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Isothermal dynamics of channeled viscoplastic lava flows and new methods for estimating lava rheology

机译:通道状粘塑性熔岩流的等温动力学及估算熔岩流变学的新方法

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This study analyses the influence of a viscoplastic lava rheology on the dynamics of lava flows. Using a multigrid-based augmented Lagrangian scheme, we find a numerical solution for the flow of a Bingham fluid in a rectangular channel. The numerical results show that an internal viscoplastic rheology significantly modifies the velocity distribution within a lava flow through the development of plug regions whose size is determined by the magnitude of the yield strength. The flow rate, maximum surface velocity and central plug dimensions are determined as functions of the channel geometry and fluid rheology, and comparisons between these and several limiting analytical solutions confirm the accuracy of the numerical method used. The results are also compared to incorrect models which have been proposed previously in the literature. Several algorithms that extend the results to different sets of measured initial parameters are outlined; these calculate: (1) the flow depth when the fluid rheology (viscosity and yield strength) and downstream flow rate are given, (2) the flow depth when the fluid rheology and maximum downstream surface velocity are given, (3) the flow rate and fluid rheology when the flow depth, maximum surface velocity and surface plug width are given, and (4) the flow depth and rheology when the flow rate, maximum surface velocity and surface plug width are given. The use of these algorithms is demonstrated by considering the dynamics of a typical lava flow on Mount Etna, using measured rheological parameters and field observations.
机译:这项研究分析了粘塑性熔岩流变学对熔岩流动动力学的影响。使用基于多重网格的增强拉格朗日方案,我们找到了宾汉流体在矩形通道中流动的数值解。数值结果表明,内部粘塑性流变学显着地改变了熔岩流内通过塞子区域发展的速度分布,塞子区域的大小由屈服强度的大小决定。确定流速,最大表面速度和中心塞尺寸是通道几何形状和流体流变性的函数,这些与几种极限分析方法之间的比较证实了所用数值方法的准确性。还将结果与文献中先前提出的错误模型进行比较。概述了几种将结果扩展到不同的测量初始参数集的算法。这些计算:(1)给出流体流变学(粘度和屈服强度)和下游流速时的流动深度,(2)给出流体流变学和最大下游表面速度时的流动深度,(3)流速(4)给出流量,最大表面速度和表面堵塞宽度时的流动深度和流变性。通过使用测量的流变参数和现场观察,考虑埃特纳火山上典型熔岩流的动力学,证明了这些算法的使用。

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