在不均流量下的无摩擦密度悬浮的缩放描述
Bhanu Prasad Bhowmik1, Christopher Ness1
1School of Engineering, University of Edinburgh, Edinburgh EH9 3JL, United Kingdom.
Physical review letters
|April 2, 2024
概括
研究人员开发了密度悬浮的新构成规律,统一了在均和不均流动下的风学. 该框架使用粒子速度波动和其他关键参数预测悬浮行为.
科学领域:
- 类风病学 类风病学 类风病学
- 计算物理学的计算物理.
- 材料科学是一种材料科学.
背景情况:
- 在不均的流量下预测密悬浮的风质是具有挑战性的.
- 像μ(J) 框架这样的现有模型仅限于同质条件.
研究的目的:
- 制定适用于均和不均流量的密度悬浮的新构成法.
- 为了统一无摩擦的密集悬浮物体的整体反应.
主要方法:
- 基于无摩擦密集悬浮的基于粒子的模拟.
- 导出包含粒子速度波动的新的缩放关系.
主要成果:
- 开发了新的构成性规律,统一了类风学反应.
- 引入了一个基于粒子速度波动的新无维数.
- 从均和不均的模拟中实现数据崩.
结论:
- 新的框架准确地预测了稳态速度,应力和体积分数场.
- 这有助于理解和预测复杂流程中密度悬浮的行为.
相关概念视频
Newtonian Fluid: Problem Solving
221
Newtonian fluids exhibit a constant viscosity, meaning their shear stress and shear strain rate are directly proportional. This property ensures a predictable and stable response to applied forces, maintaining a linear relationship between force and flow. Examples include water, air, and light oils, consistently demonstrating this proportional behavior regardless of external conditions.
A velocity gradient forms within the fluid when a Newtonian fluid is placed between two parallel plates, with...
A velocity gradient forms within the fluid when a Newtonian fluid is placed between two parallel plates, with...
221
Navier–Stokes Equations
489
For incompressible Newtonian fluids, where density remains constant, stresses show a linear relationship with the deformation rate, defined by normal and shear stresses. Normal stresses depend on the pressure exerted on the fluid and the rate of deformation in specific directions, which determines how fluid flows under varying pressures. Shear stresses, on the other hand, act tangentially across fluid layers. They explain how adjacent fluid layers slide relative to one another, connecting...
489
Viscosity
5.9K
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...
5.9K
Typical Model Studies
358
Fluid mechanics model studies often utilize scaled-down systems to predict fluid behavior in full-scale environments, such as river flows, dam spillways, and structures interacting with open surfaces. Maintaining Froude number similarity in river models is crucial, as it replicates surface flow features like wave patterns and velocities.
358
Euler's Equations of Motion
452
In fluid mechanics, shear stresses arise from viscosity, which represents a fluid's internal resistance to deformation. For low-viscosity fluids, like water, these stresses are minimal, simplifying flow analysis by allowing the fluid to be treated as inviscid, or frictionless. In an inviscid fluid, shear stresses are absent, leaving only normal stresses, which act perpendicularly to fluid elements. Notably, pressure — defined as the negative of the normal stress — remains...
452
Couette Flow
262
Couette flow represents the flow of fluid between two parallel plates, with one plate fixed and the other moving with a constant velocity. This configuration allows for a simplified analysis using the Navier-Stokes equations, which govern fluid motion under conditions of viscosity and incompressibility. For Couette flow, the assumptions include a steady, laminar, incompressible flow with a zero-pressure gradient in the flow direction. This flow type is beneficial for understanding shear-driven...
262


