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261.
为明确海陆变迁背景下障壁坝砂体成岩孔隙演化规律,运用岩石薄片、扫描电镜及配套能谱、阴极发光等资料,对延长探区石炭系本溪组障壁成因砂体储集特征与成岩作用进行综合分析,并结合砂岩初始孔隙度恢复模型与薄片孔隙定量分析技术,开展基于埋藏热演化历程的储层孔隙演化参数定量评价,建立该区本溪组障壁坝砂岩孔隙定量演化模式。结果表明:储层砂岩以石英砂岩、岩屑质石英砂岩及岩屑砂岩为主;孔隙度、渗透率平均值分别为4.72%和1.22×10^(-3 )μm^2;储集空间以溶蚀扩大孔、粒内孔、晶间孔为主;现今储层主体已达到晚成岩阶段;砂岩初始孔隙度平均值为38.1%,埋藏至今共经历了四个典型的成岩增/减孔阶段,即P_1~T_2(285~208 Ma)"低地温、快埋藏"的大幅减孔阶段(-30.7%)、T_2~J_3(208~153 Ma)"高地温、缓沉降"的溶蚀增孔阶段(+3.9%)、J_3~K_1(153~96 Ma)"高地温、稳埋深"的减孔定型阶段(-6.6%)、K_1至今(96 Ma~)"低地温、晚隆升"的弱改造阶段。  相似文献   
262.
263.
郝烃  何幼斌  王宁 《江苏地质》2019,43(1):86-96
通过岩芯和薄片观察,结合测井资料,对临南油田夏32断块沙二段下部储层发育特征及其主控因素进行了研究。结果表明:该区储层的岩石类型主要为岩屑质长石砂岩和长石质岩屑砂岩,颗粒分选中等,磨圆较差,成分成熟度及结构成熟度中等;储层物性表现为中低孔特低—低渗的特征,且孔隙度和渗透率相关性较好;孔隙类型包括原生粒间孔、粒内溶孔、粒间溶孔和铸模孔。综合储层特征的研究结果认为:夏32断块沙二段下部储层主要受基准面旋回、沉积、成岩以及构造作用的影响;三角洲平原的分支河道砂体物性最好,其次是三角洲前缘的水下分支河道,其他沉积微相储层物性较差;压实作用和胶结作用破坏储层物性,溶蚀作用则可改善储层物性;此外,构造作用所产生的裂隙也有利于改善储层物性,对储层物性起到了积极的建设作用。  相似文献   
264.
深部煤岩在垂直扰动作用下发生振动,当水平冲击足以克服块体间摩擦阻力时,极易发生超低摩擦型冲击地压。文章以细砂岩-煤-细砂岩组合块体为研究对象,考虑顶板-煤-底板临近工作面开采工况,采用数值模拟方法,建立围压与冲击扰动下组合煤岩数值模型,以煤块水平位移、垂直加速度差值作为超低摩擦效应特征参数,分析围压、垂直冲击及水平冲击对特征参数的影响规律。研究结果表明:在垂直冲击与围压共同作用下,煤岩体残余位移及水平位移峰值随围压增大且呈指数增长趋势;在垂直冲击、水平冲击和围压三者共同作用下,煤岩体超低摩擦效应强度与作用时间都随着围压呈增加趋势;垂直冲击对组合煤岩超低摩擦效应的影响最为显著。   相似文献   
265.
为了探讨饶阳凹陷蠡县斜坡北东缘西柳10断块古近系沙河街组沙三段-沙二段(Es~3-Es~2)层序地层特征及其沉积特征,依据高分辨率层序地层学理论,结合岩心、测井等资料,对研究区沙三段-沙二段层序地层进行划分,对其沉积特征、相带展布及其演化规律进行研究。研究结果表明,沙河街组沙三段-沙二段可划分为4个III级旋回,11个IV级旋回,32个V级旋回。沉积物岩性以细砂岩、粉砂岩及泥岩为主,沉积环境主要为辫状河三角洲平原和三角洲前缘,划分出7种沉积微相。结合研究区区域构造演化及沉积背景,认为沙三段-沙二段沉积时期,主要经历湖退到湖进的演变过程。  相似文献   
266.
The Gongga Shan batholith is a complex granitoid batholith on the eastern margin of the Tibetan Plateau with a long history of magmatism spanning from the Triassic to the Pliocene. Late Miocene-Pliocene units are the youngest exposed crustal melts within the entire Asian plate of the Tibetan Plateau.Here, we present in-situ zircon Hf isotope constraints on their magmatic source, to aid the understanding of how these young melts were formed and how they were exhumed to the surface. Hf isotope signatures of Eocene to Pliocene zircon rims(εHf(t)=-4 to +4), interpreted to have grown during localised crustal melting, are indicative of melting of a Neoproterozoic source region, equivalent to the nearby exposed Kangding Complex. Therefore, we suggest that Neoproterozoic crust underlies this region of the Songpan-Ganze terrane, and sourced the intrusive granites that form the Gongga Shan batholith. Localised young melting of Neoproterozoic lower or middle crust requires localised melt-fertile lithologies. We suggest that such melts may be equivalent to seismic and magnetotelluric low-velocity and high-conductivity zones or "bright spots" imaged across much of the Tibetan Plateau. The lack of widespread exposed melts this age is due either to the lack of melt-fertile rocks in the middle crust, the very low erosion level of the Tibetan plateau, or to a lack of mechanism for exhuming such melts. For Gongga Shan, where some melting is younger than nearby thermochronological ages of low temperature cooling, the exact process and timing of exhumation remains enigmatic, but their location away from the Xianshuihe fault precludes the fault acting as a conduit for the young melts. We suggest that underthrusting of dry granulites of the lower Indian crust(Archaean shield) this far northeast is a plausible mechanism to explain the uplift and exhumation of the eastern Tibetan Plateau.  相似文献   
267.
Glacierised basins are significant sources of sediments generated by glacial retreat. Estimation of suspended sediment transfer from glacierised basins is very important in reservoir planning for hydropower projects in Himalaya. The present study indicates that storage and release of sediment in proglacial streams may categorise the pattern of suspended sediment transfer from these basins. Assessment of suspended sediment concentration (SSC), suspended sediment load (SSL) and yield has been undertaken for Dunagiri Glacier basin located in Garhwal Himalaya (30o33'20”N, 79o53'36”E), and its results are compared with the Gangotri and Dokriani glaciers sharing close proximity. Out of the total drainage basin area, about 14.3 % of the area is glacierised. Data were collected for five ablation seasons (1984–1989, barring 1986). The mean daily SSCs for July, August and September were 333.9, 286.0 and 147.15 mg/l, respectively, indicating highest concentration of mean daily suspended sediment in July followed by August. SSL trends were estimated to be 93.0, 57.0 and 21.3 tonnes. About 59% of the total SSL of the melt period was transported during the months of August and September. Sediment yield for the study basin was computed to be 296.3 t km?2 yr ?1. It is observed that the cumulative proportion of SSC precedes the discharge throughout the melt season except in the year 1987. Release of SSL in terms of total load is less in the early part of melt season than in the later stage as compared to that of discharge. Diurnal variations in SSC reach their maximum at 2400 h, and therefore, SSC was found to be high during night (2000–0400 h). There was a good relationship between SSC and SSL with discharge for the ablation seasons (1988 and 1989). Mean monthly SSC and mean monthly SSL provide a good exponentional relationship with mean monthly temperature. Copyright © 2012 John Wiley & Sons, Ltd.  相似文献   
268.
Dehydration melting of muscovite in metasedimentary sequences is the initially dominant mechanism of granitic melt generation in orogenic hinterlands. In dry (vapour-absent) crust, muscovite reacts with quartz to produce K-feldspar, sillimanite, and monzogranitic melt. When water vapour is present in excess, sillimanite and melt are the primary products of muscovite breakdown, and any K-feldspar produced is due to melt crystallization. Here we document the reaction mechanisms that control nucleation and growth of K-feldspar, sillimanite, and silicate melt in the metamorphic core of the Himalaya, and outline the microstructural criteria used to distinguish peritectic K-feldspar from K-feldspar grains formed during melt crystallization. We have characterized four stages of microstructural evolution in selected psammitic and pelitic samples from the Langtang and Everest regions: (a) K-feldspar nucleates epitaxially on plagioclase while intergrowths of fibrolitic sillimanite and the remaining hydrous melt components replace muscovite. (b) In quartzofeldspathic domains, K-feldspar replaces plagioclase by K+–Na+ cation exchange, while melt and intergrowths of sillimanite+quartz form in the aluminous domains. (c) At 7–8 vol.% melt generation, the system evolves from a closed to open system and all phases coarsen by up to two orders of magnitude, resulting in large K-feldspar porphyroblasts. (d) Preferential crystallization of residual melt on K-feldspar porphyroblasts and coarsened quartz forms an augen gneiss texture with a monzogranitic-tonalitic matrix that contains intergrowths of sillimanite+tourmaline+muscovite+apatite. Initial poikiloblasts of peritectic K-feldspar trap fine-grained inclusions of quartz and biotite by replacement growth of matrix plagioclase. During subsequent coarsening, peritectic K-feldspar grains overgrow and trap fabric-aligned biotite, resulting in a core to rim coarsening of inclusion size. These microstructural criteria enable a mass balance of peritectic K-feldspar and sillimanite to constrain the amount of free H2O present during muscovite dehydration. The resulting modal proportion of K-feldspar in the Himalayan metamorphic core requires vapour-absent conditions during muscovite dehydration melting and leucogranite formation, indicating that the generation of large volumes of granitic melts in orogenic belts is not necessarily contingent on an external source of fluids.  相似文献   
269.
针对利用生成对抗网络模型(Generative Adversarial Network,GAN)重建SAR(Synthetic Aperture Radar)图像存在边缘细节信息不足和“伪影”(artifacts)现象,该文基于增强型超分辨率生成对抗网络(Enhanced Super-Resolution Generative Adversarial Networks,ESRGAN)光学模型,重新设计生成网络上采样重建模块和结构损失函数,提出一种结构增强型生成对抗网络SAR图像超分辨率重建算法,包括特征提取、特征增强和上采样重建3个模块:在特征提取模块采用小尺度卷积层对输入SAR图像进行低层次特征提取;在特征增强模块采用多个级联残差密集块(Residual-in-Residual Dense Block,RRDB)和卷积层提取输入特征;在上采样重建模块交替使用最近邻插值(Nearest Neighbor Interpolation,NNI)和亚像素卷积(Sub-Pixel Convolution,SPC)对特征进行放大重建,使特征信息交互融合。与传统插值算法和经典深度学习重建算法相比,该算法在视觉效果和定量评价方面均有显著提升,能够在保持原网络模型重建图像内容信息不丢失的基础上,增强重建图像边缘细节信息和减缓“伪影”现象,有利于后续目标识别和灾害监测等工作开展。  相似文献   
270.
针对狭长区域GNSS控制网边长差异较大的问题,本文通过划分子网来降低数据处理的难度,从基线处理和网平差两个方面,分析了系统误差来源,研究了基准处理中卫星轨道误差、对流层误差以及网平差中位置、尺度、方位和时间演变基准误差的改正方法,形成了一套高精度数据处理方案。基于该方法,对三峡库区GPS滑坡监测网的实测数据进行了分析与处理,获得了高精度的处理结果,本研究对狭长区域GNSS控制网的建立具有借鉴意义和指导作用。  相似文献   
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