Lu Gang, Huismans Ritske S
Department of Earth Science, Bergen University, Bergen, Norway.
Nat Commun. 2021 Jun 23;12(1):3894. doi: 10.1038/s41467-021-23981-5.
Breakup volcanism along rifted passive margins is highly variable in time and space. The factors controlling magmatic activity during continental rifting and breakup are not resolved and controversial. Here we use numerical models to investigate melt generation at rifted margins with contrasting rifting styles corresponding to those observed in natural systems. Our results demonstrate a surprising correlation of enhanced magmatism with margin width. This relationship is explained by depth-dependent extension, during which the lithospheric mantle ruptures earlier than the crust, and is confirmed by a semi-analytical prediction of melt volume over margin width. The results presented here show that the effect of increased mantle temperature at wide volcanic margins is likely over-estimated, and demonstrate that the large volumes of magmatism at volcanic rifted margin can be explained by depth-dependent extension and very moderate excess mantle potential temperature in the order of 50-80 °C, significantly smaller than previously suggested.
沿裂谷被动大陆边缘的裂解火山作用在时间和空间上具有高度变异性。控制大陆裂谷作用和裂解过程中岩浆活动的因素尚未明确,且存在争议。在此,我们使用数值模型来研究裂谷边缘的熔体生成情况,这些裂谷边缘具有与自然系统中观测到的相对应的不同裂谷样式。我们的结果表明,岩浆活动增强与边缘宽度之间存在惊人的相关性。这种关系可以通过深度依赖的伸展作用来解释,在此过程中岩石圈地幔比地壳更早破裂,并且通过对边缘宽度上熔体体积的半解析预测得到了证实。此处给出的结果表明,在宽阔火山边缘地幔温度升高的影响可能被高估了,并且表明火山裂谷边缘大量的岩浆活动可以通过深度依赖的伸展作用以及非常适度的约50 - 80°C的额外地幔势温度来解释,这比之前所认为的要小得多。