻孔平均沉积速率为0.15cm/a,固城湖平均沉积速率在0.067cm/a,太湖平均沉积速率为0.35~0.41cm/a。根据湖泊沉积物中铅元素与参考元素(Al,Fe和Ti)浓度和TOC的相关关系建立了回归方程,线性关系极显著(p<0.001)。根据回归方程获取了钻孔中铅的背景值变化,研究表明近代沉积物中金属铅不仅仅来源于自然的作用,而人类活动导致铅的累积发生时间都在20世纪70年代,从一个侧面也说明利用沉积物铅含量变化进行断代存在可能性。对太湖钻孔而言,其污染程度要高于洪湖和固城湖。研究结果表明近30年来洪湖和固城湖人为造成湖泊沉积物铅累积量在不断增加,其沉积物铅污染有进一步加重的趋势,应受到科学家和管理部门的关注。 相似文献
109.
选择青海共和盆地多石在沟河道中6道新月形沙丘链作为研究对象,采用Trimble4700DGPS与常规测量手段,结合野外风沙观测与自动气象站数据,初步观测分析了2006年多石在沟河道沙丘在不同季节的形态变化过程,计算出2006年风季前比雨季后多石在沟河道沙丘体积减小了548.3m3,风积量为2351m3,流水的蚀平量为2899m3,2006年风水两相营力对河道沙丘的侵蚀贡献率约为45%∶55%,流水的搬运作用强于风力的堆积作用。但从较长的时间尺度来看,研究区的风力侵蚀作用强于流水侵蚀作用,河道沙丘不断增大。多石在沟河道沙丘是一个典型的风水交互作用系统,河道成为风力与流水交互作用的"中转站",在风水的交替作用下,沉积物由风积环境进入流水环境中。 相似文献
110.