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华北克拉通东南部太古宙英云闪长岩—奥长花岗岩—花岗闪长岩形成及演化 被引量:5
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作者 刘磊 康诗胜 +3 位作者 刘恒 胡天杨 周炜鉴 张云飞 《地质论评》 CAS CSCD 北大核心 2023年第1期49-75,共27页
华北克拉通是世界范围内少数保存有大量太古宙英云闪长岩—奥长花岗岩—花岗闪长岩(TTG)及多期次岩浆事件记录的克拉通之一,相关研究对揭示全球太古宙时期壳—幔动力学演化过程具有重要的指示意义。笔者等在华北克拉通东南部归纳总结了5... 华北克拉通是世界范围内少数保存有大量太古宙英云闪长岩—奥长花岗岩—花岗闪长岩(TTG)及多期次岩浆事件记录的克拉通之一,相关研究对揭示全球太古宙时期壳—幔动力学演化过程具有重要的指示意义。笔者等在华北克拉通东南部归纳总结了52个太古宙时期TTG岩石样品的有效地球化学资料。根据地区与岩石成因差异,将样品主要分为3类:霍邱、五河地区低铝、低压型TTG岩石,鲁西(C带)、丰县张河地区中铝、中低压型TTG岩石以及登封地区高铝、高压型TTG岩石。华北克拉通东南部的TTG片麻岩经历了两期明显的地壳生长事件:2.95~2.70 Ga,2.58~2.48 Ga(峰值为约2.52 Ga)。主、微量数据表明,华北克拉通东南部的TTG片麻岩主体源于低钾镁铁质岩石的部分熔融,并且源区可能受到来自于壳—幔相互作用的影响。其中,霍邱、登封地区的TTG分别受到流体、熔体交代作用;鲁西和张河地区则同时受到熔体和流体交代作用。霍邱地区TTG片麻岩形成于约2.70 Ga,成因可能受鲁西地区地幔柱垂向构造的影响;太古宙末期,鲁西及张河地区与登封地区TTG片麻岩的形成具有一定联系,主要表现为受洋内岛弧地体侧向的洋内俯冲与弧陆碰撞增生控制,并经历了区域麻粒岩相变质作用。 展开更多
关键词 TTG片麻岩 壳—幔相互作用 华北克拉通 弧陆增生
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Computational simulation of convective flow in the Earth crust under consideration of dynamic crust-mantle interactions 被引量:1
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作者 赵崇斌 彭省临 +2 位作者 刘亮明 B.E.HOBBS A.ORD 《Journal of Central South University》 SCIE EI CAS 2011年第6期2080-2084,共5页
The finite element method was used to solve fluid dynamic interaction problems between the crust and mantle of the Earth. To consider different mechanical behaviours, the lithosphere consisting of the crust and upper ... The finite element method was used to solve fluid dynamic interaction problems between the crust and mantle of the Earth. To consider different mechanical behaviours, the lithosphere consisting of the crust and upper mantle was simulated as fluid-saturated porous rocks, while the upper aesthenospheric part of the mantle was simulated as viscous fluids. Since the whole lithosphere was computationally simulated, the dynamic interaction between the crust and the upper mantle was appropriately considered. In particular, the mixing of mantle fluids and crustal fluids was simulated in the corresponding computational model. The related computational simulation results from an example problem demonstrate that the mantle fluids can flow into the crust and mix with the crustal fluids due to the resulting convective flows in the crust-mantle system. Likewise, the crustal fluids can also flow into the upper mantle and mix with the mantle fluids. This kind of fluids mixing and exchange is very important to the better understanding of the governing processes that control the ore body formation and mineralization in the upper crust of the Earth. 展开更多
关键词 computational simulation crustal fluids mantle fluids fluid dynamic interaction
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