首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Influence of surface clinker on the crustal structures and dynamics f `a'a lava flows
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Influence of surface clinker on the crustal structures and dynamics f `a'a lava flows

机译:熟料对熔岩流地壳结构和动力学的影响

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Surface structures on `a'a and blocky lavas reflect the internal flow dynamics during emplacement and also influence the dynamics of developing flows. To investigate the effects of brittle, clinkery `a'a flow crusts on flow dynamics and surface structures, we conducted sand and silicone laboratory experiments that simulated the advance of lava into a preexisting channelized flow with a surface crust. Experiments carried out with relatively thin crusts produced apparently ductile surface deformation structures, while thick crusts behaved dominantly in a brittle manner. Increased crustal thickness led to increased strength under compression but favored more disruption under tension, as the flow core welled up through tensile fractures, entraining crustal material. At lava flow fronts, upwelling and entrainment would increase heat losses by radiation and advection, respectively, resulting in a positive-feedback cooling loop. Fracturing caused heterogeneous crustal distribution near the flow front, which resulted in lobate flow advance, despite the absence of the viscoelastic layer that has previously been inferred as the primary control on flow advance and lobe formation. We therefore conclude that the influence of a purely brittle crust on the dynamics and surface morphologies of lava flows is more significant than often thought. All of the surface structures produced in the experiments have been observed on lavas or glaciers and many also on landslides and debris flows, suggesting the results can assist in the understanding of a range of natural flows.
机译:'a'a和块状熔岩上的表面结构反映了就位时的内部流动动力学,也影响了发育中的流动的动力学。为了研究脆性,熟料“ a” a流动结壳对流动动力学和表面结构的影响,我们进行了沙子和有机硅实验室实验,模拟了熔岩向带有表面结壳的预先形成的通道化流动的过程。用较薄的外壳进行的实验产生了明显的延展性表面变形结构,而较厚的外壳则主要表现为脆性。地壳厚度的增加导致受压状态下强度的增加,但在拉力作用下会产生更多的破坏,因为流芯由于拉伸断裂而上升,从而夹带了地壳材料。在熔岩流前沿,上升流和夹带将分别通过辐射和对流增加热损失,从而导致正反馈冷却回路。尽管没有粘弹性层的存在,压裂作用导致流前附近的地壳分布不均匀,尽管先前已将粘弹性层作为对流前进和叶形成的主要控制,但仍存在裂隙。因此,我们得出的结论是,纯脆壳对熔岩流动力学和表面形态的影响比通常认为的更为重要。实验中产生的所有表面结构都在熔岩或冰川以及许多滑坡和泥石流中被观测到,这表明结果可以帮助理解一系列自然流。

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