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Testing constitutive relations by running and walking on cornstarch and water suspensions

机译:通过跑步和走在玉米淀粉和水悬浮液中来测试本构关系

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The ability of a person to run on the surface of a suspension of cornstarch and water has fascinated scientists and the public alike. However, the constitutive relation obtained from traditional steady-state rheology of cornstarch and water suspensions has failed to explain this behavior. In another paper we presented an averaged constitutive relation for impact rheology consisting of an effective compressive modulus of a system-spanning dynamically jammed structure [R. Maharjan et al., this issue, Phys. Rev. E 97, 052602 (2018)]. Here we show that this constitutive model can be used to quantitatively predict, for example, the trajectory and penetration depth of the foot of a person walking or running on cornstarch and water. The ability of the constitutive relation to predict the material behavior in a case with different forcing conditions and flow geometry than it was obtained from suggests that the constitutive relation could be applied more generally. We also present a detailed calculation of the added mass effect to show that while it may be able to explain some cases of people running or walking on the surface of cornstarch and water for pool depthsH >1.2 m and foot impact velocities V_I > 1.7m/s, it cannot explain observations of people walking or running on the surface of cornstarch and water for smaller H or V_I .
机译:一个人在玉米淀粉和水悬浮液表面上跑的能力迷上了科学家和公众。然而,从玉米淀粉和水悬浮液的传统稳态流变中获得的本构关系已经未能解释这种行为。在另一篇论文中,我们介绍了由系统跨越动态卡纹结构的有效压缩模量组成的影响流变学的平均本构关系[R. Maharjan等人。,这个问题,物理。 Rev. E 97,052602(2018)]。在这里,我们表明该本构模型可用于定量地预测,例如,步行或跑在玉米淀粉和水上的人的脚的轨迹和穿透深度。本构关系的能力以预测不同迫使条件和流动几何形状的情况的能力,从表明可以更普遍地施加本构关系。我们还提出了对增加的群众效果的详细计算,表明,虽然它可能能够解释一些人的跑步或走在玉米淀粉表面和水池的水面上的情况> 1.2米和脚冲击速度V_i> 1.7m / S,无法解释观察人们走路或跑在玉米淀粉表面和较小的h或v_i的水面上。

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