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A three-dimensional dynamical model for channeled lava flow with nonlinear rheology

机译:非线性流变的熔岩流三维动力学模型

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Recent laboratory studies on the rheology of lava samples from different volcanic areas have highlighted that the apparent viscosity depends on a power of the strain rate. Several authors agree in attributing this dependence to the crystal content of the sample and to temperature. Starting from these results, in this paper we studied the effect of a power law rheology on a gravity-driven lava flow. The equation of motion is nonlinear in the diffusion term, and an analytical solution does not seem to be possible. The finite-volume method has been applied to solve numerically the equation governing the fully developed laminar flow of a power law non-Newtonian fluid in an inclined rectangular channel. The convergence, the stability, and the order of approximation were tested for the Newtonian rheology case, comparing the numerical solution with the available analytical solution. Results indicate that the assumption on the rheology, whether linear or nonlinear, strongly affects the velocity and/or the thickness of the lava channel both for channels with fixed geometry and for channels with constant flow rate. Results on channels with fixed geometry are confirmed by some simulations for real lava channels. Finally, the study of the Reynolds number indicates that gravity-driven lava channel flows are always in laminar regime, except for strongly nonlinear pseudoplastic fluids with low fluid consistency and at high slopes.
机译:最近对来自不同火山区的熔岩样品流变学的实验室研究强调,表观粘度取决于应变率的幂。一些作者同意将这种依赖性归因于样品的晶体含量和温度。从这些结果出发,本文研究了幂律流变学对重力驱动的熔岩流的影响。运动方程在扩散项中是非线性的,解析解决方案似乎是不可能的。有限体积法已被用于数值求解方程,该方程控制幂律非牛顿流体在倾斜矩形通道中的完全展开的层流。对于牛顿流变情况,测试了收敛性,稳定性和近似阶数,将数值解与可用的解析解进行了比较。结果表明,对于具有固定几何形状的通道和具有恒定流量的通道,流变学的假设,无论是线性的还是非线性的,都将极大地影响熔岩通道的速度和/或厚度。通过对真实熔岩通道的一些模拟,可以确认几何形状固定的通道上的结果。最后,对雷诺数的研究表明,重力驱动的熔岩通道流动始终处于层流状态,除了具有低流体稠度和高斜率的强非线性假塑性流体。

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