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101.
中国南方海相含油气保存单元的层次划分与综合评价   总被引:1,自引:0,他引:1  
以最近十年中国南方的海相新区油气勘探评价成果为依托 ,以油气成藏和整体封闭保存体系评价为核心 ,在渝东—湘鄂西、中下扬子和滇黔桂三大区域划分出 9个有利区块 5 1个含油气保存单元 ,并将其归纳为四个层次。综合评价认为 ,方西和石柱保存单元具有较好的整体封存体系 ,属持续性含油气保存单元 ,为首选勘探目标 ;江汉盆地南部、句容—海安区块、南鄱阳坳陷、楚雄盆地东北部具备或基本具备整体封存条件 ,属于沉积重建型含油气保存单元 ,通过精细勘探可望获得商业性油气流 ;楚雄盆地西北部、南盘江坳陷、十万大山盆地和渝东—湘鄂西地区利川复向斜由于晚期强烈构造改造而仅存在部分封存体系 ,需要攻关探索 ;思茅、渝东—湘鄂西地区的花果坪和桑植—石门地区已失去整体封闭保存条件 ,仅局部存在封存体系 ,地质条件高度复杂 ,勘探风险甚高。  相似文献   
102.
研究了1948-2001年南、北半球及欧亚大陆、非洲大陆、澳洲大陆、北美大陆、南美大陆、南极大陆和中国 7个大尺度区域 6~8月降水的长期趋势变化和年代际变化。结果表明,南、北半球 6~8月的降水都为负趋势,但南半球降水的负趋势在统计上不显著。在54年的时间段内,南半球 6~8月降水的递减速度为 0.12 mm/a,仅为北半球同期降水减幅(0.24 mm/a)的一半。南、北半球 6~8月降水量年代际尺度的振荡都非常明显,但是,南、北半球年代际变化的特征明显不同。目前北半球仍是在少雨时间段,而南半球处在降水量正常或多雨的时间段。分析还表明,非洲大陆 6~ 8月降水的年代际特征最明显,降水的负趋势也最为显著;欧亚大陆 6~8月降水也有着明显的年代际变化与明显的负趋势变化;澳洲大陆 6~8月降水的年际变化明显,年代际变化相对来说要小得多;北美大陆 6~8月降水的年际变化明显,但无明显的趋势变化。此外,分析了大尺度区域 6~ 8月降水之间的相关关系,发现部分区域大尺度降水量之间有明显的联系;分析了中国夏季降水的长期变化,发现中国夏季降水的年代际变化明显,但无明显的趋势变化。  相似文献   
103.
Upgrading the Earthquake Catalog of Switzerland (ECOS) included revising the earthquake of 1720. This change has major importance for history and seismology.Although that quake has been the subject of several publications, none was based on critical methods. This re-evaluation of the event is built upon a new and more reliable database established after investigating archives and libraries. Using data from such historical sources, we assigned new site intensities, adopting the criteria established by the European macroseismic scale EMS 98 (Grünthal, 1998).We discovered that the event had been assigned an overestimated intensity, due to interpretation errors in former earthquake catalogs and compilations. We recommend reducing the intensity from I0= VIII to I0= VI (EMS 98). The moment magnitude is given as MW= 4.6. Since the event had been considered the largest for its respective area, downgrading it now will influence the seismic hazard assessment for this region.  相似文献   
104.
天山山区近40a年降水变化特征与南、北疆的比较   总被引:24,自引:2,他引:24       下载免费PDF全文
袁玉江  何清  喻树龙 《气象科学》2004,24(2):220-226
本文分析了天山山区近40 a来年降水变化的基本特征,并与南疆、北疆进行了比较,所得的主要结果如下:(1)天山山区在年降水量干湿变化阶段上与北疆的相似性强于南疆。(2)年降水量的空间分布的同步变化性以北疆为最好,南疆最差,天山山区居中,而年降水量的空间分布的反向变化性,以天山山区为最大,北疆最小,南疆居中。(3)天山山区与南疆从60年代到90年代,年降水均表现出了持续的增加的趋势,北疆年降水从60年代到90年代,除70年代外,不断增多。  相似文献   
105.
苏鲁造山带区域地壳山根结构特征   总被引:15,自引:6,他引:15  
徐纪人  赵志新 《岩石学报》2004,20(1):149-156
本利用苏鲁大别造山带及其邻区的三维P波速度资料,详细对比研究了苏鲁与大别超高压变质带莫霍面深度和深部P波速度结构分布特征。结果表明,尽管苏鲁、大别超高压变质带都具有上地壳明显高速且上凸;中地壳增厚;下地壳埋藏较深且下凹等共同的P波速度结构特征,与大别地区相比较,苏鲁超高压变质带还存在着独特的区域性特征。从地貌上看,苏鲁地区山脉已经基本消失。苏鲁超高压变质带的地壳厚度为32~33公里,深于其周围地区2~3公里,但是莫霍面下凹程度远不如大别地区,造山带地壳山根已逐步趋向消失。苏鲁地区上地壳P波速度高于大别,比其周围地区约快1~1.2km/s,有可能显示了该区有更多高速、高密度的超高压变质岩折返到上地壳与地表的岩石物性效果。大别造山带山脉依然存在,莫霍面下凹更明显,沿NWW向串状残留地壳山根最深为37~38公里,深于其周围地区3~4公里。对比研究结果表明,由于区域构造运动的作用,苏鲁大别造山带中的不同地段,在其造山、演化过程中也存在着差别。苏鲁的造山运动起始虽略晚于大别,但结束的更快,比大别更早进入了造山运动的后期。分析促使苏鲁造山运动进程加速的主要构造原因可能有两点,郯庐断裂带的左旋走滑运动以及通过中国华北区域的大范围NW-SE向扩张应力场的影响。大区域构造背景加速了苏鲁造山带地表高山侵蚀过程的同时,随着山根浮力的不断减弱,地壳深部山根逐渐趋向消失。地壳速度结构特征有可能反映了苏鲁造山带的地壳山根随着地表山脉的侵蚀而减弱,趋向消失的过程。  相似文献   
106.
江西南部龙南-寻邬地区余田群菖蒲组的流纹岩形成于中侏罗世(164.8.1Ma~174.9Ma),为双峰式火山岩组合的酸性端元,属弱过铝质(ACNK平均为1.04)钙碱性系列(σ平均为1.90)。稀土元素含量高(平均为278.9μg/g),轻稀土富集(IMH平均为7.94),Eu亏损中等(δEu平均为0.41)。微量元素以富集Rb,Ba,Th,U,Zr,Y,Pb,而亏损Sr,Nb为特征。Pb,Nd,Sr同位素组成为:(^206Pb/^204Pb)t=17.89~18.58,(^207Pb/^204Pb)t=15.58~15.70,(^208Pb/^204Pb)t=37.94~38.82;εNd(t)=-7.44~-11.9;ISr=0.71126~0.71228。对赣南流纹岩微量元素采用蛛网图和模糊聚类分析方法进行对比研究的结果及Pb-Nd-Sr同位素相关特征为其上地壳成因提供了地球化学佐证。赣南流纹岩是由进入上地壳内高位岩浆房的石英拉斑玄武岩浆的底侵作用直接使上地壳部分熔融形成的产物。  相似文献   
107.
南太行山闪长岩的SHRIMP锆石U-Pb年龄及岩石成因研究   总被引:6,自引:13,他引:6  
南太行山符山和东冶角闪闪长岩岩体的精细SHRIMP锆石U-Pb定年和元素-同位素地球化学研究表明:符山角闪闪长岩体形成于126.7±1.1Ma,东冶角闪闪长岩体形成于125.9±0.9Ma,与区内基性侵入岩和北太行地区侵入杂岩具有相似的形成年龄,表明晚中生代(±130Ma左右)太行山地区经历了与华北陆块同期的重要构造岩浆事件。区内闪长质岩石SiO_2=54.84%~65.75%,MgO=1.31%~3.89%,K_2O Na_2O=6.53%~11.40%,mg值=0.36~0.58,(La/Yb)_(cn)=9.86~22.77,(Gd/Yb)_(cn)=1.51~2.00;Eu/Eu=1.00~1.23,以富集LREE、LILE元素和明显亏损Nb-Ta、Zr-Hf-Ti等高场强元素为特征。~(87)Sr/~(86)Sr(t)=0.705363~0.706165,ε_(Nd)(t)=-13.8~-16.8,源自于EMI型富集岩石圈地幔,可解释为新生地幔底侵物质熔融后经过结晶分异作用的产物。与华北克拉通内部其他地区一样,早白垩世南太行山地区处于软流圈上涌的岩石圈伸展构造背景。  相似文献   
108.
Well hydrographs from 275 piezometers between 1998 and 2001 in the southeastern parts of peninsular India were used in this study. The area has a monsoon-type climate. Hard rocks cover 85% of the area. The form (shape) of the hydrograph depends upon (1) climatic and hydrogeologic parameters and (2) the scale of the graph. Therefore, hydrographs are drawn to a defined and standardised scale, which allows comparison of hydrographs and helps in bringing out reasons for different forms of the hydrographs. Hydrographs can be divided into seasonal segments and the slope of each segment then used as the basic element of a classification scheme. Slopes are classed as flat (inclination <20°), obtuse (between 20 and 45°), acute (45 and 80°), right angled (80 and 90°) and homoclinal (segments of hydrographs are either rising or falling during one complete water year). Hydrographs are assigned names that are a combination of these classes and begin with the rising segment, such as acute-obtuse. Seventy-six percent of segments were homoclinal-falling in 1999, which had a poor monsoon. Flat segments constitute 27% of all segments in confined Mesozoic aquifer systems. Water table fluctuations suggest an approximate recharge of 120 to 180 mm per annum constituting 18% of the annual precipitation. Cumulative rainfall required to affect a rise in water table is between 45 to 200 mm and lag time varies from 30 minutes to 200 rainy days, which suggests that moisture in the vadose zone holds a part of the annual replenishment for these aquifers.  相似文献   
109.
The Qinglongshan eclogites in the Southern Sulu ultrahigh pressure metamorphic (UHPM) terrane show very different retrograded textures from their counterparts in the Northern Sulu terrane, implying a different thermal history. Scanning electron and optical microscope observations indicate that the peak assemblage of the Qinglongshan eclogite is anhydrous, composed of Grt + OmpI + Rt + (Ky + coesite). These primary minerals were replaced by second and third stage minerals, resulting in symplectite pseudomorphs or coronas. The following relationships are inferred: OmpI → OmpII + Ab + Fe‐oxide symplectite (type I) and Rt → Rt + Ilm intergrowth; and, Ky → Pg, OmpII (+Pl) → Amp (+Pl) symplectite (type II), and Grt → Prg (+Fe‐oxide). Mineral chemistry and mass‐balance demonstrate that the pseudomorphed textures were developed by metasomatism involving dissolution and precipitation intensified by fluids along grain boundaries. The formation of symplectite type I produced Fe, Mg and Na but consumed Ca and Si. The Mg and Fe diffused to garnet where exchange of (Mg, Fe) with Ca of the garnet resulted in compositional zonation with decreased Ca towards the edge of garnet grains where Ca was consumed during symplectite formation. The replacement of kyanite by paragonite consumed the extra Na. In the later stage, fluid infiltration partially transformed symplectite type I to type II, and narrow rims of pargasite resorbed garnet from their boundaries. Mass balance suggests that the transformation and resorption would have been coupled during fluid infiltration. In the latest stage, epidote and quartz were precipitated at very late stage as a result of fluid activity along microfractures. Tentative P–T conditions based on mineral reactions and thermocalc software suggest that the retrograded eclogite did not record the granulite facies retrograde evolution characteristic of eclogites from the Northern Sulu terrane. The difference in retrograde evolution between the Southern and Northern Sulu eclogites suggests a different exhumation history.  相似文献   
110.
In southern Turkey ongoing differential impingement of Arabia into the weak Anatolian collisional collage resulting from subduction of the Neotethyan Ocean has produced one of the most complex crustal interactions along the Alpine–Himalayan Orogen. Several major transforms with disputed motions, including the northward extension of the Dead Sea Fault Zone (DSFZ), meet in this region. To evaluate neotectonic motion on the Amanos and East Hatay fault zones considered to be northward extensions of the DSFZ, the palaeomagnetism of volcanic fields in the Karasu Rift between these faults has been studied. Remanence carriers are low-Ti magnetites and all except 5 of 51 basalt lavas have normal polarity. Morphological, polarity and K–Ar evidence show that rift formation occurred largely during the Brunhes chron with volcanism concentrated at 0.66–0.35 Ma and a subsidiary episode at 0.25–0.05. Forty-four units of normal polarity yield a mean of D/I=8.8°/54.7° with inclination identical to the present-day field and declination rotated clockwise by 8.8±4.0°. Within the 15-km-wide Hassa sector of the Karasu Rift, the volcanic activity is concentrated between the Amanos and East Hatay faults, both with left lateral motions, which have rotated blocks bounded by NW–SE cross faults in a clockwise sense as the Arabian Block has moved northwestwards. An average lava age of 0.5 Ma yields a minimum cumulative slip rate on the system bounding faults of 0.46 cm/year according with the rate deduced from the Africa–Arabia Euler vector and reduced rates of slip on the southern extension of the DSFZ during Plio-Quaternary times. Estimates deduced from offsets of dated lavas flows and morphological features on the Amanos Fault Zone [Tectonophysics 344 (2002) 207] are lower (0.09–0.18 cm/year) probably because they are limited to surface fault breaks and do not embrace the seismogenic crust.Results of this study suggest that most strike slip on the DSFZ is taken up by the Amanos–East Hatay–Afrin fault array in southern Turkey. Comparable estimates of Quaternary slip rate are identified on other faults meeting at an unstable FFF junction (DSFZ, East Anatolian Fault Zone, Karatas Fault Zone). A deceleration in slip rate across the DSFZ and its northward continuation during Plio-Quaternary times correlates with reorganization of the tectonic regime during the last 1–3 Ma including tectonic escape within Anatolia, establishment of the North and East Anatolian Fault Zones bounding the Anatolian collage in mid–late Pliocene times, a contemporaneous transition from transpression to transtension and concentration of all basaltic magmatism in this region within the last 1 Ma.  相似文献   
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