Войдите в систему

Viscous forces, like friction, are intermolecular forces that resist the relative motion of molecules over each other. When a solid body moves through a liquid, viscous forces drag it in the opposite direction. The force's magnitude depends on the solid's shape and size, as well as its speed and the liquid's coefficient of viscosity, density and temperature.

The expression for the force on a solid spherical object in a fluid is called Stokes' law. Stokes' law is valid only for low Reynolds number fluids, meaning that it is applicable only when the fluid flow is laminar and not turbulent. The force on the solid object is experimentally found to be proportional to the object's radius and speed, along with the liquid's viscosity coefficient. The order of dependence of each variable can be obtained through dimensional analysis. The proportionality constant is obtained experimentally.

The motion of a spherical solid through a liquid can be analyzed using Newton's second law of motion. Initially, there is no viscous drag as the solid is at rest. The net downward force, which is given by the difference in its weight and the liquid's buoyant force, increases its speed downward. However, increasing speed increases the viscous drag. Once there is significant upward viscous drag, there is no net force due to the three forces balancing each other out: the downward weight, the upward buoyancy and the upward viscous drag. The solid then reaches a steady speed, which is called the terminal velocity.

Теги
Stokes LawViscous ForcesFrictionSolid BodyLiquidCoefficient Of ViscosityReynolds NumberLaminar FlowTurbulent FlowDrag ForceBuoyant ForceTerminal VelocityDimensional AnalysisNewton s Second Law

Из главы 13:

article

Now Playing

13.24 : Stokes' Law

Fluid Mechanics

871 Просмотры

article

13.1 : Характеристики жидкостей

Fluid Mechanics

3.4K Просмотры

article

13.2 : Плотность

Fluid Mechanics

11.7K Просмотры

article

13.3 : Давление жидкостей

Fluid Mechanics

12.2K Просмотры

article

13.4 : Изменение атмосферного давления

Fluid Mechanics

1.8K Просмотры

article

13.5 : Закон Паскаля

Fluid Mechanics

7.7K Просмотры

article

13.6 : Применение закона Паскаля

Fluid Mechanics

7.6K Просмотры

article

13.7 : Манометры

Fluid Mechanics

2.7K Просмотры

article

13.8 : Плавучесть

Fluid Mechanics

6.0K Просмотры

article

13.9 : Принцип Архимеда

Fluid Mechanics

7.4K Просмотры

article

13.10 : Плотность и принцип Архимеда

Fluid Mechanics

6.4K Просмотры

article

13.11 : Ускоряющие жидкости

Fluid Mechanics

947 Просмотры

article

13.12 : Поверхностное натяжение и поверхностная энергия

Fluid Mechanics

1.2K Просмотры

article

13.13 : Избыточное давление внутри капли и пузыря

Fluid Mechanics

1.5K Просмотры

article

13.14 : Угол контакта

Fluid Mechanics

11.3K Просмотры

See More

JoVE Logo

Исследования

Образование

О JoVE

Авторские права © 2025 MyJoVE Corporation. Все права защищены