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21.
蔡先华  王浪  付晓 《测绘通报》2020,(5):130-133
城市交通网络规模的不断扩大使得交通线路图成为一种常用地图。为了提高信息的传输效率,更好地保证图形的清晰易读性,出现了变形交通线路地图[1]。本文分析了变形交通线路图特性并对其自动制作过程进行了总结。为解决制作过程中地图符号冲突问题,提出了作用力驱动站点位移的交通线路图变形压缩方法。建立交通线路图中站点受力移动模型并设计了以坐标轴为轴心的移位算法。试验表明,该算法能够有效解决地图符号冲突问题,为完全自动制作变形交通线路图建立了基础。  相似文献   
22.
阐述了花儿岩变形体的基本特征,分析了影响变形体的地质环境因素(包括地形地貌、地层结构和地下水)和外界影响因素(包括降水、人为活动和新构造运动),以及变形体近期特征,并通过推力传递系数法和破坏概率分析法对变形体的稳定性进行了评价。  相似文献   
23.
In this study, we address the late Miocene to Recent tectonic evolution of the North Caribbean (Oriente) Transform Wrench Corridor in the southern Sierra Maestra mountain range, SE Cuba. The region has been affected by historical earthquakes and shows many features of brittle deformation in late Miocene to Pleistocene reef and other shallow water deposits as well as in pre-Neogene, late Cretaceous to Eocene basement rocks. These late Miocene to Quaternary rocks are faulted, fractured, and contain calcite- and karst-filled extension gashes. Type and orientation of the principal normal palaeostress vary along strike in accordance with observations of large-scale submarine structures at the south-eastern Cuban margin. Initial N–S extension is correlated with a transtensional regime associated with the fault, later reactivated by sinistral and/or dextral shear, mainly along E–W-oriented strike-slip faults. Sinistral shear predominated and recorded similar kinematics as historical earthquakes in the Santiago region. We correlate palaeostress changes with the kinematic evolution along the boundary between the North American and Caribbean plates. Three different tectonic regimes were distinguished for the Oriente transform wrench corridor (OTWC): compression from late Eocene–Oligocene, transtension from late Oligocene to Miocene (?) (D1), and transpression from Pliocene to Present (D2–D4), when this fault became a transform system. Furthermore, present-day structures vary along strike of the Oriente transform wrench corridor (OTWC) on the south-eastern Cuban coast, with dominantly transpressional/compressional and strike-slip structures in the east and transtension in the west. The focal mechanisms of historical earthquakes are in agreement with the dominant ENE–WSW transpressional structures found on land.  相似文献   
24.
湖相沉积岩中的同生变形构造及其地质意义   总被引:1,自引:0,他引:1  
本文以渤海湾周缘地区的东濮凹陷下第三系沙三沙四段湖相沉积岩中出现的同生变形构造为例,讨论其命名、分类、主要类型、形成机理及其在分析古沉积环境、古地理和古构造等方面的意义。这项讨论为研究陆相含油气盆地的同生变形构造提供了对比依据。  相似文献   
25.
在研究完成变形岩体软弱破裂带或灌性的基础上,彩旋喷注浆技术进行直接加固处理,提高破裂带的内聚力和内摩擦角。实践证明,抑制了岩体的变形,防止了滑坡的产生。  相似文献   
26.
南海北部陆缘东部陆坡的蒸发盐沉积   总被引:1,自引:0,他引:1  
在南海北部陆缘东部、台湾浅滩以南的陆坡上,海底水深1 000 ~3 000 m,海底坡度较小,平均8.6×10-3.从穿过这里的地震剖面上看,新生代早期( 晚渐新世)有一套沉积(T7-T8)发生过强烈变形,其内部无反射,只有杂乱的噪声.从地震声纳浮标探测的结果看,这套沉积的层速度为4.98 km/s.由于这套沉积的变形,使上覆沉积也发生了变形.将这套沉积和大西洋边缘的蒸发盐沉积对比,发现其反射特征和层速度极为相似. 因此,推测它为发生在海底扩张初期的蒸发盐沉积.  相似文献   
27.
山东坪上一带深层次构造岩发育 ,依其塑性变形矿物及其组合、同构造新晶和同构造变形晶所反映的变形特征的不同可分为石英变形相构造岩、钾长石变形相构造岩和斜长石变形相构造岩 ,其变形时的温压条件为中压相系的低绿片岩相—低角闪岩相  相似文献   
28.
Tectonically deformed coal(TDC)develops because of the superimposed deformation and metamorphism of a coal seam by tectonic movements.The migration and accumulation of trace elements in TDC is largely in response to stress-strain conditions.To develop a law governing the migration and aggregation of sensitive elements and investigate the geological controls on TDC,coal samples from different deformation sequences were collected from the Haizi mine,in the Huaibei coalfield in Anhui Province,China,and the concentrations of 49 elements were determined by XRF and ICP-MS,and then microscopically analyzed.The results show that the distribution and morphology of minerals in coal is related to the deformation degree of TDC.The evolutionary process runs from orderly distribution of minerals in a weak brittle deformed coal to disordered distributions in ductile deformed coal.According to the elemental distribution characteristics in TDC,four types of element migration can be identified:stable,aggregate,declining,and undulate types,which are closely related to the deformation degree of TDC.Present data indicate that the overall distribution of rare earth elements(REE)does not change with metamorphism and deformation,but it shows obvious dynamic differentiation phenomena along with the deformation of TDC.Tectonic action after coal-formation,brittle or ductile deformation,and the metamorphic mechanism and its accompanying dynamic thermal effects are the main factors that influence the redistribution of elements in TDC.We conclude that tectonic movements provide the motivation and basis for the redistribution of elements and the paths and modes of element migration are controlled by brittle and ductile deformation metamorphic processes.The dynamic thermal effect has the most significant effect on coal metamorphism and tectonic-stress-accelerated element migration and accumulation.These factors then induce the tectonic-dynamic differentiation phenomenon of element migration.  相似文献   
29.
The calibration of the elastic characteristics of deformed coals is essential for seismic inversion of such units, because the prediction of coal deformation is essential for both mining safety and methane production. Therefore, many samples of broken and mylonitic deformed coal were tested with ultrasonic waves in the laboratory. These samples came from four mining areas: the Huainan, Pingdingshan, Hebi and Jiaozuo coal mines, which present five different metamorphic ranks shown as cylinders striking across circular limits of steel. Under normal pressures and temperatures, ultrasonic P- and S-wave tests show that the velocities, quality factors, and elastic moduli of the deformed coals were greatly reduced compared with undeformed coals. Also, some correlation was found between the P- and S-wave velocities in the deformed coals. However, there is no evidence of linear correlations between velocity and density, velocity and quality factor, or the quality factors of P- and S-waves. Compared with the elastic characteristics of undeformed coals, such as P- and S-wave velocity ratios or Poisson’s ratio, those of deformed coals generally decrease and the P-wave quality factors are less than those of S-waves. Moreover, the analysis of the relationship between pore structure and elastic modulus shows a better correlation between the P- and S-wave velocities and effective porosity, pore volume and specific surface area. Also, there are similar relationships between the pore structure and the Young’s and shear moduli. However, there are no such correlations with other moduli. Correlations between these elastic moduli, pore structure, coal rank and density were not found for the various samples of deformed coals, which is consistent with only structural destruction occurring in the deformed coals with other physical properties remaining unchanged. The experimental results show that it is possible to predict the deformation of coals with multi-component seismic elastic inversion.  相似文献   
30.
构造变形可以引起煤纳米级孔隙结构的变化,变形机制的不同对孔隙结构的影响程度也不同。煤的孔隙非均质性极强,传统实验方法难以准确地描述孔隙结构的复杂性,而分形理论提供了描述这一复杂性的量化方法。基于渭北煤田韩城矿区不同类型构造煤的低温氮吸附实验,采用分形FHH方法,定量表征了构造变形对煤纳米级孔隙结构的影响程度。结果表明:韧性变形煤比脆性变形煤的孔隙分形维数高,孔隙结构复杂,非均质性增强,导致毛细凝聚效应增强,吸附滞后突出;构造煤分形维数随着平均孔径的降低和中孔含量的升高而增大,说明构造变形程度越大,平均孔径越小,孔隙结构越复杂。研究认为,分形维数定量反映了煤构造变形的强弱,可以指示煤中纳米级孔隙结构的变形程度。   相似文献   
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