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A model for the shape of lava flow fronts

机译:熔岩流锋形状的模型

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The shape of the front of a lava flow is controlled by the forces acting on the lava and, in turn, controls the flow dynamics. We present an analysis of the shape of the front of an advancing lava flow, considering both a Newtonian fluid and a Bingham fluid, which is the most commonly used non-Newtonian rheological model for lava. We assume than the flow front is moving at constant velocity on a sloping plane. The flow is considered as having an infinite extent perpendicularly to the flow direction, so that the problem is two-dimensional. The forces producing the flow advance are the gravity force and the pressure gradient due to the curvature of the flow surface. The differential equation for the shape of the front is solved analytically both in the case of a Newtonian fluid and in the case of the Bingham fluid. Since the fluid is considered as homogeneous and isothermal, the calculated shape applies to the fluid core of the flow front. The presence of a solid crust at the top of the flow, producing variable amounts of solid debris at the flow snout, alters the observable shape of the front and is taken into account in order to compare the model front shapes to those observed in the field.
机译:熔岩流的前部形状受作用在熔岩上的力控制,进而控制流动动力学。考虑到牛顿流体和宾汉流体,这是一种最先进的熔岩流前沿形状的分析,这是熔岩最常用的非牛顿流变模型。我们假设流动前沿在斜面上以恒定速度运动。认为流动垂直于流动方向具有无限的程度,因此该问题是二维的。产生流动推进的力是重力和由于流动表面的曲率引起的压力梯度。在牛顿流体的情况下和在宾汉姆流体的情况下,都可以解析地求解锋面形状的微分方程。由于流体被认为是均匀且等温的,因此计算出的形状适用于流动前沿的流体核心。在流的顶部存在固体结壳,在流口处产生可变数量的固体碎屑,改变了前部的可观察形状,并且将其与模型前部形状和现场观察到的形状进行了比较。

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