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941.
王良果  陈龙  张华  蒲刚  赵军  陈中操  蒋尚志 《地质科学》2019,54(4):1383-1398
马脑壳金矿床构造变形复杂且研究薄弱,作者通过野外地质填图并结合矿山生产勘探,以构造解析为研究方法,对马脑壳金矿床的变形特征与金成矿关系进行了研究。构造解析表明区内地层在成岩期遭受了同生变形,成岩后先后遭受了NE-SW向的挤压褶皱逆冲变形([T33])、左行走滑变形并伴随伸展塌陷变形(J1-2),宏观上表现为推覆—走滑控矿,即印支末期推覆作用形成的变形样式整体控制着金矿体的产出和分布,后期走滑作用叠加改造导致的张性破裂样式控制着金矿化强度,成矿作用主要发生在左行走滑变形阶段(J1-2),成矿机制是燕山早中期(J1-2)西秦岭地区由强烈的挤压动力体制向弥散间隔密集的走滑动力体制转换,导致含矿热液沿构造薄弱带(如区内F2断裂)上升迁移并在构造动力体制转换强烈的区域发生大规模金沉淀。西秦岭地区和松潘—甘孜地区的微细浸染型金矿极有可能形成于燕山早期(J1-2)由挤压向走滑构造动力体制转过程中。  相似文献   
942.
为了研究郯庐断裂带(安徽段)构造活动对其周边地表水系形态及其发育特征的影响,本文基于DEM数据,利用GIS空间分析功能并结合郯庐断裂带构造运动特征,对郯庐断裂带(安徽段)周边水系的几何分布特征进行研究。研究表明:郯庐断裂带(安徽段)在不同地质历史时期对区内地表水系产生错动影响。受郯庐断裂三叠纪到白垩纪期间左旋走滑运动影响,两条二级水系在大别山区自西北向东南流经郯庐主干断裂及次级断裂时与断裂呈近似直角相交并发生左旋错动。大别山地区的皖河流域与华阳河流域水系受郯庐断裂第四纪以来逆右行平移运动影响流向由东南向同步大幅度拐向南西,表现为右旋扭错;巢湖流域水系受五河—合肥断裂和石门山断裂影响也出现了右旋位错。此外,受郯庐断裂带构造运动形成的合肥盆地和地堑式嘉山盆地的影响,池河的主河道沿合肥盆地东侧的沉降带和石门山断裂与嘉庐断裂之间的嘉山盆地发育。  相似文献   
943.
为了探究不同雨型条件下泥石流流量变化特征,通过搜集汶川震区典型泥石流降雨数据,将其概化为三次峰值早到型、三次峰值型、三次峰值晚到型三种雨型。以HEC-HMS水文模型构建高家沟流域模型,在获得流域清水流量结果基础上采用雨洪修正法计算不同雨型下泥石流流量。结果表明三次峰值早到型、三次峰值型、三次峰值晚到型峰值清水流量分别为33.5,41.5,45.8 m3/s,泥石流峰值流量分别为166.83,206.67,228.08 m3/s,误差为-25.6%、-7.8%、1.7%;三种雨型下流量从上游至沟口以线性方式演变,且随降雨峰值推迟其演变速率不断增大,而增长幅度逐渐减小;泥石流暴发出现在峰值降雨前后,属于降雨激发型泥石流;三种雨型随降雨峰值推迟,流量增长阶段所需时间越长,分别为5.5,6,9 h,而衰退阶段所需时间越短,分别为14.5,8,2.5 h。研究表明该模型能为缺少降雨监测数据地区泥石流研究提供技术支持。  相似文献   
944.
引红(红岩河)济石(石头河)引水隧洞围岩断层带破碎松软,岩石强度低,自稳能力差,易产生大变形。以上不良地质条件使其隧洞施工过程中经常会遇到TBM卡机等一系列特殊问题。针对引红济石引水隧洞施工中存在的软岩隧洞大变形问题,首先开展了X射线衍射、崩解试验,分析了试样的组成成分、黏土矿物含量对崩解性影响;再通过一系列单轴压缩试验、三轴压缩试验和蠕变试验研究了该类岩石不同应力条件下的变形破坏特征及蠕变特性。试验结果表明,该类岩石含有大量的黏土矿物(33.49%),对水比较敏感,遇水膨胀易崩解,导致岩体软化;试样具有较大塑性压缩变形,其应力-应变曲线为应变强化型,且没有明显的峰值。基于试验研究成果和现场监测数据,对该软岩隧洞大变形机制进行了分析,并提出了在围岩与管片之间安装聚氨酯缓冲层的新型支护方案,通过数值计算对支护方案的合理性进行了验证。分析结果表明:聚氨酯缓冲层可以很好地吸收围岩形变压力,避免应力集中带来的管片错台,从而大大减小管片上破坏区的产生。研究成果对该类岩体中隧洞的设计施工以及长期稳定性分析具有重要的参考作用。  相似文献   
945.
白云凹陷第三系储层中发育大量的铁白云石,受研究区热流背景的影响,铁白云石主要见于高地温梯度地区埋深1000~3000m、地层温度60~130℃的浅—中部地层中及CO_2热流体活动区域。铁白云石的δ~(13)C值(-2.83‰~-1.83‰)具有无机成因的特征,与研究区气藏中幔源岩浆成因CO_2的δ~(13)C值较为一致,铁白云石的δ~(18)O值(-9.45‰~-5.37‰)和~(87)Sr/~(86)Sr值(0.7101~0.7161)也反映了其沉淀受到深部热流体活动的影响。以两口典型CO_2气井为例,储层中流体包裹体均一温度及蒙脱石向伊利石的演化特征证明储层经历了热流体侵入;CO_2热流体活动区域不仅是铁白云石集中分布地带,并出现片钠铝石+铁白云石+菱铁矿等示踪CO_2运移、聚集的自生矿物组合。地层中铁白云石、高岭石含量与气藏中CO_2的含量呈正相关关系,绿泥石含量与CO_2、铁白云石含量呈反消长关系。高地温梯度地区丰富的CO_2热流体活动是该地区储层中铁白云石沉淀与含量高的重要原因,无机岩浆成因CO_2是铁白云石沉淀的主要碳源,CO_2热流体充注造成绿泥石等黏土矿物异常转化,为铁白云石沉淀提供了所需的Fe~(2+)、Mg~(2+)离子。  相似文献   
946.
Based on the principle of InSAR (Interferometirc Synthetic Aperture Radar) characterized by large-scale, continuity, permanency and dynamic, we took vertical displacement of solid Earth tide as an example to simulate the large-scale deformation observed by lunar based InSAR for the first time in the study and the observation ability was analyzed. Solid Earth tide has a feature of a large-space distribution range and the lunar based InSAR exhibits a feature of an ultra-wide swath imaging. According to these features, a simplified observation geometry model was established and a mid-low latitudes area with 50 degrees span in both longitude and latitude was selected as the simulation area. Then the revisit time intervals of the lunar based SAR for the selected area and the tidal vertical displacements at the points scanned by the radar were calculated. The time differentials were further computed to get the relative vertical deformation of the solid Earth tide. The simulation results show that the revisit period of the lunar based radar is about 24.8 hours and the maximum vertical displacement in 30 days is up to 30 cm. Since the designed accuracy of the lunar based InSAR reaches several centimeters, the observing of the vertical displacement of the solid Earth tide by using the lunar based InSAR is feasible in theory as the maximum magnitude of the vertical displacement is 1 order of magnitude larger than the designed accuracy. Theoretically ,solid Earth tide is observable by using lunar based InSAR in a sizable area.We can also use the observation data to study the temporal and spatial variation characteristics when observation time lasts two revisit periods or more. On the other hand,the result of the study also provides references for the parameter designing of other observations using the lunar based InSAR, especially for observing large-scale geodynamic phenomena.  相似文献   
947.
Himalayan orogenic belt is the highest and largest continental collision and subduction zone on the Earth. The Himalayan orogenic belt has produced frequent large earthquakes and caused several geohazards due to landslides and housing collapse, having an impact on the safety of life and property along a length of over 2500 km. Here we took three earthquake clusters as examples, which occurred at Nepal Himalaya, eastern Himalayan syntaxis and western Himalayan syntaxis, respectively. Here we calculated the earthquake locations and fault plane solutions based on the waveform data recorded by seismic stations deployed in source areas by the Institute of Tibetan Plateau Research, Chinese Academy of Sciences. We found that at the Nepal Himalayan, the Main Himalayan Thrust is the major tectonic structure for large earthquakes to occur. At the eastern Himalayan syntaxis, most earthquakes are of the reverse or strike-slip faulting. The major tectonic feature is the combination of the NE-dipping thrust with the southeastern escape of the Tibetan plateau. At the western Himalayan syntaxis, intermediate-depth earthquakes are active. These observations reveal the geometry of the deep subduction of the continental plate with steep dipping angle.  相似文献   
948.
Oxidized reactive nitrogen in the atmosphere mainly consists of nitrogen oxides (NO X =NO+NO2, NO3) and nitric acid. The atmospheric cycling of NO X influences the formation of ozone and hydroxyl radicals that are important for atmospheric oxidation capacity. Nitric acid, the final product of NO X oxidation, not only is an important component of particulate pollutants, but also has a direct impact on the ecosystem through dry and wet deposition. The stable nitrogen isotope (δ15N) shows the potential to study reactive nitrogen cycle, and to trace the emission, transport and deposition of reactive nitrogen from local to global scales. Here, we reviewed previous studies using δ15N to investigate NO X emission and atmospheric reactive nitrogen cycle, and discuss the uncertainties of δ15N signatures of different NO X sources from two aspects: NO X generation mechanism and NO X collection methods. We also discussed the nitrogen isotope fractionation and the consequences during the conversions of NO y molecules. We ended up with discussions on the possibility of using δ15N to trace NO X emissions. Although there are still large uncertainties in quantifying and tracing NO X emissions using nitrogen stable isotopes, such isotope tool is efficient enough to trace reactive nitrogen cycles in the atmosphere. On the basis of this, we proposed that we can combine atmospheric chemistry transmission models with isotope tracers to improve our understanding of regional and global atmospheric reactive nitrogen cycle regarding the fluxes of different emission sources, their atmospheric transformation, etc.  相似文献   
949.
Wind power has become one of the fastest growing renewable energy. With the large-scale deployment of wind farms in the world, people have started to pay attention to the impact of wind farms on the ecological environment and climate. This paper summarized the impact of wind farms on climate and ecological environment by investigating relevant literature: In the areas of wind farms, on the one hand, the set-up of wind turbines changes original aerodynamic roughness height and strengthens the dragging of the land surface against turbulence, directly affecting the turbulent motion of the boundary layer, resulting in the changes of intensity and pattern of material energy and water vapor exchange between land surface and near-surface atmosphere, further affecting the atmospheric circulation and climate. On the other hand, wind turbines convert the majority of the wind kinetic energy into electric energy, which produces the wake effect of the wind turbine. The budget patterns and spatial and temporal distribution of large-scale kinetic energy in the boundary layer are changed correspondingly, generating changes in various fluxes (heat flux, water vapor flux, etc.) in the atmosphere, which affect temperature, precipitation, and wind speed. Generally, the warming or cooling effect of wind farms on the near-surface is related to the stability of atmosphere. However, simulations in the global climate model showed that the average impact of wind farms on global climate is small, much smaller than the expected changes in greenhouse gas emissions and the interannual changes in natural climate.Wind power emits almost no carbon dioxide and pollutants. Compared with other traditional energy sources, it reduces water consumption but may generate some negative ecological impacts such as animal habitats, bird collisions, and noise, vision impact. However, some measures can be taken to mitigate these adverse effects.  相似文献   
950.
The Xinlu Sn‐polymetallic ore field is located in the western Nanling Polymetallic Belt in northeastern Guangxi, South China, where a number of typical skarn‐, hydrothermal vein‐type tin deposits have developed. There are two types of Sn deposits: skarn‐type and sulfide‐quartz vein‐type. The tin mineralizations mainly occur on the south side of the Guposhan granitic complex pluton and within its outer contact zone. To constrain the Sn mineralization age and further understand its genetic links to the Guposhan granitic complex, a series of geochronological works has been conducted at the Liuheao deposit of the ore field using high‐precision zircon SHRIMP U‐Pb, molybdenite Re‐Os, and muscovite Ar‐Ar dating methods. The results show that the biotite‐monzogranite, which is part of the Xinlu intrusive unit of the Guposhan complex pluton, has a SHRIMP U‐Pb zircon age of 161.0 ± 1.5 Ma. The skarn‐type ore has a 40Ar‐39Ar muscovite plateau age of 160 ± 2 Ma (same as its isochron age), and the sulfide‐quartz vein‐type ore yields an Re‐Os molybdenite isochron age of 154.4 ± 3.5 Ma. The magmatic‐hydrothermal geochronological sequence demonstrated that the hydrothermal mineralization took place immediately following the emplacement of the monzogranite, with the skarn metasomatic mineralization stage predating the sulfide mineralization stage. Geochronologically, we have compared this ore field with 26 typical Sn deposits distributed along the Nanling Polymetallic Belt, leading to the suggestion of the magmatic‐metallogenic processes in the Xinlu ore field (ca. 161–154 Ma) as a component of the Early Yanshanian large‐scale Sn‐polymetallic mineralization event (peaked at 160–150 Ma) in the Nanling Range of South China. Petrogenesis of Sn‐producing granite and Sn‐polymetallic mineralization were probably caused by crust–mantle interaction as a result of significant lithospheric extension and thinning in South China in the Late Jurassic.  相似文献   
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