破解岩浆周期性与凌空板块构造和地壳厚度偶发性变化之间的联系

IF 3.3 1区 地球科学 Q1 GEOCHEMISTRY & GEOPHYSICS
Tectonics Pub Date : 2023-11-01 DOI:10.1029/2023TC008040
L. Meng, Y. Chu, Wei Lin, Liang Zhao, Wei Wei, Fei Liu, Yin Wang, Chaojing Song, Qinying Wu
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引用次数: 0

摘要

俯冲角的周期性变化是阐明大陆弧岩浆活动周期性的有利机制,然而,人们却低估了上覆板块岩石圈的偶发构造和变化的作用。在此,我们重点研究了华北地块中生代古太平洋弧系晚侏罗世至早白垩世花岗岩的构造、磁力和重力特征。通过揭示成岩过程和区域构造,我们建立了一个地壳厚度变化控制岩浆通量和岩浆行为的三阶段延伸-收缩循环。晚侏罗世的延伸产生了高通量的地壳源岩浆(1.87×103 km2/Myr),但厚度大于45 km的地壳在中下地壳多馈源置换作用下堆积了大型花岗岩浴石,阻碍了岩浆的上升和喷发。随后,晚侏罗世至早白垩世的收缩导致岩浆沉积,地壳增厚约 60 千米,为随后的岩浆活动提供了地壳物质。在早白垩世,强烈的地壳伸展使地壳变薄至 30 公里,在很大程度上增强了岩浆通量(3.03 × 103 平方公里/年)。岩浆容易穿透薄薄的地壳,出现密集喷发。少量岩浆被储存起来,其喷发受到韧性脱离或正常断层的控制。我们的模型强调岩石圈的偶发性变形和相关的地壳厚度变化在控制岩浆生成方面的作用,这可能为理解连续俯冲作用下的岩浆周期性提供新的启示。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Decoding the Link Between Magmatic Cyclicity and Episodic Variation of Tectonics and Crustal Thickness in the Overriding Plate
Cyclical change in subduction angle is the favorable mechanism to elucidate the cyclicity of continental arc magmatism, however, the role of episodic tectonics and variation of the lithosphere in overriding plates is much underestimated. Here we focus on structural, magnetic, and gravitational features of the Late Jurassic to Early Cretaceous granites in the Mesozoic Paleo‐Pacific arc system of the North China block. By unraveling the emplacement process and regional tectonics, we establish a three‐staged extension‐contraction cycle with crustal thickness variation controlling the magmatic flux and behavior. The Late Jurassic extension produced high‐flux crustal‐derived magma (1.87 × 103 km2/Myr), but the thick crust >45 km accumulated large granitic batholiths by multi‐feeders emplacement at the middle‐lower crust and prevented magma ascent and eruption. Subsequently, the Latest Jurassic to Earliest Cretaceous contraction resulted in the magmatic lull and thickened crust of ca. 60 km, fueling crustal material for the ensuing magmatism. In the Early Cretaceous, intense crustal extension thinned the crust to 30 km and largely enhanced the magmatic flux (3.03 × 103 km2/Myr). The magma is prone to penetrate the thin crust with an intensive eruption. A small amount of magma was stored, and the emplacement was controlled by ductile detachments or normal faults. Our model emphasizes episodic the deformation of lithosphere and associated crustal thickness variation in controlling magma production, which may shed new light in understanding the magmatic cyclicity under continuous subduction.
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来源期刊
Tectonics
Tectonics 地学-地球化学与地球物理
CiteScore
7.70
自引率
9.50%
发文量
151
审稿时长
3 months
期刊介绍: Tectonics (TECT) presents original scientific contributions that describe and explain the evolution, structure, and deformation of Earth¹s lithosphere. Contributions are welcome from any relevant area of research, including field, laboratory, petrological, geochemical, geochronological, geophysical, remote-sensing, and modeling studies. Multidisciplinary studies are particularly encouraged. Tectonics welcomes studies across the range of geologic time.
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