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研究井场为九龙沟内一预探井,由于井场地处斜坡区,为保持场地平整,在前期施工进程中进行了大量的挖填方工程;为保证高填方边坡的稳定性,已在填方区前缘修筑"T"型重力式挡墙。但在后期施工过程中,场区坡体及挡墙等建筑物出现拉张裂缝,变形迹象明显,具有较大危险性。本文根据场区变形迹象分布规律,结合场地地形、建筑物分布及其受影响程度等,对场地进行了分区并详细描述了各区工程地质特征;在此基础上,根据填土特征及原始坡体物质结构特征,对场区变形机理及稳定性影响因素进行了分析;最后采用极限平衡法对各区整体及局部稳定性进行了计算,计算结果为分析场区坡体稳定状况及预测可能造成的工程危害性提供了评价基础。 相似文献
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2007年6-8月T213与ECMWF及日本模式中期预报性能检验 总被引:4,自引:3,他引:1
对2007年6—8月T213模式进行天气学检验,并与欧洲中心ECMWF模式及日本模式进行了比较。结果表明:3种模式对亚洲中高纬环流形势的调整演变具有较好的预报性能。综合来看,ECMWF模式对各系统及要素的预报误差最小,最接近实况,日本模式和T213模式稍差,稳定性不如ECMWF模式,特别是T213模式对0709号台风圣帕路径及强度的预报与实况相差较大,而ECMWF模式及日本模式预报较为准确。 相似文献
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Jérémie Soldner Pavla Štípská Karel Schulmann Chao Yuan Robert Anczkiewicz Yingde Jiang Marta Koziarska Le Zhang Yunying Zhang Xinyu Wang 《Journal of Metamorphic Geology》2023,41(1):59-96
High-pressure (HP) granulites form either in the domain of the subducted plate during continental collision or in supra-subduction systems where the thermally softened upper plate is shortened and thickened. Such a discrepancy in tectonic setting can be evaluated by metamorphic pressure–temperature–time-deformation (P–T–t–D) paths. In the current study, P–T–t–D paths of Early Palaeozoic HP granulite facies rocks, in the form of metabasic lenses enclosed in migmatitic metapelite, from the Dunhuang block, NW China, are investigated in order to constrain the nature of the HP rocks and shed light on the geodynamic evolution of a modern hot orogenic system in an active margin setting. The rocks show a polyphase evolution characterized by (1) relics of horizontal or gently dipping fabric (S1) preserved in cores of granulite lenses and in garnet porphyroblasts, (2) a N-S trending sub-vertical fabric (S2) preserved in low-strain domains and (3) upright folds (F3) associated with a ubiquitous steep E-W striking axial planar foliation (S3). Garnet in the granulites preserves relics of a prograde mineral assemblage M1a equilibrated at ~11.5 kbar and ~770–780°C, whereas the matrix granulite assemblage (M1b) from the S1 fabric attained peak pressure at ~13.5 kbar and ~850°C. The granulites were overprinted at ~8–11 kbar and ~850–900°C during crustal melting (M2) followed by partial re-equilibration (M3) at ~8 kbar and ~625°C. A garnet Lu–Hf age of 421.6 ± 1.2 Ma dates metamorphism M1, while a garnet Sm–Nd age of 385.3 ± 4.0 Ma reflects M3 cooling of the granulites. The mineral assemblage, M1, of the host migmatitic metapelite formed at ~9–12.5 kbar and ~760–810°C, partial melting and migmatization (M2) occurred at ~7 kbar and ~760°C and re-equilibration (M3) at ~5–6 kbar and ~675°C. A garnet Lu–Hf age of 409.7 ± 2.3 Ma dates thermal climax (M2) and a garnet Sm–Nd age of 356 ± 11 Ma constrains M3 for the migmatitic metapelites. The timing of this late phase is also bracketed by an emplacement age of syntectonic granite dated at c. 360 Ma. Decoupling of M1 and M2 P–T evolutions between the mafic granulites and migmatitic metapelites indicates their different positions in the crustal column, while the shared pressure–temperature (P–T) evolution M3 suggests formation of a mélange-like association during the late stages of orogeny. The high-pressure event D1-M1 is interpreted as a result of Late Silurian–Early Devonian moderate crustal thickening of a thermally softened and thinned pre-orogenic crust. The high-temperature (HT) re-equilibration D2-M2 is interpreted as a result of Mid-Devonian shortening of the previously thickened crust, possibly due to ‘Andean-type’ underthrusting. The D3-M3 event reflects Late Devonian supra-subduction shortening and continuous erosion of the sub-crustal lithosphere. This tectono-metamorphic sequence of events is explained by polyphased Andean-type deformation of a ‘Cascadia-type’ active margin, which corresponds to a supra-subduction tectonic switching paradigm. 相似文献
918.
Wangchao Li Changqing Yin Zeming Zhang Peter A. Cawood Shun Li Jian Zhang Huixia Ding Jiahui Qian Yanling Zhang 《Journal of Metamorphic Geology》2023,41(1):97-119
We report the first occurrence of poly-cyclic high-pressure low-temperature (HP-LT) rocks from the easternmost Indus-Yarlung suture zone, formed during subduction of Neo-Tethyan oceanic lithosphere. Petrology, mineral composition and P–T pseudosection modelling reveal two low-temperature eclogite facies metamorphic events with an initial high-pressure P–T condition of 16.4–18.7 kbar and 510–520°C, exhumation to 10.5–12.0 kbar and 580–590°C and a subsequent second high-pressure P–T condition of ~16 kbar and ~560°C and exhumation to ≤9 kbar and ≤600°C. This history implies a complex ‘yo-yo type’ P–T path. In situ monazite dating and textural relationships show that late-stage exhumation, cooling and garnet breakdown occurred at c. ~25–22 Ma. We interpret the first burial event to represent subduction of the Neo-Tethys Ocean at the eastern Indus-Yarlung suture zone. Initial exhumation, reburial and final exhumation represent material transport in a large-scale convective circulation system in the subduction channel. Convective overturn in the subduction channel evidently serves both as a mechanism to produce poly-cyclic metamorphism and to exhume LT eclogite facies rocks. 相似文献
919.
介绍梅山铁矿、凤凰山铁矿的尾矿特征,探讨利用澳大利亚新型重选设备进行铁矿尾矿再选的可能途径。对于降低铁矿山尾矿库存量,保护环境,合理利用资源,具有一定的意义。 相似文献
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