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A simplified two-component model for the lateral growth of pahoehoe lobes

机译:简化的两组件模型,用于侧耳生长

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摘要

Unconfmed pahoehoe lobes, composed of networks of numerous pahoehoe toes, often show a transverse profile with central thickening and crude bilateral symmetry. The overall widths of individual lobes are often relatively constant compared to the large diversity in widths of individual toes. These observations collectively suggest that there is a lateral self-confinement mechanism at the scale of a lobe. Although previous correlated random walk models successfully address the nature of this mechanism, the underlying physical processes are still not clearly understood. Here, we propose a simplified two-component model for the lateral self-confinement mechanism. The model assumes that the surface crust retains an inner hot core until its overpressure surpasses the strength of the crust. It also assumes that fracturing of the crust occurs at the top of the flow where the crust has the weakest strength, and then a breakout of the hot core spills out to form a new flow unit. Episodic fracturing and subsequent coalescence of multiple toes form a broad lobe, which is then considered theoretically to behave as a single large flow unit. Although simplified, the model can determine the inflated thickness necessary to fracture the crust and the width scale of the lateral spreading with a self-confinement effect. The model also provides theoretical support for the correlated random walk model for pahoehoe emplacement.
机译:由无数个hoe头的网络组成的无约束的pa头裂片,通常表现出具有中央增厚和粗略的双边对称性的横向轮廓。与单个脚趾宽度的大差异相比,单个叶片的总宽度通常相对恒定。这些观察结果共同表明,在叶瓣尺度上存在侧向自我约束机制。尽管以前的相关随机游走模型成功地解决了该机制的本质,但仍不清楚其潜在的物理过程。在这里,我们为横向自约束机制提出了一个简化的两部分模型。该模型假定地壳保留了内部的热核,直到其超压超过了地壳的强度为止。还假设地壳的破裂发生在地壳强度最弱的流的顶部,然后热芯的破裂溢出而形成一个新的流单元。偶发的破裂和随后的多个脚趾的聚结形成一个宽叶,然后从理论上将其视为一个大流量单位。尽管简化了模型,但是该模型可以确定具有使外壳破裂所需的膨胀厚度以及具有自约束作用的横向扩展的宽度比例。该模型还为有关Pahoehoe安置的相关随机游走模型提供了理论支持。

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