Wu Hao, Lei Jiacheng, Jia Zeyu, Sheng Jian, Zhu Yinan, Wang Jian
College of Transportation Engineering of Nanjing Tech, Nanjing Tech University, Nanjing, 211816, China.
Sci Rep. 2024 Nov 4;14(1):26684. doi: 10.1038/s41598-024-78193-w.
This study uses a 2D high-resolution thermo-mechanical coupled model to investigate the dynamic processes of deep plate hydration, dehydration, and subsequent magmatic activity in ocean-continent subduction zones. We reveal the pathways and temporal evolution of water transport to the deep mantle during the subduction process. Plate dehydration plays a critical role in triggering partial melting of the deep mantle and related magmatic activity. Our study shows significant differences in the volumes of melt produced at different depths, with dehydration reactions in deeper regions being weaker compared to shallower ones. It takes a longer time to reach the suitable P-T conditions for hydrous melting in the deep mantle. The results highlight the geophysical significance of water transport in deep subduction zones and its role in magmatic processes, particularly in the formation of magma chambers beneath continental plates.
本研究使用二维高分辨率热-力学耦合模型来研究大洋-大陆俯冲带中深部板块水化、脱水以及随后的岩浆活动的动态过程。我们揭示了俯冲过程中水分向深部地幔运移的路径和时间演化。板块脱水在触发深部地幔部分熔融及相关岩浆活动中起着关键作用。我们的研究表明,不同深度产生的熔体体积存在显著差异,与较浅区域相比,深部区域的脱水反应较弱。深部地幔达到含水熔融合适的P-T条件所需时间更长。这些结果突出了深部俯冲带水分运移的地球物理意义及其在岩浆过程中的作用,特别是在大陆板块下方岩浆房形成过程中的作用。