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A reverse energy cascade for crustal magma transport

机译:用于地壳岩浆运输的反向能源级联

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Direct constraints on the ascent, storage and eruption of mantle melts come primarily from exhumed, long-frozen intrusions. These structures, relics of a dynamic magma transport network, encode how Earth's crust grows and differentiates over time. Furthermore, they connect mantle melting to an evolving distribution of surface volcanism. Disentangling magma transport processes from the plutonic record is consequently a seminal but unsolved problem. Here we use field data analyses, scaling theory and numerical simulations to show that the size distribution of intrusions preserved as plutonic complexes in the North American Cordillera suggests a transition in the mechanical response of crustal rocks to protracted episodes of magmatism. Intrusion sizes larger than about 100m follow a power-law scaling expected if energy delivered from the mantle to open very thin dykes and sills is transferred to intrusions of increasing size. Merging, assimilation and mixing of small intrusions into larger ones occurs until irreversible deformation and solidification dissipate available energy. Mantle magma supply over tens to hundreds of thousands of years will trigger this regime, a type of reverse energy cascade, depending on the influx rate and efficiency of crustal heating by intrusions. Identifying regimes of magma transport provides a framework for inferring subsurface magmatic processes from surface patterns of volcanism, information preservation in the plutonic record, and related effects including climate.
机译:直接限制在地幔熔体的上升,储存和爆发主要来自膨胀,长冷冻的入侵。这些结构,动态岩浆传输网络的遗物,编码地球的地壳如何随着时间的推移而变化。此外,它们将地幔熔化到表面火山的不断发展分布。解散岩白岩浆运输过程从浦项记录中得到了一个精开生的,但未解决的问题。在这里,我们使用现场数据分析,缩放理论和数值模拟,以表明北美海豚在北美富力络合物中保留的入侵的尺寸分布表明,在地壳岩石的机械响应中的过渡到岩浆广泛的岩浆活动。如果从地幔输送以打开非常薄的堤坝和窗台的能量,则遵循大约100米的入侵尺寸遵循预期的电力法缩放。将小侵入的合并,同化和混合在较大的入侵中发生,直到不可逆变形和凝固耗散可用能量。 Mantle Magma供应超过数十万年将触发这一制度,这是一种反向能源级联,取决于侵入式加热的流入速度和效率。识别岩浆运输制度提供了一种框架,用于从火山的表面模式,富裕的记录中的信息保存以及包括气候的相关效果的地表岩石工艺提供框架。

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