在沉浸的颗粒状柱中产生扬森效应
M Aguilar-González1, D Maza2, F Pacheco-Vázquez1
1Instituto de Física, Benemérita Universidad Autónoma de Puebla, A. P. J-48, Puebla 72570, Mexico. fpacheco.at.ifuap.buap.mx.
Soft matter
|July 21, 2025
概括
间歇性液体显著影响颗粒列中的压力和,修改了詹森效应. 与液体相对的粒子密度是关键,随着密度的接近,和度会减少.
科学领域:
- 物理 物理学 物理
- 流体动力学 流体动力学
- 材料科学 材料科学 材料科学
背景情况:
- 詹森效应描述了颗粒柱中的压力和,通常在干燥条件下进行研究.
- 了解流体-颗粒相互作用对于各种工业和地质过程至关重要.
研究的目的:
- 实验性地研究介质液体对封闭颗粒列中的詹森效应的影响.
- 分析相对于流体的粒子密度如何影响压力和.
- 开发一个计算水静压力和浮力的模型.
主要方法:
- 实验是使用带有颗粒柱的圆柱形容器进行的.
- 这项研究比较了干燥的颗粒状柱子和充满水的柱子.
- 研究人员研究了两种情景:比水密度更高的颗粒 (沉积) 和比水密度低的颗粒 (浮力).
主要成果:
- 观察到一个类似于詹森的效应,这取决于粒子与液体密度比.
- 当粒子密度接近液体密度时,应力和率下降.
- 浮力驱动的扬森效应被确定为浮力粒,成功地通过计算水静压力来建模.
结论:
- 间歇性液体显著改变颗粒列中的压力和.
- 粒子密度与流体密度的比率是观察到的詹森效应的一个关键因素.
- 即使在液体悬浮颗粒系统中,颗粒对颗粒的应力传递仍然很重要.
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