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991.
降雨是诱发土质边坡失稳的主导因素之一,研究降雨入渗对土质边坡稳定性的影响有着重要意义。以青海西宁盆地黄土边坡为例,结合野外现场试验和室内直剪试验,研究了降雨入渗对坡体含水量和抗剪强度的影响,采用FLAC2D软件模拟分析了降雨前后边坡的应力、位移分布特征,并通过计算安全系数对边坡进行稳定性评价。研究结果表明,雨水入渗150 min内边坡表层土层含水量急剧增加,150 min后其变化趋势逐步变缓,较深层土层含水量随雨水入渗时间呈持续缓慢增加的趋势。对于同一层土体而言,雨水入渗深度随降雨历时的增大而增加,且表层土体中雨水入渗速度先快后慢。表层土体含水量每增加1.01%,其粘聚力减小13.53 k Pa,土体抗剪强度降低16 k Pa,说明土体抗剪强度对含水量的变化极为敏感。二维有限元模拟和分析结果表明,在自重应力作用和雨水入渗条件下,研究区坡脚处出现应力集中现象,且降雨后边坡位移量、应力集中范围及应力大小明显大于降雨前,而降雨后边坡稳定安全系数比降雨前降低了21.6%,说明降雨入渗对边坡的稳定性影响较大。  相似文献   
992.
位于南祁连化隆地区的鲁满山花岗岩体,岩石类型主体为黑云二长花岗岩。LA-ICP-MS锆石U-Pb定年测得其成岩年龄为(452.9±1.8)Ma,属于加里东期岩浆活动的产物。化学组成上,岩体具有高硅、富碱的特征,属于弱过铝质高钾钙碱性系列。微量和稀土元素组成上,岩体富集大离子亲石元素Rb、U、Th、K和Pb,亏损Ba、Sr、Ta、Nb、P、Ti,具明显轻稀土富集,重稀土亏损特征,显示较强烈的负Eu异常(δEu=0.06~0.55,平均0.31),综合地质地球化学资料指示该岩体应属于高分异的Ⅰ型花岗岩。锆石Hf同位素分析结果显示,岩体的εHf(t)为-7.4~0.1,二阶段模式年龄介于1425~1930 Ma,指示成岩过程中应有亏损地幔组分参与,其壳源源区很可能包括化隆岩群。结合区域构造演化,认为鲁满山花岗岩体形成于柴北缘洋壳与中南祁连陆壳俯冲碰撞的地球动力学背景下,由幔源岩浆与其诱发的地壳物质熔融产生的长英质岩浆在地壳深部混合后再经历分异演化形成。  相似文献   
993.
低温泡沫钻进技术除了具有岩心采取率高、钻进效率高和孔内事故少的特点之外,还具有低导热性、低热容量及对钻井孔壁的热干扰小等特点。低温泡沫系统由空压机、泡沫液罐、热交换器、泡沫发生器和参数监测系统组成。通过对泡沫液和空气制冷后,经发泡器混合后可获得低温泡沫。利用低温泡沫作为冲洗介质进行取心钻进,孔内返出的泡沫经消泡后,可再次循环利用。该技术在漠河盆地冻土井工程中进行了应用,经试验数据分析,低温泡沫对冻土层温度的影响极小,岩心采取率高,满足冻土层取心钻进工作的要求。  相似文献   
994.
基于动力学仿真软件AUTODYN,对椭圆双极线性聚能药柱(EBLSC)进行了数值模拟。采用二维面对称计算方法,花岗岩岩体,空气夹层不耦合装药条件,研究了EBLSC结构及不耦合系数对光面爆破效果的影响,并建立有效体积功模型以评价爆破效果。结果表明,炮孔连线方向和垂直方向上的比冲量相近,偏差<10%,故总能量沿周向近似均匀分布,但炮孔连线方向产生明显侵彻裂隙,且粉碎圈厚度和腔体扩张程度要小得多,表明该装药结构能够明显提高炸药能量的利用率和爆破效果;随着不耦合系数增大,炮孔连线方向上的损耗体积功先减小后增大,存在最大有效功。利用曲线拟合,得到最优不耦合系数约3.62,与相关文献的试验结果相近。  相似文献   
995.
<正>Quantificational characterization of the microscopic pore structure is the key to evaluating tight reservoirs.Since tight reservoirs mainly develop nano-pores which are difficult to fully characterize pore throats’distribution by single conventional experimental method,there’s an urgent need to establish a characterization method by jointing several conventional experimental methods.The tight gas of Shahezi Formation in Xujiaweizi Fault  相似文献   
996.
<正>Unconventional oil and gas step into a new area of global oil and gas exploration due to the success of the development of shale gas of America.Unconventional tight reservoir has huge differents with conventional reservoirs,including cell aggregation,migration patterns,source configuration storage,reservoir characteristics,flow mechanism and so on,which is  相似文献   
997.
The Talate Pb-Zn deposit,located in the east of the NW-SE extending Devonian Kelan volcanic-sedimentary basin of the southern Altaides,occurs in the metamorphic rock series of the upper second lithological section of the lower Devonian lower Kangbutiebao Formation(D_1k_1~2).The Pb-Zn orebodies are stratiform and overprinted by late sulfide—quartz veins.Two distinct mineralization periods were identified:a submarine volcanic sedimentary exhalation period and a metamorphic hydrothermal mineralization period.The metamorphic overprinting period can be further divided into two stages:an early stage characterized by bedding-parallel lentoid quartz veins developed in the chlorite schist and leptite of the ore-bearing horizon,and a late stage represented by pyritechalcopyrite-quartz veins crosscutting chlorite schist and leptite or the massive Pb-Zn ores.Fluid inclusions in the early metamorphic quartz veins are mainly CO_2-H_2O-NaCI and carbonic(CO_2±CH_4±N_2) inclusions with minor aqueous inclusions.The CO_2-H_2O-NaCl inclusions have homogenization temperatures of 294-368℃,T_(m,CO2) of-62.6 to-60.5℃,T_(h,CO2) of 7.7 to 29.6℃(homogenized into liquid),and salinities of 5.5-7.4 wt%NaCl eqv.The carbonic inclusions have T_(m,CO2)of-60.1 to-58.5℃,and T_(h,Co2) of-4.2 to 20.6℃.Fluid inclusions in late sulfide quartz veins are also dominated by CO_2-H_2O-NaCl and CO_2±CH_4 inclusions.The CO_2-H_2O-NaCl inclusions have T_(b,tot) of142 to 360℃,T_(m,CO2)of-66.0 to-56.6℃,T_(h,CO2) of-6.0 to 29.4℃(homogenized into liquid) and salinities of 2.4-16.5 wt%NaCl eqv.The carbonic inclusions have T_(m,Co2)of-61.5 to-57.3℃,and T_(h,CO2) of-27.0to 28.7℃.The aqueous inclusions(L-V) have T_(m,ice) of-9.8 to-1.3℃ and T_(h,tot) of 205 to 412℃.The P-T trapping conditions of CO_2-rich fluid inclusions(100-370 MPa,250-368℃) are comparable with the late- to post-regional metamorphism conditions.The CO_2-rich fluids,possibly derived from regional metamorphism,were involved in the reworking and metal enrichment of the primary ores.Based on these results,the Talate Pb-Zn deposit is classified as a VMS deposit modified by metamorphic fluids.The massive Pb-Zn ores with banded and breccia structures were developed in the early period of submarine volcanic sedimentary exhalation associated with an extensional subduction-related back-arc basin,and the quartz veins bearing polymetallic sulfides were formed in the late period of metamorphic hydrothermal superimposition related to the Permian-Triassic continental collision.  相似文献   
998.
This work aims to quantify sulfate ion concentrations in the system Na2SO4-H2O using Raman micro-spectroscopy.Raman spectra of sodium sulfate solutions with known concentrations were collected at ambient temperature(293 K) and in the 500 cm1-4000 cm-1 spectral region.The results indicate that the intensity of the SO42- band increases with increasing concentrations of sulfate ion.A linear correlation was found between the concentration of SO42-(c) and parameter I1,which represents the ratio of the area of the SO42- band to that of the O-H stretching band of water(As/Aw):I1=-0.00102+0.01538 c.Furthermore,we deconvoluted the O-H stretching band of water(2800 cm-1-3800 cm-1) at 3232 and 3430 cm-1 into two sub-Gaussian bands,and then defined Raman intensity of the two sub-bands as ABi(3232 cm-1) and AB2(3430 cm-1),defined the full width of half maximum(FWHM) of the two sub-bands as WB1(3232 cm-1) and WB2(3430 cm-1).A linear correlation between the concentration of SO42-(c) and parameter I2,which represents the ratio of Raman intensity of SO42-(As)(in 981 cm-1) to(AB1+AB2),was also established:I2=-0.0111+0.3653 c.However,no correlations were found between concentration of SO42-(c) and FWHM ratios,which includes the ratio of FWHM of SO42-(Ws) to WB1 WB2 and WB1+B2(the sum of WB1 and WB2),suggesting that FWHM is not suitable for quantitative studies of sulfate solutions with Raman spectroscopy.A comparison of Raman spectroscopic studies of mixed Na2SO4 and NaCI solutions with a constant SO42- concentration and variable CI- concentrations suggest that the I\ parameter is affected by CI-,whereas the I2 parameter was not.Therefore,even if the solution is not purely Na2SO4-H2O,SO42- concentrations can still be calculated from the Raman spectra if the H2O band is deconvoluted into two sub-bands,making this method potentially applicable to analysis of natural fluid inclusions.  相似文献   
999.
<正>The eolian deposits distributed in the river valleys in the eastern margin of the Tibetan Plateau(TP)are very useful in neotectonic and paleoclimatic studies.Firstly,the climate in the eastern margin of the TP is mainly controlled by the Indian summer monsoon,and detailed studies on the loess-paleosol sequences in this region can provide valuable terrestrial evidence of past changes in the Indian summer monsoon.Secondly,the river terraces in the eastern margin of the TP are considered to be a sensitive recorder of neotectonism to reflect the timing and amplitude of the TP uplift.The formation ages of these  相似文献   
1000.
The Xining Basin is located in the northeastern Qinghai–Tibetan Plateau, and its continuous Cenozoic strata record the entire uplift and outgrowth history of the Tibetan Plateau during the Cenozoic. The newly obtained apatite fission track data presented here shows that the Xining Basin and two marginal mountain ranges have experienced multiphase rapid cooling since the Jurassic, as follows. In the Middle–Late Jurassic, the rapid exhumation of the former Xining Basin resulted from collision between the Qiangtang Block and the Tarim Block. During the Early–Late Cretaceous, the former Xining Basin underwent a tectonic event due to marginal compression, causing the angular unconformity between the Upper and Lower Cretaceous. In the Late Cretaceous to the Early Cenozoic, collision between the Qiangtang Block and the Lhasa Block may have resulted in the rapid exhumation of the Xining Basin and the Lajishan to the south. In the Early Cenozoic(ca. 50–30 Ma), collision between the Indian and Eurasia plates affected the region that corresponds to the present northeastern Qinghai–Tibetan Plateau. During this period, the central Qilian Block rotated clockwise by approximately 24° to form a wedge-shaped basin(i.e., the Xining Basin) opening to the west. During ca. 17–8 Ma, the entire northeastern Qinghai–Tibetan Plateau underwent dramatic deformation, and the Lajishan uplifted rapidly owing to the northward compression of the Guide Basin from the south. A marked change in subsidence occurred in the Xining Basin during this period, when the basin was tectonically inverted.  相似文献   
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