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夏威夷基拉韦厄火山山顶和裂谷带下方的深部岩浆体。

Deep magma body beneath the summit and rift zones of kilauea volcano, hawaii.

出版信息

Science. 1990 Mar 16;247(4948):1311-6. doi: 10.1126/science.247.4948.1311.

Abstract

A magnitude 7.2 earthquake in 1975 caused the south flank of Kilauea Volcano, Hawaii, to move seaward in response to slippage along a deep fault. Since then, a large part of the volcano's edifice has been adjusting to this perturbation. The summit of Kilauea extended at a rate of 0.26 meter per year until 1983, the south flank uplifted more than 0.5 meter, and the axes of both the volcano's rift zones extended and subsided; the summit continues to subside. These ground-surface motions have been remarkably steady and much more widespread than those caused by either recurrent inflation and deflation of the summit magma chamber or the episodic propagation of dikes into the rift zones. Kilauea's magmatic system is, therefore, probably deeper and more extensive than previously thought; the summit and both rift zones may be underlain by a thick, near vertical dike-like magma system at a depth of 3 to 9 kilometers.

摘要

1975 年发生的 7.2 级地震导致夏威夷基拉韦厄火山的南坡向海移动,以应对深断层沿线的滑动。从那时起,火山的大部分结构一直在适应这种干扰。基拉韦厄火山的山顶每年以 0.26 米的速度延伸,直到 1983 年,南坡上升了超过 0.5 米,火山的两个裂谷带的轴都延伸和下沉;山顶仍在继续下沉。这些地表运动非常稳定,范围比由于山顶岩浆室的反复膨胀和收缩或岩脉间歇性地向裂谷带传播引起的运动更为广泛。因此,基拉韦厄的岩浆系统可能比以前想象的更深、更广泛;山顶和两个裂谷带可能都位于一个 3 至 9 公里深的厚而近乎垂直的岩脉状岩浆系统之下。

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