在微重力 regolith 中旋转入侵阻力的 Froude 缩放
Tongge Wen1,2, Sudeshna Roy3, Thorsten Pöschel3
1Xi'an Jiaotong University, Department of Engineering Mechanics, State Key Laboratory for Strength and Vibration of Mechanical Structures, School of Aerospace Engineering, Xi'an 710049, China.
Physical review. E
|February 20, 2026
概括
用模拟来研究对颗粒状介质的旋转入侵,这对于太空任务至关重要. 旋转通过调动粒子显著降低阻力,在较弱的重力中效应得到放大.
科学领域:
- 地质物理学 地质物理学
- 行星科学 行星科学
- 计算力学 计算力学 计算力学
背景情况:
- 旋转入侵颗粒介质对于小体采样任务至关重要.
- 与非旋转入侵方法相比,人们对这种方法的理解较少.
研究的目的:
- 研究在颗粒状介质中旋转的圆柱体透仪的阻力.
- 分析旋转速度 (弗劳德数) 和凝聚力对抗入侵阻力的影响.
- 检查重力对旋转入侵动态的影响.
主要方法:
- 在模拟中采用了GPU加速离散元件方法 (DEM).
- 模拟了一个旋转的圆柱体透仪入颗粒状材料.
- 变化的弗劳德数,凝聚力和重力来观察电阻变化.
主要成果:
- 旋转会破坏静止区,诱导剪切扩张和调动粒子.
- 阻力随着负力法关系的Froude数的增加而下降.
- 凝聚力将响应转移到弹性塑料,导致电阻和.
- 减小重力会放大旋转效应和深度依赖.
结论:
- 与准静态方法相比,旋转入侵显著改变颗粒电阻.
- 结果提供了对不同旋转速度和重力下的颗粒力学的见解.
- 这项研究有助于理解和设计用于太空探索的采样工具,特别是在微重力环境中.
相关概念视频
Rocket Propulsion in Gravitational Field - I
Rockets range in size from small fireworks that ordinary people use to the enormous Saturn V that once propelled massive payloads toward the Moon. The propulsion of all rockets, jet engines, deflating balloons, and even squids and octopuses are explained by the same physical principle: Newton's third law of motion. The matter is forcefully ejected from a system, producing an equal and opposite reaction on what remains.
The motion of a rocket in space changes its velocity (and hence its...
The motion of a rocket in space changes its velocity (and hence its...
Rocket Propulsion in Gravitational Field - II
A rocket's velocity in the presence of a gravitational field is decreased by the amount of force exerted by Earth's gravitational field, which opposes the motion of the rocket. If we consider thrust, that is, the force exerted on a rocket by the exhaust gases, then a rocket's thrust is greater in outer space than in the atmosphere or on a launch pad. In fact, gases are easier to expel in a vacuum.
A rocket's acceleration depends on three major factors, consistent with the equation for the...
A rocket's acceleration depends on three major factors, consistent with the equation for the...
Acceleration due to Gravity on Earth
According to Newton's law of gravitation, the gravitational force on a body is proportional to its mass. According to Newton's second law of motion, the acceleration produced by an external force is inversely proportional to the force. Hence, the acceleration of an object under an external force of gravitation is independent of its mass.
The acceleration of an object close to the Earth, because of the Earth's gravitational pull, is called the acceleration due to gravity. It is always directed...
The acceleration of an object close to the Earth, because of the Earth's gravitational pull, is called the acceleration due to gravity. It is always directed...
Acceleration due to Gravity on Other Planets
The gravitational acceleration of an object near the Earth's surface is called the acceleration due to gravity. It can be measured by conducting simple experiments on Earth. However, such an experiment is impossible to conduct on the surface of other planets.
Astronomical observations are thus used to measure the acceleration due to gravity on other planets. This can be determined by observing the effect of a planet's gravity on objects close to it. The crucial factor that helps in this...
Astronomical observations are thus used to measure the acceleration due to gravity on other planets. This can be determined by observing the effect of a planet's gravity on objects close to it. The crucial factor that helps in this...
Variation in Acceleration due to Gravity near the Earth's Surface
An object's apparent weight is its weight measured by a spring balance at its location. It is different from its true weight, the force with which the Earth pulls it, because of the Earth's rotation. Mathematically, an object's apparent weight equals its true weight minus the centripetal force that keeps it in a circular motion along with the Earth's surface every 24 hours.
The difference between the true and apparent weights is proportional to the square of the Earth's angular speed. Since the...
The difference between the true and apparent weights is proportional to the square of the Earth's angular speed. Since the...
Equation of Motion: General Plane motion - Problem Solving
Consider a lawn roller with a mass of 100 kg, a radius of 0.2 meters, and a radius of gyration of 0.15 meters. A force of 200 N is applied to this roller, angled at 60 degrees from the horizontal plane. What will be the angular acceleration of the lawn roller?
The friction between the roller and the ground is characterized by two coefficients. The static friction coefficient is 0.15, while the kinetic friction coefficient is 0.1. These values are crucial in understanding the interaction between...
The friction between the roller and the ground is characterized by two coefficients. The static friction coefficient is 0.15, while the kinetic friction coefficient is 0.1. These values are crucial in understanding the interaction between...


