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21.
西部矿业矿产资源原始数据库研究与系统开发 总被引:2,自引:0,他引:2
合理组织和应用多源地学数据,开发适用于矿山企业实现矿产资源管理可视化、网络化、智能化、体系化的数据库系统,对于开展矿山企业生产和科研管理等都具有重大的现实意义。文章较全面地考虑到矿业数据库系统开发的各个方面,以深入细致的研究,探讨矿产资源数据库系统原始数据库的设计及建立方法。 相似文献
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应用检测地震活动水平相对变化的区域-时间-长度算法(RTL算法),分析研究了青海地区有相对较完备小震资料的14次6级以上震例。结果表明,该区6级以上地震发生前在源区或近源区大约120km半径的空间尺度内,‰值能检测到明显的1年内和2年内时间尺度的中期地震活动异常,地震活动增强的“上升型”异常和地震活动平静的“下降型”异常各占一半。 相似文献
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Tao Zhen Shen ChengDe Gao QuanZhou Sun YanMin Yi WeiXi Li YingNian 《中国科学D辑(英文版)》2007,50(7):1103-1114
High-resolution sampling, measurements of organic carbon contents and 14C signatures of selected four soil profiles in the Haibei Station situated on the northeast Tibetan Plateau, and application
of 14C tracing technology were conducted in an attempt to investigate the turnover times of soil organic carbon and the soil-CO2 flux in the alpine meadow ecosystem. The results show that the organic carbon stored in the soils varies from 22.12×104 kg C hm−2 to 30.75×104 kg C hm−2 in the alpine meadow ecosystems, with an average of 26.86×104 kg C hm−2. Turnover times of organic carbon pools increase with depth from 45 a to 73 a in the surface soil horizon to hundreds of
years or millennia or even longer at the deep soil horizons in the alpine meadow ecosystems. The soil-CO2 flux ranges from 103.24 g C m−2 a−1 to 254.93 gC m−2 a−1, with an average of 191.23 g C m−2 a−1. The CO2 efflux produced from microbial decomposition of organic matter varies from 73.3 g C m−2 a−1 to 181 g C m−2 a−1. More than 30% of total soil organic carbon resides in the active carbon pool and 72.8%281.23% of total CO2 emitted from organic matter decomposition results from the topsoil horizon (from 0 cm to 10 cm) for the Kobresia meadow. Responding to global warming, the storage, volume of flow and fate of the soil organic carbon in the alpine meadow
ecosystem of the Tibetan Plateau will be changed, which needs further research.
Supported by the National Natural Science Foundation of China (Grant Nos. 40231015, 40471120 and 40473002) and the Guangdong
Provincial Natural Science Foundation of China (Grant No. 06300102) 相似文献
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本文通过对遥感影像的分析,针对土地利用及植被变化情况,利用优化的K-means算法对青海省环境变化进行检测,以此对土地的利用进行合理的规划,以期实现可持续发展。同时将试验结果与外业实际结果及当地政策规划进行比对,结果显示文中算法对土地的变化和未来走势预测准确率超过75%,从而验证了监测方法的可行性。这不仅保证了在经济发展的同时能够合理地使用土地资源,而且能对环境进行有效的保护。 相似文献
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青海高原春季气温异常成因及低温过程诊断分析 总被引:2,自引:0,他引:2
文章利用1961—2012年青海省气温观测数据、NCEP月平均再分析资料集、国家气候中心74项环流特征量,以及美国国家海洋局和大气管理局的52项气候指数,分析探讨青海高原春季气温异常特征及其影响因子。结果表明:青海高原春季气温呈显著上升趋势,并具有明显的年代际变化特征;北半球冬季欧亚(EU)遥相关型对次年春季青海高原气温异常具有很好的指示意义,当符合EU型分布时,青海春季气温易于偏低;春季乌拉尔山高压脊、东亚大槽、北半球副热带高压和极涡、高原高度场对春季气温具有一定的影响;同时,春季气温对北印度洋的索马里—阿拉伯海—孟加拉湾地区、西北太平洋及赤道中太平洋海温异常具有很好的响应,当上述关键海区海温偏冷(暖)时,易引起冷(暖)春。青海春季的持续低温过程是导致春季气温偏低的直接原因,造成低温过程频发的主要影响系统为贝加尔湖以南地区的低压明显发展时,青海高原处于槽后脊前西北气流中,高原高度场偏低,受频繁性冷空气影响易出现持续性低温过程,而相反该地区高压异常强盛时,青海高原多盛行下沉气流,以晴好天气为主,不利于低温过程的出现。 相似文献
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Three plutons (Deh-Siahan, Bande-Bagh and Baghe-Khoshk Sharghi, collectively referred to as the DBB hereafter) in southwestern Kerman, in the southeastern part of the Urumieh–Dokhtar magmatic assemblage (UDMA) of the Zagros orogenic belt differ from the typical calc-alkaline metaluminous, I-type intrusions of the region. The DBB intrusions have a distinct lithological assemblage varying from diorite through monzogranite and monzonite to alkali feldspar syenite and alkali granite. The DBB granitoids are metaluminous to slightly peraluminous, alkaline to shoshonitic in composition and have high total alkali contents with K2O > Na2O, high FeOT/MgO values, and low CaO and MgO contents. They are enriched in some LILEs (such as Rb and Th) and HFSEs (such as Zr, Y and REEs except Eu) and depleted in Sr and Ba relative to primordial mantle, and have low concentrations of transitional metals. These features along with various geochemical discriminant diagrams suggest that the DBB granitoids are post-collisional A-type granitoids, which had not been recognized previously in the UDMA. The chondrite-normalized REE patterns of the DBB granitoids show slightly enriched light REEs [(La/Sm)N = 2.26–4.13], negative Eu anomalies [(Eu/Eu*)N = 0.19–0.74] and flat heavy REE patterns [(Gd/Yb)N = 0.80–1.87]. The negative Eu anomaly indicates an important role for plagioclase and/or K-feldspar during fractional crystallization. Whole-rock Rb–Sr isotope analysis yields an isochron age of 33 ± 1 Ma with an initial 87Sr/86Sr value of 0.7049 ± 0.0001. Whole-rock Sm–Nd isotope analysis gives εNdt values from + 2.56 to + 3.62 at 33 Ma. The positive εNdt and low ISr values of the DBB granitoids together with their TDM of 0.6–0.7 Ga suggest their formation from partial melting of a lithospheric mantle source, modified by fluids or melts from earlier subduction processes. Melting of lithospheric mantle occurred via a dehydration melting process at pressures below the garnet stability field, as a consequence of lithospheric mantle delamination or break-off of a subducted slab and melting of the lithospheric mantle by upwelling of hot asthenosphere. On the basis of Rb/Sr age dating and the post-collisional geochemical signatures of the DBB granitoids, along with extensive pre-collisional volcanic eruptions in Middle Eocene, we suggest Late Eocene for the time of collision between the Arabian and Central Iranian plates. This also implies that the calc-alkaline I-type intrusions in the southwestern Kerman and in other parts of the UDMA may have formed in a post-collisional context. 相似文献