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961.
South China as an amalgamation of the Yangtze and Cathaysia blocks is composed of Archean to Mesoproterozoic basement overlain by Neoproterozoic and younger cover. Both the constituent Yangtze and Cathaysia blocks contain well-preserved Neoproterozoic rocks that have been extensively studied in terms of the age and tectonic nature, but less is known about their earlier crustal history due to the incomplete rock record. Recent efforts in investigating the yet survived crustal nature based on isotopic and elemental signatures preserved in igneous and sedimentary rocks have steadily improved our knowledge about the pre-Neoproterozoic continental crustal evolution in South China. In this paper, we summarize the up-to-date pre-Neoproterozoic records, including petrological, geochronological, geochemical and geophysical data, across South China, and discuss its spatiotemporal patterns of the pre-Neoproterozoic crust and the relevant tectonic events. While the xenocrystic/inherited and detrital zircon records suggest widespread Archean (mainly ca. 2.5 Ga) crustal components within both the Yangtze and Cathaysia blocks, exposed Archean rocks are only limited to isolated crustal provinces in the Yangtze Block. These Archean rocks are dominated by TTGs (tonalite-trondhjemite-granodiorite) with varied ages (3.3–2.5 Ga) and zircon Hf isotopes, indicating a compositionally heterogeneous nature of the Archean Yangtze Block and, by inference, the development of multiple ancient terranes. The early Paleoproterozoic (2.4–2.2 Ga) tectonomagmatic events characterize the western Yangtze Block and are supportive of an east-west subdivision of the Yangtze basement, whereas the late Paleoproterozoic (2.1–1.7 Ga) orogeneses may have affected a larger area covering both the western and eastern parts of the Yangtze Block, and also the Cathaysia Block. The eastern Yangtze Block with generally northeastward-younging late Paleoproterozoic magmatism and metamorphism likely experienced a prolonged 2.05–1.75 Ga orogenic process welding the various Archean proto-continents, consistent with the documentation of a buried late Paleoproterozoic orogenic belt imaged by deep seismic profiling from its central part and of a slightly older ophiolitic mélange in the northern part. The Cathaysia Block was probably involved in a short-lived 1.9–1.8 Ga orogenic event. The two orogeneses overlapped in time and may have contributed to the cratonization of a possible unified South China, and are referred to be linked with the assembly of the Nuna Supercontinent. The subsequent late Paleoproterozoic to early Mesoproterozoic rift successions and intrusions (1.7–1.5 Ga) in the southwestern Yangtze Block, and the ca. 1.43 Ga rifting in Hainan Island of the Cathaysia Block could be responses to the Nuna break-up. Late Mesoproterozoic (1.2–1.0 Ga) magmatism of varied age and nature in different localities of the Yangtze Block is reflective of a complex tectonic process in the context of the assembly of the Rodinia Supercontinent. Similar-aged metamorphism (1.3–1.0 Ga) is recorded in Hainan Island, reflecting the Grenvillian continental collision during the Rodinia assembly, but further studies are necessary to better constrain the late Mesoproterozoic tectonic framework of South China. 相似文献
962.
给出了时变参数PGM(1,1)模型的数值解法,比较了其与GM(1,1)、PGM(1,1)模型的预测精度,分析了灰区间作为预测结果的可靠性。 相似文献
963.
面向过程的时空数据模型研究 总被引:5,自引:0,他引:5
根据近20年来时空数据模型的研究现状、存在问题及其原因剖析,以连续渐变地理实体的表达、组织和存储为研究对象,提出面向过程的时空数据模型。根据连续渐变地理实体的内在特性,将其分级抽象为过程对象系列,进一步探讨过程对象及过程对象间逻辑关系,并设计其UML模型结构及物理存储结构。通过抽象的过程对象隐式地记录地理实体动态变化机制,及自定义的过程对象存储表提供演变机制的函数接口模式,实现连续渐变地理实体的过程化组织、存储与动态分析。最后,以海洋数据的过程化组织与分析为例,构建时空过程模型原型系统(海洋过程对象—关系数据库系统与功能分析平台),验证和评价该模型的实用性。 相似文献
964.
僵尸网络在线检测技术研究 总被引:3,自引:1,他引:2
僵尸网络为平台的攻击发展迅速,当前大多数的检测方法是通过分析历史网络流量信息来发现特定协议的僵尸网络,难以满足实时需要,且不能通用。针对这种情况,提出了一种独立于控制协议与结构的僵尸网络在线检测技术,能够从网络流量数据中快速检测出可疑僵尸主机。模拟实验结果表明,该技术能够高效地实现僵尸网络在线检测。 相似文献
965.
不可能差分分析8轮AES-256 总被引:1,自引:0,他引:1
利用密钥编排方案,基于差分表查询技术和数据多次利用技术,提出了新的不可能差分密码分析8轮AES-256。数据复杂度约为2105选择明文,时间复杂度约为2229.58存储访问,存储复杂度约为287字节。与已有的最新结果相比较,新方法存储复杂度降低。 相似文献
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