通过相似性分析进行非牛顿流体流变测量

Mitsuki Hamamichi, Kentaro Nagasawa, Masato Okada, Ryohei Seto, Yonghao Yue
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摘要

我们估计了三个Herschel-Bulkley参数(屈服应力σY,幂律指数n和一致性参数η)对于剪切依赖的类流体材料可能具有大规模夹杂物,流变仪可能无法提供有用的测量。我们使用未知材料进行实验,用于大坝溃坝(或柱倒塌)设置并捕捉视频片段。然后,我们使用模拟来优化材料参数。为了更好地匹配流变仪中遇到的简单剪切流动,我们修改了弹粘塑性Herschel-Bulkley模型的流动规则。通过分析损失格局进行优化,实现了相似关系;如果材料参数远离这一关系,将导致模拟结果的匹配,使参数难以区分。通过分析相似关系的Hessian,我们发现利用相似关系的设置依赖可以改进使用多个设置的估计。我们通过将估计值与流变仪的测量值(对于没有大规模夹杂物的材料)进行比较来验证我们方法的有效性,并展示了对具有大规模夹杂物的材料的应用,包括各种沙拉或意大利面酱和粥。
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Non-Newtonian ViRheometry via Similarity Analysis
We estimate the three Herschel-Bulkley parameters (yield stress σY, power-law index n, and consistency parameter η) for shear-dependent fluid-like materials possibly with large-scale inclusions, for which rheometers may fail to provide a useful measurement. We perform experiments using the unknown material for dam-break (or column collapse) setups and capture video footage. We then use simulations to optimize for the material parameters. For better match up with the simple shear flow encountered in a rheometer, we modify the flow rule for the elasto-viscoplastic Herschel-Bulkley model. Analyzing the loss landscape for optimization, we realize a similarity relation; material parameters far away within this relation would result in matched simulations, making it hard to distinguish the parameters. We found that by exploiting the setup dependency of the similarity relation, we can improve on the estimation using multiple setups, which we propose by analyzing the Hessian of the similarity relation. We validate the efficacy of our method by comparing the estimations to the measurements from a rheometer (for materials without large-scale inclusions) and show applications to materials with large-scale inclusions, including various salad or pasta sauces, and congee.
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