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宝鸡—秦岭高坡地段安装“相分段自动转换装置”的运营效果分析
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作者 李茹艺 《铁道运输与经济》 北大核心 2003年第6期27-28,共2页
为保证在宝鸡—秦岭高坡地段,电力机车不断电通过分相处,提高列车运行速度,郑州铁路局在观音山站进行了“相分段自动转换装置”运行试验,试验结果说明安装“相分段自动转换装置”可提高列车过分相速度,压缩区间运行时分;或者在区间运行... 为保证在宝鸡—秦岭高坡地段,电力机车不断电通过分相处,提高列车运行速度,郑州铁路局在观音山站进行了“相分段自动转换装置”运行试验,试验结果说明安装“相分段自动转换装置”可提高列车过分相速度,压缩区间运行时分;或者在区间运行时分不变的前提下,提高下行列车牵引定数,经济效益显著。 展开更多
关键词 宝鸡—秦岭坡地段 相分段自动转换装置 电气化铁路 宝成线 接触网 牵引定数 过分相速度 经济效益 运行方案
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武当地区新元古代岩浆岩地球化学特征及其对南秦岭晋宁期区域构造性质的指示 被引量:66
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作者 凌文黎 程建萍 +1 位作者 王歆华 周汉文 《岩石学报》 SCIE EI CAS CSCD 北大核心 2002年第1期25-36,共12页
对南秦岭武当地区武当群火山岩、基性侵入岩墙群和耀岭河群火山岩系统的元素和Nd同位素地球化学研究表明,武当群火山岩为形成于约1.0~0.9Ga的新元古代陆缘岛弧火山岩,而耀岭河群火山岩与武当地区基性侵入岩墙群为0.82~0.78Ga形成的大... 对南秦岭武当地区武当群火山岩、基性侵入岩墙群和耀岭河群火山岩系统的元素和Nd同位素地球化学研究表明,武当群火山岩为形成于约1.0~0.9Ga的新元古代陆缘岛弧火山岩,而耀岭河群火山岩与武当地区基性侵入岩墙群为0.82~0.78Ga形成的大陆裂谷型同源岩浆岩;它们分别可与扬子克拉通北缘西乡群和南秦岭陕西境内的镇安磨沟峡火山岩、扬子克拉通北缘的火地垭群铁船山组碱性火山岩和望江山基性侵入岩群相对比,揭示出南秦岭与扬子克拉通北缘于晋宁期属统一的陆块。扬子克拉通北缘和南秦岭大量的新元古代岩浆岩所具有的1.2~0.9Ga Nd同位素模式年龄和较高的εNd正值等特征表明,晋宁期是扬子克拉通地壳增生和大陆岩石圈演化的重要时期之一。 展开更多
关键词 武当地区 晋宁期岩浆岩 高秦岭 扬子克拉通 统一陆块
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Upper mantle anisotropy in the Ordos Block and its margins 被引量:32
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作者 CHANG LiJun WANG ChunYong DING ZhiFeng 《Science China Earth Sciences》 SCIE EI CAS 2011年第6期888-900,共13页
Based on the polarization analysis of teleseismic data,SKS (SKKS) fast-wave directions and delay times between fast and slow shear waves were determined for each of the 111 seismic stations from both permanent and tem... Based on the polarization analysis of teleseismic data,SKS (SKKS) fast-wave directions and delay times between fast and slow shear waves were determined for each of the 111 seismic stations from both permanent and temporary broadband seismograph networks deployed in the Ordos Block and its margins.Both the Silver and Chan and stacking analysis methods were used.In this way,an image of upper mantle anisotropy in the Ordos Block and its margins was acquired.In the western and northern margins of the Ordos Block,the fast-wave directions are consistently NW-SE.The fast-wave directions are mainly NWW-SEE and EW in the southern margin of the Ordos Block.In the eastern margin of the Ordos Block,the fast-wave directions are generally EW,although some run NEE-SWW or NWW-SEE.In the Ordos Block,the fast-wave directions trend near N-S in the north,but switch to near EW in the south.The delay time between fast and slow waves falls into the interval 0.48-1.50 s,and the average delay time at the stations in the Ordos Block is less than that in its margins.We suggest that the anisotropy of the stable Ordos Block is mainly caused by "fossil" anisotropy frozen in the ancient North China Craton.The NE-trending push of the northeastern margin of the Tibetan Plateau has caused NW-SE-trending lithospheric extension in the western and northern margins of the Ordos Block,and made the upper mantle flow southeastwards.This in turn has resulted in the alignment of the upper mantle peridotite lattice with the direction of material deformation.In the southern margin of the Ordos Block,the collision between the North China and Yangtze blocks resulted in the fast-wave direction running parallel to the collision boundary and the Qinling Orogen.Combining this with the APM and velocity structure of the Qinling Orogen,we propose that eastward-directed asthenospheric-mantle channel flow may have occurred beneath the Qinling Orogen.In the eastern margin of the Ordos Block,the complex anisotropic characteristics of the Fenhe Graben and Taihang Orogen may be caused by the interaction of western Pacific Plate subduction,regional extensional tectonics,and the orogeny.For station YCI,the apparent splitting parameters (the fast-wave directions range from 45° to 106° and the delay times range from 0.6 to 1.5 s) exhibit systematic variations as a function of incoming polarization with a periodicity of π/2.This variation can be best explained by a two-layer anisotropic model (φlower=132°,δtlower=0.8 s,φupper=83°,δtupper=0.5 s).The upper layer anisotropy beneath station YCI can again be attributed to "fossil" anisotropy frozen in the ancient North China Craton.The lower layer anisotropy is affected by the tectonic activity of the western Ordos Block.The NW-SE trending extension caused by the NE trending push of the northeastern margin of the Tibetan Plateau affected the deformation of the lower anisotropic layer beneath station YCI.By comparing the fast-wave directions with GPS velocity directions,we see that the crust and upper mantle possibly have vertically coherent deformation in the margins of the Ordos Block,whereas the internal deformation characteristics of the Ordos Block are complex and require further study. 展开更多
关键词 Ordos Block upper mantle anisotropy SKS wave fast-wave direction lithosphere deformation
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