侵入者在振动气体流化颗粒状材料中的异常下降
Oscar J Punch1, Qiang Guo1,2, Maty Gueye3
1Columbia University, Department of Chemical Engineering, New York, New York 10027, USA.
Physical review. E
|February 20, 2025
概括
密集的入侵盘穿过流化颗粒物质,由于变化的阻力力而表现出振荡速度. 两个对齐的入侵者表现出由粒子紧缩和减速引起的起草-亲吻-倒行为.
科学领域:
- 物理 物理学 物理
- 流体动力学 流体动力学
- 颗粒物质科学 颗粒物质科学
背景情况:
- 密集的入侵盘被用来研究粒子-流体动力学.
- 颗粒材料的流化是通过气体流和振动实现的.
- 了解入侵者运动对于颗粒流应用至关重要.
研究的目的:
- 为了研究通过流化颗粒介质下降的密集入侵盘的动态.
- 分析影响入侵者速度和相互作用的因素.
- 通过计算和实验来建模这些颗粒流现象.
主要方法:
- 实验设置涉及在流化颗粒物质中使用密集的入侵盘.
- 计算机模拟模型入侵者下降和流体粒子相互作用.
- 分析影响入侵者运动的空隙分数和阻力.
主要成果:
- 单个入侵者表现出与系统高度相关的振荡下降速度.
- 模拟显示空间依赖的空隙分数是速度振荡的原因.
- 两个垂直排列的入侵者由于粒子紧缩和下层入侵者的减速而显示起草-亲吻-倒的动态.
结论:
- 颗粒物质的特性,如空隙分数,显著影响入侵者动态.
- 表面的入侵者对粒子进行压缩,改变了下层入侵者的运动.
- 该研究提供了对各种工业过程相关的复杂颗粒流动行为的见解.
更多相关视频
11:51Visually Based Characterization of the Incipient Particle Motion in Regular Substrates: From Laminar to Turbulent Conditions
Published on: February 22, 2018
8.6K
09:00Visualization of Failure and the Associated Grain-Scale Mechanical Behavior of Granular Soils under Shear using Synchrotron X-Ray Micro-Tomography
Published on: September 29, 2019
13.2K
相关概念视频
Behavior of Gas Molecules: Molecular Diffusion, Mean Free Path, and Effusion
28.5K
Although gaseous molecules travel at tremendous speeds (hundreds of meters per second), they collide with other gaseous molecules and travel in many different directions before reaching the desired target. At room temperature, a gaseous molecule will experience billions of collisions per second. The mean free path is the average distance a molecule travels between collisions. The mean free path increases with decreasing pressure; in general, the mean free path for a gaseous molecule will be...
28.5K
Accelerating Fluids
994
When a fluid is in constant acceleration, the pressure and buoyant force equations are modified. Suppose a beaker is placed in an elevator accelerating upward with a constant acceleration, a. In the beaker, assume there is a thin cylinder of height h with an infinitesimal cross-sectional area, ΔS.
The motion of the liquid within this infinitesimal cylinder is considered to obtain the pressure difference. Three vertical forces act on this liquid:
The motion of the liquid within this infinitesimal cylinder is considered to obtain the pressure difference. Three vertical forces act on this liquid:
994
Distribution of Molecular Speeds
3.8K
The motion of molecules in a gas is random in magnitude and direction for individual molecules, but a gas of many molecules has a predictable distribution of molecular speeds. This predictable distribution of molecular speeds is known as the Maxwell-Boltzmann distribution. The distribution of molecular speeds in liquids is comparable to that of gases but not identical and can help to understand the phenomenon of the boiling and vapor pressure of a liquid. Consider that a molecule requires a...
3.8K
Molecular Kinetic Energy
5.0K
The word "gas" comes from the Flemish word meaning "chaos," first used to describe vapors by the chemist J. B. van Helmont. Consider a container filled with gas, with a continuous and random motion of molecules. During collisions, the velocity component parallel to the wall is unchanged, and the component perpendicular to the wall reverses direction but does not change in magnitude. If the molecule’s velocity changes in the x-direction, then its momentum is changed.
5.0K
Bernoulli's Principle
9.3K
Bernoulli's equation incorporates how fluid pressure changes across a static, incompressible fluid by equating the kinetic energy contribution to zero. It is also helpful in analyzing horizontal flows in which the gravitational energy density is constant throughout. The latter equation is so useful that it is called Bernoulli's principle. According to Bernoulli's principle, the fluid pressure drops if the speed increases and vice versa.
Bernoulli's principle has several...
Bernoulli's principle has several...
9.3K
Viscosity
5.8K
When water is poured into a glass, it falls freely and quickly, whereas if honey or maple syrup is poured over a pancake, it flows slowly and sticks to the surface of the container. This difference in the flow of different kinds of liquids arises due to the fluid friction between the liquid layers and the liquid and the surrounding material. This property of fluids is called fluid viscosity. In this example, water has a lower viscosity than honey and maple syrup.
The SI unit of viscosity is...
The SI unit of viscosity is...
5.8K
