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21.
文章阐述了中国雄黄雌黄矿床的矿床分布、矿床类型、控矿因素、矿赋岩石及成矿物质来源,划分了5个成矿带,提出按成矿带寻找不同类型雄黄雌黄矿床的见解.  相似文献   
22.
利用TerraSAR-X卫星2013-08~2014-08的17景雷达影像,采用小基线集(small baseline subset,SBAS)InSAR技术获取呼图壁(HTB)地下储气库(underground gas storage,UGS)运行期间的地表形变序列,并结合UGS注(采)气井口的压力数据,采用多点源Mogi模型,对HTB UGS的形变场进行模拟。结果表明,整个UGS区域的形变特征为非连续分布,形变与注(采)气压力变化具有较好的相关性;注(采)气期间沿卫星视线向(LOS)的形变峰值分别为10 mm和-8 mm;采用自适应前向搜索法,基于多点源Mogi模型初步模拟注(采)气期间的形变过程,当UGS的注(采)气平均气压为18 MPa和15 MPa时,LOS的形变可达7 mm和-4 mm,地表形变的大小与注(采)气井口密度有关;UGS的储气分布呈非均匀状态,即地下气库结构复杂多变。  相似文献   
23.
The detailed characteristics of the Paleozoic strike-slip fault zones developed in the northern slope of Tazhong uplift are closely related to hydrocarbon explorations. In this study, five major strike-slip fault zones that cut through the Cambrian-Middle Devonian units are identified, by using 3D seismic data. Each of the strike-slip fault zones is characterized by two styles of deformation, namely deeper strike-slip faults and shallower en-echelon faults. By counting the reverse separation of the horizon along the deeper faults, activity intensity on the deeper strike-slip faults in the south is stronger than that on the northern ones. The angle between the strike of the shallower en-echelon normal faults and the principal displacement zone(PDZ) below them is likely to have a tendency to decrease slightly from the south to the north, which may indicate that activity intensity on the shallower southern en-echelon faults is stronger than that on the northern ones. Comparing the reverse separation along the deeper faults and the fault throw of the shallower faults, activity intensity of the Fault zone S1 is similar across different layers, while the activity intensity of the southern faults is larger than that of the northern ones. It is obvious that both the activity intensity of the same layer in different fault zones and different layers in the same fault zone have a macro characteristic in that the southern faults show stronger activity intensity than the northern ones. The Late Ordovician décollement layer developed in the Tazhong area and the peripheral tectonic events of the Tarim Basin have been considered two main factors in the differential deformation characteristics of the strike-slip fault zones in the northern slope of Tazhong uplift. They controlled the differences in the multi-level and multi-stage deformations of the strike-slip faults, respectively. In particular, peripheral tectonic events of the Tarim Basin were the dynamic source of the formatting and evolution of the strike-slip fault zones, and good candidates to accommodate the differential activity intensity of these faults.  相似文献   
24.
利用NCEP资料,根据降水实况分布及各物理量分层平面分布,每隔6 h对特大暴雨中心区所在经、纬向带各物理量场作经、纬向垂直剖面图,结合高空观测图对郑州市两次特大暴雨发生的大环流形势场、触发特大暴雨发生的各物理量场进行诊断分析。结果表明:1)连续性特大暴雨区出现在低空急流轴的前方,一方面是由于低空急流前方水平辐合较强,另一方面低空急流对暖湿空气的输送,使大气不稳定度加强;局地短时性特大暴雨过程主要是冷空气侵入使冷暖湿空气团在郑州上空交汇,其对流不稳定能量释放所致。2)辐合线对暖湿空气的抬升运动起到动力加强作用,是触发中尺度雨团的根源,也是特大暴雨产生的根源。3)连续性暴雨发生、发展时,高空的反气旋起主导作用;局地短时性暴雨发生时,中低空的气旋辐合起主导作用。4)短时性特大暴雨天气,前期有较强的不稳定层结;连续性暴雨天气刚发生时,其前期存在较强的不稳定层结,在暴雨连续发生过程中不一定有强不稳定层结。5)连续性暴雨需要较强的水汽输送带,局地短时性暴雨不要求有明显的水汽输送。  相似文献   
25.
自2018年1月11日,河北广平地震台数字电扰动仪NS、EW测道每日北京时间18时至次日06时出现规律性高值变化。通过观测系统检测、测区环境调查、现场实验分析、周边台站观测对比、其他台干扰形态分析及震例总结等手段,并对各种可能的影响因素进行分析论证,综合分析认为,该变化为干扰的可能性较大,非地震前异常。  相似文献   
26.
潜江凹陷是一个中新生代断陷型盐湖盆地。其中蕴藏着丰富的石油、天然气和盐。在始新世晚期-渐新世早期潜江组沉积期,湖盆的构造活动和沉积充填作用极为活跃,形成了厚达4500 m的含盐岩系。通过对凹陷西北部王场地区王平1井、王云10-6井和王80-2井取心段共约151 m岩心的精细研究,在潜江组古盐湖韵律性含盐岩系中识别出17个典型的微相类型,并按成因与形成环境和岩类归纳为7个微相系列,对每个微相的特征与形成环境进行了分析。在潜江组淡化段中,沉积微相的纵向演变过程或组合类型复杂多变,总体上由潜四段至潜二段组成,湖盆的蒸发强度越来越大,水深越来越浅。最后,对潜江盐湖的形成条件和沉积环境演化进行了扼要分析。  相似文献   
27.
根据Ms≥6.0大地震活动的空间分布,有地震带和地震区之分.中国境内既有纵贯南北缘经度分布并把我国地震活动分隔成东西两部分的南北地震带,也有横穿北纬40左右呈东西向分布的阴山、燕山地震带,以及呈片状展布的东北深震区等.  相似文献   
28.
刘刚  乔学军  王琪 《中国地震》2020,36(4):718-728
地震大地测量是将大地测量(特别是空间大地测量)与地震学及构造地质学进行融合的新兴交叉学科,其可用于监测地震孕育的地球物理背景场及动态变化过程,对相关形变实现了102a~10-2s的宽频带监测,基本弥补了地震学与构造地质学间的频率空白。以多频带的地震大地测量技术(GNSS、InSAR、高频GNSS)为支撑的陆态网络工程,不仅获得了中国大陆长期的地壳运动图像,而且在强震形变监测中发挥了重要作用。汶川、芦山、尼泊尔廓尔喀及九寨沟等地震的研究成果表明,高频/静态GNSS、InSAR、精密水准相融合的多频大地测量,极大地拓展了地震形变监测的时空频域,促进了大陆型地震的相关研究,为地震预测预警研究奠定了基础。然而,目前使用的地震大地测量资料有限,同时,我国地震大地测量监测网络也有待不断加密和优化。  相似文献   
29.
Depression filling is a critical step in distributed hydrological modeling using digital elevation models (DEMs). The traditional Priority‐Flood (PF) approach is widely used due to its relatively high efficiency when dealing with a small‐sized DEM. However, it seems inadequate and inefficient when dealing with large high‐resolution DEMs. In this work, we examined the relationship between the PF algorithm calculation process and the topographical characteristics of depressions, and found significant redundant calculations in the local micro‐relief areas in the conventional PF algorithm. As such calculations require more time when dealing with large DEMs, we thus propose a new variant of the PF algorithm, wherein redundant points and calculations are recognized and eliminated based on the local micro‐relief water‐flow characteristics of the depression‐filling process. In addition, depressions and flatlands were optimally processed by a quick queue to improve the efficiency of the process. The proposed method was applied and validated in eight case areas using the Shuttle Radar Topography Mission digital elevation model (SRTM‐DEM) with 1 arc‐second resolution. These selected areas have different data sizes. A comparative analysis among the proposed method, the Wang and Liu‐based PF, the improved Barnes‐based PF, the improved Zhou‐based PF, and the Planchon and Darboux (P&D) algorithms was conducted to evaluate the accuracy and efficiency of the proposed algorithm. The results showed that the proposed algorithm is 43.2% (maximum) faster than Wang and Liu's variant of the PF method, with an average of 31.8%. In addition, the proposed algorithm achieved similar performance to the improved Zhou‐based PF algorithm, though our algorithm has the advantage of being simpler. The optimal strategies using the proposed algorithm can be employed in various landforms with high efficiency. The proposed method can also achieve good depression filling, even with large amounts of DEM data.  相似文献   
30.
A new wave equation is derived for modelling viscoacoustic wave propagation in transversely isotropic media under acoustic transverse isotropy approximation. The formulas expressed by fractional Laplacian operators can well model the constant-Q (i.e. frequency-independent quality factor) attenuation, anisotropic attenuation, decoupled amplitude loss and velocity dispersion behaviours. The proposed viscoacoustic anisotropic equation can keep consistent velocity and attenuation anisotropy effects with that of qP-wave in the constant-Q viscoelastic anisotropic theory. For numerical simulations, the staggered-grid pseudo-spectral method is implemented to solve the velocity–stress formulation of wave equation in the time domain. The constant fractional-order Laplacian approximation method is used to cope with spatial variable-order fractional Laplacians for efficient modelling in heterogeneous velocity and Q media. Simulation results for a homogeneous model show the decoupling of velocity dispersion and amplitude loss effects of the constant-Q equation, and illustrate the influence of anisotropic attenuation on seismic wavefields. The modelling example of a layered model illustrates the accuracy of the constant fractional-order Laplacian approximation method. Finally, the Hess vertical transversely isotropic model is used to validate the applicability of the formulation and algorithm for heterogeneous media.  相似文献   
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