首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Viscous dissipation in a flow with power law, temperature-dependent rheology: Application to channeled lava flows
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Viscous dissipation in a flow with power law, temperature-dependent rheology: Application to channeled lava flows

机译:粘性耗散流动,依赖于电力法,温度依赖流变学:应用于引导熔岩流动

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摘要

The cooling and the dynamics of a lava flowing down an inclined channel under the effect of the gravity force is studied through the finite volume method, taking into account the effect of viscous dissipation in the heat equation. The considered rheology is shear thinning and temperature dependent. The numerical solution is tested in order to verify the independence from the mesh. The dynamic and heat problems are addressed obtaining both the stationary and the transient solution. Results indicate that, considering viscous dissipation in the heat equation, a fluid with temperature-dependent nonlinear viscosity is faster and hotter with respect to the case in which viscous dissipation is neglected. The most important effect of viscous dissipation is on the solid boundaries where the fluid warms up, and the use of a variable Reynolds number allowed us to conclude that areas in which the flow is in the laminar regime and areas in which the flow is in the turbulent regime can coexist inside the fluid. This behavior seems independent of the channel shape and can explain the observed warming back after the initial cooling in the lava flow lobes emplacement on Kilauea Volcano.
机译:通过有限体积法研究了在重力力的效果下流动倾斜通道的熔岩的冷却和动力学,考虑了粘性耗散在热方程中的影响。所认为的流变学是剪切稀释和温度依赖性。测试数值解决方案以验证与网格的独立性。动态和热问题是解决静止和瞬态解决方案的解决。结果表明,考虑到热方程中的粘性耗散,具有温度依赖性非线性粘度的流体相对于忽略粘性耗散的情况更快,更热。粘性耗散的最重要的影响是流体升温的固体边界,并且使用可变雷诺数的使用使我们得出结论流动在流动状态和流动中的区域的区域湍流制度可以在液体内部共存。这种行为似乎独立于沟道形状,并且可以在熔岩流动裂隙液体挖掘机上的初始冷却后解释观察到的升温。

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