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641.
642.
武夷山石源龙铀矿区地质环境治理效果初析 总被引:1,自引:0,他引:1
矿山地质环境治理,对消除地质灾害隐患、恢复生态环境、保护水源地、保证矿山安全生产及当地人民的生命安全,稳定经济发展具有重要意义,针对武夷山石源龙铀矿区地质勘探设施放射性污染危害及造成的安全隐患,采取"封、挡、疏、填、清、盖、植"等方法进行综合治理,探讨铀矿区地质环境治理技术及其应用效果。 相似文献
643.
Qianyu Li Fan Zheng Muhong Chen Rong Xiang Peijun Qiao Lei Shao Xinrong Cheng 《Quaternary Research》2010,73(3):563-572
We have analyzed core MD01-2392, ∼ 360 km east of the Mekong River mouth in the South China Sea (SCS). Over the past 500 ka, planktonic foraminiferal oxygen-isotopic values are consistently lighter than northern SCS and open-ocean records by up to 0.5‰, indicating the influence of run-off from the Mekong River during both glacial and interglacial periods. Carbonate content is higher during interglacials; sedimentation rates were higher during glacials. Increased sedimentation rates since 30 ka imply increased run-off during the last glacial maximum and Holocene Period. Contrary to general experience, in which it is classed as a warm species for temperature estimates, the thermocline-dwelling species Pulleniatina obliquiloculata increased its numbers during glacial periods. This implies an estuarine circulation and even brackish-water caps during glacial periods, reinforcing the sense of strong run-off. In an overall decline of warm water, the thermocline shoaled stepwise, with rapid rises across the glacial terminations. We infer that the southern SCS was opened to an influx of Indian Ocean waters through southern passages at those times of rising sea levels. 相似文献
644.
Aseismic crustal-strain signals prior to the 2003 Mw 6.8 Chengkung, 2006 Mw 6.1 Taitung, and 2008 Mw 5.0 Antung earthquakes with epicenters located 20, 55 and 11 km, respectively, from the Antung radon-monitoring station have
been calculated using the radon anomalies recorded. Specifically, radon decreased from background levels of 791 ± 46, 762 ± 57,
and 735 ± 48 pCi/L to minima of 326 ± 9, 371 ± 9, and 480 ± 43 pCi/L prior to the 2003, 2006, and 2008 earthquakes, respectively.
The estimated aseismic crustal-strain maxima at the Antung hot spring during the rock dilation stage were 3.6, 2.7, and 1.3 ppm,
respectively. The v-shaped radon pattern recognized in all three anomalies is valuable for detecting the aseismic strain precursory
to disastrous earthquakes in the Antung hot spring which is situated in a brittle fractured aquifer of limited recharge surrounded
by ductile mudstone. 相似文献
645.
腾冲马鞍山、打鹰山、黑空山火山岩浆来源与演化 总被引:10,自引:6,他引:4
本文对马鞍山、打鹰山、黑空山火山岩主微量和Sr、Nd、Pd同位素地球化学研究认为,腾冲火山岩浆源区具有MORB与富集地幔混合之特征,推测为新特提斯俯冲洋壳重新熔融,导致腾冲地区的高钾钙碱性岩浆的火山活动,解释了腾冲在新生代大陆板内构造环境背景下出现岛弧或活动大陆边缘火山岩地球化学特征的现象。马鞍山、打鹰山和黑空山火山高钾钙碱性岩浆经历了岩浆房阶段辉石、钛铁矿的结晶分离作用和岩浆上升过程中斜长石的结晶分离作用,导致岩浆成分从中基性向中酸性演化,火山岩从玄武质粗安岩→粗安岩→粗面质英安岩演化。 相似文献
646.
武安市团城铁矿系国有矿山,多年来为国家做出了一定的贡献;20世纪80年代以来,又对数家地方矿山进行采矿。由于采矿弃渣乱放和坑下开采造成地面沉降、塌陷、地裂缝,直接威胁着矿山的正常发展,危及周边村庄的经济、环境和民众的生命安全。通过详细的调查和实测,广泛地收集了各方面资料,因地制宜,提出以废渣部分充填地面塌陷、地裂缝;覆土造林,争取绿化面积超过90%。建设成为集典型地质灾害遗迹观察研究与生态观赏旅游为一体的绿色矿山,把矿产资源开发对环境的破坏降到最低限度,实现资源开发与生态环境的协调发展。 相似文献
647.
地震作用下边坡稳定性分析 总被引:3,自引:0,他引:3
考虑了边坡岩土体材料的动力特性以及地震特性,利用动力有限元时程分析方法对边坡在地震荷载作用下的动力特性进行了分析,采用最小平均安全系数对边坡稳定性进行了评价,并与拟静力法的结果进行了对比分析,对某具体工程实例计算结果表明该分析方法的可行性,可为地震作用下边坡工程设计工作提供一些有益的参考。 相似文献
648.
The Yanshan thrust belt (YTB) is located at the northern edge of the North China plate. Because of the intense thicking and
subsequent delamination of the lithosphere in north China, geologists have been focused on the Late Mesozoic deformation in
the Yanshan belt. The Yanshan belt has been regarded as part of a stable craton from the Proterozoic to the early Mesozoic.
In this paper, the authors present that the Yanshan area was deformed during the early Mesozoic. This deformation could be
related to ocean basin closure along the northern margin of North China, or related to the collision between the north China
and Yangtze Plates along the Qinling-Dabie ultrahigh pressure belt. Three stages of early Mesozoic deformation are identified
in the eastern Yanshan at Lingyuan County. The first stage is characterized by westward thrusting (D1), the second stage comprises
a top-to-east thrust system (D2), and the third stage comprises extensional gravity-induced collapse and landsliding (D3).
The timing of these evens is constrained by both the crosscutting relationships of faults and the isotopic dating of volcanic
rocks and gravels. The D1 and D2 events took place in the Late Triassic and Early Jurassic, whereas D3 event occurred at the
end of the Middle Jurassic. The Dengzhangzi formation was deposited during the D1–D2 period and recorded a rapid uplift, erosion,
and deposition sequence. These early Mesozoic contractional deformations in the YTB were probably related to the closure of
ancient Asian ocean and ancient Qinling ocean. The later crustal extension was caused by gravitational collapse of the eastern
China plateau during early Mesozoic. 相似文献
649.
为使传统的维纳滤波方法在最小均方准则下的解更准确、稳定,采用正则化思想,提出导数算子约束下的最小均方准则;在这种准则下,推导了维纳滤波因子及其频率响应.通过在不同频段取不同的正则化函数值,控制滤波结果.理论及实际地震勘探资料的分析表明:正则化维纳滤波去噪效果比传统维纳滤波好,且对有效波的损失较小,表明了文中所取正则项的可行性及有效性.最后讨论了通过建立正则化函数关系式,方便地提供正则化函数值以及圆滑振幅谱对改进滤波效果的可能性. 相似文献
650.
Frontal upwelling is an important phenomenon in summer in the Yellow Sea (YS) and plays an essential role in the distribution of nutrients and biological species. In this paper, a three-dimensional hydrodynamic model is applied to investigate the characteristics and influencing factors of frontal upwelling in the YS. The results show that the strength and distribution of frontal upwelling are largely dependent on the topography and bottom temperature fronts. The frontal upwelling in the YS is stronger and narrower near the eastern coast than near the western coast due to the steeper shelf slope. Moreover, external forcings, such as the meridional wind speed and air temperature in summer and the air temperature in the preceding winter and spring, have certain influences on the strength of frontal upwelling. An increase in air temperature in the previous winter and spring weakens the frontal upwelling in summer; in contrast, an increase in air temperature in summer strengthens the frontal upwelling. When the southerly wind in summer increases, the upwelling intensifies in the western YS and weakens in the eastern YS. The air temperature influences the strength of upwelling by changing the baroclinicity in the frontal region. Furthermore, the meridional wind speed in summer affects frontal upwelling via Ekman pumping. 相似文献