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731.
在Version 2的基础上,对短波辐射方案进行进一步的改进:引入了新增非灰体气体吸收效应、冰晶粒子形状效应和尺度效应以及云的不均匀性效应(称为Version 3)。数值模拟试验结果表明:Version 3能更好地模拟出全球冬、夏季的降水场、海平面气压场及地表气温场的主要分布特征,并且能相当准确地反映出这几个场的季节性变化特征。Version 3对这3个场的模拟能力明显优于原版本(Version 1)。此外,它对东亚地区的季风降雨具有很好的模拟能力,能较好地反映东亚区域降水的季节性变化。可见,Version 3为进一步研究云-辐射相互作用提供了很好的模式基础。本工作还清楚地表明,模式的进一步发展必须进行对相关物理过程中各个因子的更精确刻画,只有这样,模式才能得到更好的模拟能力。 相似文献
732.
云南地区断层形变群体异常与成组强震 总被引:1,自引:0,他引:1
运用前兆综合信息量S、前兆群体非均匀度ID以及近源异常凸现值NS的数学分析这三种方法,对云南地区1982~2004年跨断层短基线短水准资料进行了分析处理.结果表明,在云南地区Ms≥6强震前断层彤变群体异常显著,尤其是成组强震前,群体异常信息较为丰富。 相似文献
733.
目前,有关天然气水合物的相关研究越来越多,而天然气水合物相平衡曲线和稳定带厚度的研究也变得越来越重要.本文利用Sloan的CSMHYD程序研究了外界条件变化对天然气水合物相平衡曲线及稳定带厚度的影响.研究结果表明:当天然气水合物中含有其他气体时,除了氮气会使水合物稳定存在的区域变小外;其他气体都会使稳定区域变大,且甲烷含量越少,水合物越容易形成;对于本文中所提到的几种气体,丙烷和硫化氢对相平衡曲线的影响最大;另外,水合物稳定存在的区域会随着盐度增加而变小.地温梯度、水深、海底温度、气体组成和孔隙水盐度对稳定带厚度的影响不同,其中稳定带厚度与地温梯度呈指数相关关系,与水深呈对数相关关系,与海底温度、水合物中甲烷含量及气体组成呈线性相关关系.水深从1 000 m增加到4 000 m时,稳定带厚度增加了大约400 m;水深2 000 m情况下,地温梯度从0.02℃/m到0.1℃/m变化时,稳定带厚度减薄了大约660 m;底水温度从0~17℃的变化过程中,稳定带厚度减薄了大约1000m;在水合物中气体组成从纯甲烷到含20%乙烷时,稳定带厚度增加了大约170m;盐度在0~4.5 wt%的变化中,稳定带厚度减薄了大约130 m.由此可见,在这几种因素中,地温梯度和底水温度对稳定带厚度的影响较大. 相似文献
734.
东昆仑活动断裂托索湖——玛曲以东肯定那一带, 可据阿尼玛卿玛积峰为界再分为花石峡段和玛沁段两个在几何上不连续的段落. 两段在表征断层全新世活动特征的古地震事件方面有明显差异, 花石峡段的地震活动性明显高于玛沁段的地震活动性. 古地震研究表明, 花石峡段上3次强震活动相邻两次地震发生的时间间隔分别约为500 a和640 a, 玛沁段上最近两次古地震事件间大致有1 000 a左右的时间间隔. 根据断层平均滑动速率计算的花石峡段7.5级地震的平均复发间隔为411~608 a, 相对应的同震平均水平位错约为(5.75plusmn;0.57)m. 虽然玛沁段的地震活动性较弱, 但由于该段上最近一次地震事件离现在较为久远, 已经积累的应变能应该使我们对其未来地震危险性的分析有足够重视. 相似文献
735.
736.
金川超镁铁质岩是金川铜镍硫化物矿床的赋存岩体.采自金川镍矿Ⅰ矿区露天矿第2期侵入岩体的样品其岩石类型主要为含二辉橄榄岩和二辉橄榄岩,见镍黄铁矿、磁黄铁矿、黄铁矿呈成条带状出现,表明其形成时低氧逸度的成岩环境。运用ICP—MS等离子质谱仪和MM5400稀有气体质谱仪分别对全岩样品的稀土元素、微量元素和包体稀有气体同位素进行测定后得到一些认识:金川超镁铁质岩的微量元素丰度与球粒陨石相比,变化曲线基本呈水平分布,但是地壳中高度亏损Cr,Ni元素含量较高,主要富集于超基性的辉石和橄榄石中,说明其成因类型具有明显的幔源特征。岩石中稀土元素总量较高,为轻稀土富集型.重稀土亏损。其中由深至浅稀土元素对La/Yb,Ce/Yb,La/Sm,(La/Sm)N的比值均基本呈现增大趋势.说明其中稀土元素分馏程度呈增大趋势,轻稀土的分馏尤为明显。超镁铁质岩的^3He/^4He值分布于0.847Ra~1.625Ra之间,虽远低于上地幔的^3He/^4He值.但仍存在地幔初始氦的踪迹。研究结果表明,该岩体在侵入过程中发生了明显的分异作用,并与地壳发生了的混染作用和热液交代作用.进一步证明了该岩体为上地幔局部熔融的超基性岩浆上侵形成的。 相似文献
737.
High-resolution structures of the Landers fault zone inferred from aftershock waveform data 总被引:2,自引:0,他引:2
High-frequency body waves recorded by a temporary seismic array across the surface rupture trace of the 1992 Landers, California, earthquake were used to determine fault-zone structures down to the seismogenic depth. We first developed a technique to use generalized ray theory to compute synthetic seismograms for arbitrarily oriented tabular low-velocity fault-zone models. We then generated synthetic waveform record sections of a linear array across a vertical fault zone. They show that both arrival times and waveforms of P and S waves vary systematically across the fault due to transmissions and reflections from boundaries of the low-velocity fault zone. The waveform characteristics and arrival-time patterns in the record sections allow us to locate the boundaries of the fault zone and to determine its P - and S -wave velocities independently as well as its depth extent. Therefore, the trade-off between the fault-zone width and velocities can be avoided. Applying the method to the Landers waveform data reveals a low-velocity zone with a width of 270–360 m and a 35–60 per cent reduction in P and S velocities relative to the host rock. The analysis suggests that the low-velocity zone extends to a depth of ∼7 km. The western boundary of the low-velocity zone coincides with the observed main surface rupture trace. 相似文献
738.
Deep-large faults in the central continental margin of eastern China are well developed. Based on the regularity of spatial
and temporal distribution of the faults, four fault systems were divided: the Yanshan orogenic belt fault system, the Qinling-Dabie-Sulu
orogenic belt fault system, the Tanlu fault system and the East China Sea shelf basin-Okinawa trough fault system. The four
fault systems exhibit different migration behaviors. The Yanshan orogenic belt fault system deflected from an EW to a NE direction,
then to a NNE direction during the Indo-Chinese epoch-Yanshanian epoch. The thrust-nappe strength of the Qinling-Dabie orogenic
belt fault system showed the tendency that the strength was greater in the south and east, but weaker in the north and west.
This fault system faulted in the east and folded in the west from the Indo-Chinese epoch to the early Yanshanian epoch. At
the same time, the faults also had a diachronous migration from east to west from the Indo-Chinese epoch to the early Yanshanian
epoch. On the contrary, the thrust-nappe strength was greater in the north and west, weaker in the south and east during the
late Yanshanian epoch-early Himalayan epoch. The Tanlu fault system caused the basin to migrate from west to east and south
to north. The migration regularity of the East China Sea shelf basin-Okinawa trough fault system shows that the formation
age became younger in the west. The four fault systems and their migration regularities were respectively the results of four
different geodynamic backgrounds. The Yanshan orogenic belt fault system derived from the intracontinental orogeny. The Qinling-Dabie-Sulu
orogenic belt fault system derived from the collision of plates and intracontinental subduction. The Tanlu fault system derived
from the strike-slip movement and the East China Sea shelf basin-Okinawa trough fault system derived from plate subduction
and retreat of the subduction belt.
Translated from Journal of Jilin University (Earth Science Edition), 2005, 35(5): 554–563 [译自: 吉林大学学报 (地球科学版)] 相似文献
739.
To tackle the difficulties of a 3-D full volume prestack migration based on the double-square-root (DSR) one-way wave equation
in practical applications, the common-azimuth migration approach is first discussed using dual-domain wave propagators under
the theoretical frame of crossline common-offset migration. Through coordinate transforming, a common-azimuth prestack tau
migration technology that recursively continues the source and receiver wavefields and picks up the migrated results in the
two-way vertical traveltime (tau) direction is developed. The migrations of synthetic data sets of SEG/EAGE salt model prove
that our common-azimuth migration approaches are effective in both depth and tau domains. Two real data examples show the
advantages of wave-theory based prestack migration methods in accuracy and imaging resolution over the conventional Kirchhoff
integral methods.
Translated from Oil Geophysical Prospecting, 2006, 41(6): 629–634 [译自: 石油地球物理勘探] 相似文献
740.
Indian peninsular shield, which was once considered to be seismically stable, is experiencing many earthquakes recently. As
part of the national level microzonation programme, Department of Science and Technology, Govt. of India has initiated microzonation
of greater Bangalore region. The seismic hazard analysis of Bangalore region is carried out as part of this project. The paper
presents the determination of maximum credible earthquake (MCE) and generation of synthetic acceleration time history plot
for the Bangalore region. MCE has been determined by considering the regional seismotectonic activity in about 350 km radius
around Bangalore city. The seismotectonic map has been prepared by considering the faults, lineaments, shear zones in the
area and historic earthquake events of more than 150 events. Shortest distance from the Bangalore to the different sources
is measured and then peak ground acceleration (PGA) is calculated for the different source and moment magnitude. Maximum credible
earthquake found in terms of moment magnitude is 5.1 with PGA value of 0.146 g at city centre with assuming the hypo central
distance of 15.88 km from the focal point. Also, correlations for the fault length with historic earthquake in terms of moment
magnitude, yields (taking the rupture fault length as 5% of the total fault length) a PGA value of 0.159 g. Acceleration time
history (ground motion) and a response acceleration spectrum for the corresponding magnitude has been generated using synthetic
earthquake model considering the regional seismotectonic parameters. The maximum spectral acceleration obtained is 0.332 g
for predominant period of 0.06 s. The PGA value and synthetic earthquake ground motion data from the identified vulnerable
source using seismotectonic map will be useful for the PGA mapping and microzonation of the area. 相似文献