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71.
以琼东南盆地为研究对象,在地震资料构造解释的基础上,选取琼东南盆地6条典型剖面,采用面积守恒法对其进行平衡剖面的恢复,计算出各个剖面在不同时期的拉张量以及拉张率,以此为基础对琼东南盆地的构造演化过程及区域性差异进行了定性以及定量分析。研究表明,在琼东南盆地中部位置,水平拉张率显著减小并较为稳定,表明盆地内部的打开是均匀的;琼东南盆地新生代的构造演化分为四个阶段,65~33.9 Ma: 盆地伸展活动开始;33.9~23 Ma: 盆地伸展活动增强并达到顶峰;23~10.5 Ma: 伸展活动明显减弱,发育了少量继承性断层;10.5~0 Ma: 平静沉积,基本没有断裂活动。琼东南盆地东西段构造样式存在明显差异,盆地西部断裂数量较少,单一断层断距大,有利于油气从烃源岩向内部储层运移填充,上部形成良好的盖层,防止油气的逃逸;盆地东段地堑内部发育较多断裂,断裂期次多、组合复杂,沉积盖层厚度薄,不利于油气的保存。基底性质和先存断裂影响着琼东南盆地东、西部的构造演化。  相似文献   
72.
北京周口店地区中元古界雾迷山组以含硅质条带的白云岩为主,发育不规则硅质砾屑。这些硅质砾屑形态各异,具有强烈扰动的迹象,目前对其成因解释一直存在争议,如泄水构造、冲刷构造、震积岩、风暴岩等。文中选择北京周口店地区黄山店村恒顺厂剖面为研究对象,通过野外精细的沉积学分析,系统描述了岩性及沉积构造特征,确定了该套沉积地层发育典型的碳酸盐岩风暴沉积序列。该风暴沉积序列自下往上可分为5段: A段,为风暴前正常沉积的中厚层状泥晶白云岩;B段,具口袋构造的侵蚀冲刷面及硅质砾屑,为风暴高潮期产物;C段,灰色硅质条带白云岩,普遍发育平行层理和波状、丘状、洼状交错层理,是风暴衰减期产物;D段,灰白色薄层状泥晶白云岩,代表了风暴间歇期的正常沉积;E段,含硅质团块白云岩,为正常天气下海水局部扰动形成。该剖面上递变层理几乎不发育,结合侵蚀冲刷面特征、砾屑高含量以及杂乱堆积方式,认为该套沉积为典型的近原地风暴沉积。结合古地理资料,推测研究区在雾迷山组沉积时期可能处于热带海洋环境,热带气旋引发的频繁风暴潮导致了近原地碳酸盐岩风暴沉积的形成。上述研究成果不仅补充了燕山地区雾迷山组的风暴沉积记录,而且为该时期华北板块的古地理、古纬度和古气候研究提供了重要的沉积学证据。  相似文献   
73.
油气勘探开发涉及各类数据体,同一数据体可得多种平均值,目前尚无明确而有效的方法以判断何种平均值能客观反映数据体的典型水平。运用数据统计平均分析方法,对勘探开发实践中的孔隙度、渗透率、产量、成本等数据体进行系统分析,确立了加权中位数计算公式和平衡中位数法则。加权中位数计算公式适于分析不同领域正常有序数据体的基本特征,加权中位数为正常有序数据体的平衡点;平衡中位数法则适于确定有足够大数据容量、能满足统计分析基本要求、能选择合理权衡指标的正常有序数据体的典型水平;有明确物理意义的加权平均值也可确定数据体的典型水平。  相似文献   
74.
针对真空预压作用下排水板淤堵与排水条件受限等问题,提出絮凝−真空−电渗联合加固法。首先通过沉降柱试验确定合适的有机絮凝剂,然后采用该絮凝剂,分别在 48 h(开始介入真空预压,固结度为0 )、60 h(排水速率明显下降,固结度为60%)及 84 h(排水速率近乎 0,固结度为 80%)时介入电渗,开展不同电渗介入时间的絮凝−真空−电渗联合加固试验。试验从排水量、十字板剪切强度、含水率与孔压等对比分析联合加固的有效性,确定其最佳电渗介入时间。试验结果表明:当固结度为 80% 时介入电渗,絮凝−真空−电渗联合加固法能够有效地抑制排水速率减小的趋势,增长有效排水时间。同时,土体的抗剪强度和承载力亦得到大幅提升,孔压消散更加均匀。此外,在阳离子聚丙烯酰胺絮凝剂的作用下,初始排水速率快,在一定程度上使土体的渗透性得到提升,有效地解决了排水板淤堵问题,说明絮凝−真空−电渗联合加固法具有较强的优越性。  相似文献   
75.
针对高动态环境会使接收机接收信号载频上产生很大的多普勒频移及其变化率,普通的GPS载波跟踪环无法保证可靠的跟踪等问题,通过综合分析传统的二阶叉积自动频率控制环(CPAFC)辅助三阶锁相环(PLL)的高动态载波跟踪环路,以及卡尔曼滤波器在动态跟踪中的优势与劣势,该文设计了一种基于卡尔曼滤波的二阶CPAFC辅助三阶PLL的GPS高动态载波跟踪环路。通过仿真分析证明,新的环路能更好地适应动态性,整体跟踪性能更好;并且在信噪比较低的情况下,环路优势更明显。  相似文献   
76.
77.
In‐channel rock vane structures are widely used in stream restoration as a way to reduce stream channel erosion and create pool or riffle features. When these structures change hydraulic gradients they may affect ecological stream functions, such as hyporheic exchange flow (HEF) patterns. A study of constructed in‐channel structure controls on HEF was conducted in the third‐order Batavia Kill, New York using stream and hyporheic temperature amplitude analysis and computational fluid dynamics (CFD) hydraulic simulations. Temperature monitors were installed in the water column and channel bed at six locations around each of seven in‐channel restoration structures (three cross‐vanes and four J‐hooks) at baseflow in 2007. Elevation surveys of the structures were then used to simulate HEF using CFD. The results indicate a pattern of pronounced upwelling in the run section just below the structure, upwelling transitioning to downwelling within the pool, and pronounced downwelling in the glide out of the pool. This pattern is consistent with natural riffle pool sequences. The direction of HEF inferred from the temperature amplitude analysis agreed with the direction of flow simulated with CFD at 80% of the locations, and the few disagreements were expected due to model limitations. CFD simulation demonstrated that increasing stream flows result in changes in HEF spatial patterns and magnitude at each structure. This work illustrates how CFD simulations can guide design of in‐channel restoration structures for HEF function. Copyright © 2009 John Wiley & Sons, Ltd.  相似文献   
78.
The ground water flow path of the coastal area in the Yellow Sea, Korea, was interpreted using both the cross‐correlation analysis of hydraulic properties and the principal component analysis (PCA) of ground water chemistry. Data was obtained from observation wells in the underground liquefied petroleum gas (LPG) cavern constructed in the coastal area of Pyeongtaek. Cross‐correlation results showed that the operating pressure became more influenced on artificial factors for the variation of the groundwater level of the study area (45–66% of correlation coefficient) even though its affecting area was limited to the region with fractures or faults, and also showed that the delay time from the variation of operating pressure to the fluctuation of ground water level were relatively long periods (28–31 days). Three hydrogeochemical events (encrusted cement dissolution, host rock dissolution, and seawater intrusion), which were dominantly influenced on ground water quality, could be induced from the result of PCA. Quantitative evaluation for these events using the mixed equation with principal component scores suggest that the dissolution of encrusted cement materials was the predominant factor (39·0% of the total mixed proportion) to change the chemical composition of the seepage water during the ground water flow from the observation wells to the cavern. Integration of the statistical results also imply that ground water flow and hydrogeochemistry were predominantly affected by artificial factors such as cavern operation pressure and dissolution of encrusted cement materials, which were interdependent factors on the observation wells with high cross‐correlation coefficients and pH. Copyright © 2007 John Wiley & Sons, Ltd.  相似文献   
79.
Tethered current crosses are simple, reliable tools in making measurements of estuarine currents in the absence of surface waves. The standard error of the estimate of current speed is less than 5 cm s?1 for the particular crosses and weights used in a calibration experiment. The useful velocity range of these current crosses was 8–147 cm s?1, corresponding to a measured angle, α, from 2° to 30°. Regression of the independently measured current speed on (tan α)12 yielded coefficients of determination greater than 0·94, indicating that the drag coefficient is not a function of current speed. However, the calculated drag coefficients varied widely from 0·66 to 2·55, depending on the particular combination of cross and weight, varying drastically from the commonly assumed drag coefficient value of 1·12. Thus, in using current crosses, it is imperative to calibrate each cross against a current meter reading to determine an appropriate value for the drag coefficient for a particular current cross and weight.  相似文献   
80.
In this article, we present the solutions for the stresses induced by four different loads associated with an axially loaded pile in a continuously inhomogeneous cross‐anisotropic half‐space. The planes of cross‐anisotropy are parallel to the horizontal surface of the half‐space, and the Young's and shear moduli are assumed to vary exponentially with depth. The four loading types are: an embedded point load for an end‐bearing pile, uniform skin friction, linear variation of skin friction, and non‐linear parabolic variation of skin friction for a friction pile. The solutions for the stresses due to the pile load are expressed in terms of the Hankel integral and are obtained from the point load solutions of the same inhomogeneous cross‐anisotropic half‐space which were derived recently by the authors (Int. J. Rock Mech. Min. Sci. 2003; 40 (5):667–685). A numerical procedure is proposed to carry out the integral. For the special case of homogeneous isotropic and cross‐anisotropic half‐space, the stresses predicted by the numerical procedure agree well with the solutions of Geddes and Wang (Geotechnique 1966; 16 (3):231–255; Soils Found. 2003; 43 (5):41–52). An illustrative example is also given to investigate the effect of soil inhomogeneity, the type and degree of soil anisotropy, and the four different loading types on the vertical normal stress. The presented solutions are more realistic in simulating the actual stratum of loading problem in many areas of engineering practice. Copyright © 2004 John Wiley & Sons, Ltd.  相似文献   
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