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41.
塔里木地块西北缘震旦系发现二叠纪基性岩床侵入事件 总被引:2,自引:0,他引:2
准确识别侵入岩和火山岩并厘定其形成时代是野外地质调查的一项基础工作,它们对认识区域岩浆事件序列和建立沉积地层年代格架具有重要的作用。塔里木地块西北缘阿克苏地区以出露连续的新元古界和丰富多样的新元古代岩浆岩而成为备受前寒武纪地质研究工作者关注的地区。本文通过遥感影像的识别、野外剖面地质调查和岩石学研究,发现塔里木西北缘阿克苏市西南部的震旦系中发育的基性岩具有典型的岩浆侵入特征,包括局部截切地层、包裹围岩块和内部结晶粗、边缘结晶细等特点。结合锆石U-Pb年代学研究,发现该地区震旦系发育的基性岩浆岩并不全是震旦纪玄武岩,有相当一部分是早二叠世(ca. 290Ma)侵入的辉绿岩岩床,其侵位年龄与塔里木二叠纪大规模溢流玄武岩的喷发时代接近,很可能是塔里木大火成岩省的重要组成部分。这期显著的岩浆热事件可能对该地区前寒武纪岩石重磁化产生重要影响,同时也启示今后开展塔里木北缘震旦纪岩浆作用研究时需要特别引起重视并加以仔细鉴别。 相似文献
42.
在定向钻探固体矿产领域,通常在造斜段使用螺杆钻具,大部分的工作量采用取心回转钻进。造斜段使用螺杆钻具,钻杆不回转,受力较简单;如遇强造斜转换绳索取心钻具稳斜钻进,下部钻具组合容易出现回转困难、下不到底的技术难题,甚至出现丝扣折断事故。为避免强造斜对绳索取心钻具的影响,本文通过建立强造斜段对绳索取心钻具的几何约束变形模型,量化分析强造斜段岩心外管长度与造斜强度、环空间隙之间的约束关系,提供了可快速预判下部钻具参数能否满足强造斜安全钻进的方法。该方法在山东某铁矿定向孔的强造斜致下部钻具折断的事故处理中,通过对绳索取心钻具安全计算模型校核和调整钻具参数,实现了绳索取心钻具通过造斜率0.62°/m的强造斜段安全钻进至靶点,证明对强造斜绳索取心工具安全钻进预测和事故处理计算具有指导意义。 相似文献
43.
Acta Geochimica - The Maoping tungsten deposit is located in the Nanling W–Sn metallogenic belt in South China. Greisen and quartz vein types of mineralization developed in this deposit.... 相似文献
44.
易损性分析是隧道工程领域防震减灾研究的重要方法。首先,详细综述了国内外隧道地震易损性研究历史与现状;其次,归纳了国内外隧道地震易损性分析主要方法,并总结了各种方法的实际适用性;接着,提出了隧道地震易损性评估步骤,并且讨论了以数值模拟为主要手段的理论易损性曲线建立中的3个关键内容:(1)输入参数确定;(2)破坏状态分级;(3)相关不确定性参数计算;最后,指出该领域一些亟待解决的问题和未来研究发展的方向。结果表明:隧道地震易损性分析能通过考虑相关不确定性因素,反映了隧道在地震荷载作用下的性能,有利于未来的风险评估和损失估算,对基于性能的隧道抗震设计的发展具有重要意义。 相似文献
45.
随着无人艇技术的发展成熟,各型无人艇已逐步应用到民用和军用领域。无线通信系统作为无人艇的重要组成部分,承担着无人艇与母艇之间信息交互的功能。从无线通信技术的发展现状出发,分析出适用于无人艇应用场景的无线通信技术及工程设计方法,并设计了一种自适应无线通信系统。该系统能根据无人艇工作状态提供连续稳定的数据链,经试验测试,运行效果良好。 相似文献
46.
建构主义强调学习是个体在原有经验的基础上通过自主建构或社会建构形成新经验的过程。自主性、互动性、反思性、建构性是建构主义理念下学习活动的特点。本文通过课例分析,提出了一些优化学习活动设计的建议。 相似文献
47.
为了对广西合浦盆地干热岩资源成热条件及其潜力进行评价,利用广西航磁勘查数据,采用Parker-Oldenburg法反演计算了居里面深度。在此基础上进行大地热流密度值和不同埋深地温计算,发现计算结果与现有测温资料吻合,合浦盆地内西场凹陷和常乐凹陷具有干热岩资源成生条件。结合合浦盆地内基础地质调查资料和油气钻孔资料,分析了合浦盆地干热岩资源的储层和盖层条件。初步圈出2个位于西场凹陷和常乐凹陷的干热岩勘查靶区C1和C2,面积分别为167.10和72.90 km2,干热岩资源量分别为182.48×1015、77.59×1015 J。按20%的采收率,合浦盆地干热岩资源量可开采量为52.01×1015 J,折合标准煤177.48×104 t,占2018年广西全区能源生产总量3 756.69×104 t标准煤的4.72%。在资源量评价基础上,可优先考虑位于合浦盆地西场凹陷的C1靶区开展进一步的勘探工作。 相似文献
48.
Groundwater is a key factor controlling the growth of vegetation in desert riparian systems. It is important to recognise how groundwater changes affect the riparian forest ecosystem. This information will not only help us to understand the ecological and hydrological process of the riparian forest but also provide support for ecological recovery of riparian forests and water-resources management of arid inland river basins. This study aims to estimate the suitability of the Water Vegetation Energy and Solute Modelling(WAVES) model to simulate the Ejina Desert riparian forest ecosystem changes,China, to assess effects of groundwater-depth change on the canopy leaf area index(LAI) and water budgets, and to ascertain the suitable groundwater depth for preserving the stability and structure of desert riparian forest. Results demonstrated that the WAVES model can simulate changes to ecological and hydrological processes. The annual mean water consumption of a Tamarix chinensis riparian forest was less than that of a Populus euphratica riparian forest, and the canopy LAI of the desert riparian forest should increase as groundwater depth decreases. Groundwater changes could significantly influence water budgets for T. chinensis and P. euphratica riparian forests and show the positive and negative effects on vegetation growth and water budgets of riparian forests. Maintaining the annual mean groundwater depth at around 1.7-2.7 m is critical for healthy riparian forest growth. This study highlights the importance of considering groundwater-change impacts on desert riparian vegetation and water-balance applications in ecological restoration and efficient water-resource management in the Heihe River Basin. 相似文献
49.
Modelling the flexural buckling failure of stratified rock slopes based on the multilayer beam model
The buckling failure of stratified rock slopes intersected by a set of steep discontinuities that are approximately parallel to the slope surface is frequently encountered while constructing railways and roadways in mountainous areas. In this study, an analytical approach based on the energy equilibrium principle is presented to solve the flexural buckling stability of stratified rock slopes within the framework of multilayer beam theory. The generalized HoekBrown failure criterion is introduced to reflect the influences of slope size(scale effects) on the buckling stability. Subsequently, numerical and physical modellings from previous literatures are employed to validate the proposed approach. Furthermore, a practical case of Bawang Mountain landslide is also used for the comparative analysis. The study shows that the present analytical approach is capable to provide a more reasonable assessment for the buckling failure of stratified rock slopes, compared with several existing analytical approaches. Finally, a detailed parametric study is implemented, and the results indicate that the effects of rock strength, rock deformation modulus, geological strength index, layer thickness and disturbance degree of rock mass on the buckling failure of stratified rock slopes are more significant than that of rock type and slope angle. 相似文献
50.
MA Lu ZHAO Lin TIAN Li-ming YUAN Li-ming XIAO Yao ZHANG Le-le ZOU De-fu QIAO Yong-ping 《山地科学学报》2019,(7)
The availability of high-resolution satellite precipitation measurement products provides an opportunity to monitor precipitation over large and complex terrain and thus accurately evaluate the climatic, hydrological and ecological conditions in those regions. The Global Precipitation Measurement(GPM) mission is an important new program designed for global satellite precipitation estimation, but little information has been reported on the applicability of the GPM’s products for the Tibetan Plateau(TP). The object of this study is to evaluate the accuracy of the Integrated Multi-Satellite Retrievals for GPM(IMERG) Final Run product under different terrain and climate conditions over the TP by using 78 ground gauges from April 2014 to December 2017. The results showed the following:(1) the 3-year average daily precipitation estimation in the IMERG agrees well with the rain gauge observations(R~2=0.58, P0.01), and IMERG also has a considerable ability to detect precipitation, as indicated by a high probability of detection(78%-98%) and critical success index(65%-85%);(2) IMERG performed better at altitudes from 3000 m to 4000 m with a small relative bias(RB) of 6.4%. Precipitation change was not significantly affected by local relief;(3) the climate system of the TP was divided into four climate groups with a total of 12 climate types based on the K?ppen climate classification system, and IMERG performed well in all climate types with the exception of the arid-desert-cold climate(Bwk) type. Furthermore, although IMERG showed the potential to detect snowfall, it still exhibits deficiencies in identifying light and moderate snow. These results indicate that IMERG could provide more accurate precipitation data if its retrieval algorithm was improved for complex terrain and arid regions. 相似文献