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On the viscous resistance of marine sediments for estimating their strength and flow characteristics

机译:关于海洋沉积物的粘性阻力以估算其强度和流动特性

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To examine debris flow mobility with respect to the runout distance and velocity, strength parameters (e.g., the Bingham and Herschel-Bulkley yield stresses, undrained shear strength, flow behavior index) are needed. In modeling debris flow, the Bingham and Herschel-Bulkley yield stresses are often used, but they lead to large differences in the runout distance and velocity of the failed masses. It is very difficult to determine the true yield stress. In this study, we propose using the viscous resistance, obtained from the normalized flow curve resulting when the shear stress and shear rate are divided by reference shear stress and shear rate values (i.e., ). The viscous resistance and strength parameters are compared from the viewpoint of geotechnology and rheology. The shear strength and flow characteristics of marine sediments can be characterized in terms of the viscous resistance and the viscous resistance is linearly related to other strength parameters (e.g., viscosity, yield stress and undrained shear strength). Thus, the viscous resistance provides a simple and easy approach for approximating strength and flow parameters in debris flow dynamics.
机译:为了检查泥石流相对于跳动距离和速度的流动性,需要强度参数(例如Bingham和Herschel-Bulkley屈服应力,不排水的剪切强度,流动行为指数)。在对泥石流进行建模时,经常使用Bingham和Herschel-Bulkley屈服应力,但它们会导致跳动距离和破坏质量的速度产生较大差异。确定真正的屈服应力非常困难。在这项研究中,我们建议使用从归一化流量曲线获得的粘滞阻力,该归一化流量曲线是将剪切应力和剪切速率除以参考剪切应力和剪切速率值(即)得到的。从地质技术和流变学的角度比较了粘性阻力和强度参数。海洋沉积物的剪切强度和流动特性可以用粘性阻力来表征,粘性阻力与其他强度参数(例如粘度,屈服应力和不排水剪切强度)线性相关。因此,粘性阻力为泥石流动力学中的强度和流量参数提供了一种简便的方法。

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