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Dam Break Wave of Thixotropic Fluid

机译:触变流体的溃坝波

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Thixotropy is the characteristic of a fluid to form a gelled structure over time when it is not subjected to shearing, and to liquefy when agitated. Thixotropic fluids are commonly used in the construction industry (e.g., liquid concrete and drilling fluids), and related applications include some forms of mud flows and debris flows. This paper describes a basic study of dam break wave with thixotropic fluid. Theoretical considerations were developed based upon a kinematic wave approximation of the Saint-Venant equations down a prismatic sloping channel. A very simple thixotropic model, which predicts the basic rheological trends of such fluids, was used. It describes the instantaneous state of fluid structure by a single parameter. The analytical solution of the basic flow motion and rheology equations predicts three basic flow regimes depending upon the fluid properties and flow conditions, including the initial "degree of jamming" of the fluid (related to its time of restructuration at rest). These findings were successfully compared with systematic bentonite suspension experiments. The present work is the first theoretical analysis combining the basic principles of unsteady flow motion with a thixotropic fluid model and systematic laboratory experiments.
机译:触变性是流体在不受剪切作用时随时间形成胶凝结构,而在受到搅动时则液化的特征。触变流体通常用于建筑行业(例如,液态混凝土和钻井液),相关应用包括某些形式的泥浆流和泥石流。本文描述了一种触变流体溃坝的基础研究。理论上的考虑是基于Saint-Venant方程沿棱柱形倾斜通道的运动波逼近得出的。使用了一个非常简单的触变模型,该模型可以预测此类流体的基本流变趋势。它通过单个参数描述流体结构的瞬时状态。基本流动运动和流变方程的解析解根据流体的性质和流动条件,包括流体的初始“卡塞度”(与静止时的重构时间有关),预测了三种基本的流态。这些发现已成功与系统的膨润土悬浮液实验进行了比较。目前的工作是首次将非定常流动运动的基本原理与触变流体模型和系统的实验室实验相结合的理论分析。

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