The concept of angular momentum for a solid structure is illustrated as the cumulative result of the cross-product of the position vector of the mass element and the cross-product of the body's angular velocity with the position vector.

To put this equation into simpler terms, it can be reconfigured using rectangular coordinates. This involves choosing an alternative set of XYZ axes that are arbitrarily inclined with respect to the reference frame. The process of deriving the rectangular components of angular momentum involves unfolding the cross-product, merging components, and applying the definition of the product of inertia. The equations derived can be further simplified by selecting the XYZ axes in such a way that they create principal axes for the solid structure.

In this specific instance, the rectangular components of angular momentum are articulated in relation to the principal moments of inertia about the XYZ axes. Each component of angular momentum is distinct from the others and adheres independently to the principle of conservation of angular momentum. This means that each individual component does not influence the others and maintains its momentum separately. This approach provides a more comprehensive understanding of the dynamics of a rigid body in motion, enabling a more accurate prediction of its movement and behavior under various conditions.

Tags
Angular MomentumPrincipal AxesInertiaPosition VectorAngular VelocityCross productXYZ AxesProduct Of InertiaConservation Of Angular MomentumRigid Body DynamicsMotion PredictionRectangular Components

Do Capítulo 16:

article

Now Playing

16.5 : Angular Momentum and Principle Axes of Inertia

3-Dimensional Kinetics of a Rigid Body

123 Visualizações

article

16.1 : Momentos e produto da inércia

3-Dimensional Kinetics of a Rigid Body

271 Visualizações

article

16.2 : Tensor de inércia

3-Dimensional Kinetics of a Rigid Body

180 Visualizações

article

16.3 : Momento de inércia em torno de um eixo arbitrário

3-Dimensional Kinetics of a Rigid Body

167 Visualizações

article

16.4 : Momento angular em torno de um eixo arbitrário

3-Dimensional Kinetics of a Rigid Body

112 Visualizações

article

16.6 : Princípio do Impulso e Momento

3-Dimensional Kinetics of a Rigid Body

87 Visualizações

article

16.7 : Energia cinética para um corpo rígido

3-Dimensional Kinetics of a Rigid Body

122 Visualizações

article

16.8 : Equação de movimento para um corpo rígido

3-Dimensional Kinetics of a Rigid Body

164 Visualizações

article

16.9 : Equações de movimento de Euler

3-Dimensional Kinetics of a Rigid Body

130 Visualizações

article

16.10 : Movimento livre de torque

3-Dimensional Kinetics of a Rigid Body

344 Visualizações

JoVE Logo

Privacidade

Termos de uso

Políticas

Pesquisa

Educação

SOBRE A JoVE

Copyright © 2025 MyJoVE Corporation. Todos os direitos reservados