相关实验视频
Updated: Jun 27, 2025

05:12
Swimming Performance Assessment in Fishes
Published on: May 20, 2011
25.5K
冲击稳定性作为年轻游泳者100米自由泳表现的决定因素
Daniel López-Plaza1, Carmen Daniela Quero-Calero2,3, Fernando Alacid1
1Department of Education, Health Research Center, University of Almeria, 04120 Almeria, Spain.
Sports (Basel, Switzerland)
|April 26, 2024
概括
与地方级游泳者相比,国家级游泳者表现出优越的冲击稳定性和运动效率. 在年轻的,精英游泳运动员中,保持一致的冲击间时间对于高峰表现至关重要.
科学领域:
- 运动科学 运动科学 运动科学
- 生物力学 生物力学
- 游泳表现分析 游泳表现分析
背景情况:
- 经典的游泳动力学依赖于平均值.
- 冲击稳定性,即冲击时间的一致性,是一个关键的,但较少探索的性能指标.
研究的目的:
- 为了比较全国和地方年轻游泳者之间的中风对中风稳定性.
- 在100米前部爬行测试中分析冲动稳定性和动力学变量之间的关系.
主要方法:
- 32名年轻游泳者 (国家和地方级) 进行了100米最大前爬行测试.
- 侧向视频录制捕获了动力学数据,包括平均速度,中风速率,中风长度和中风指数.
- 长期和短期的中风稳定性被计算为呼吸和非呼吸两侧.
主要成果:
- 在国家和地方游泳者之间发现了经典动力学变量和中风稳定性的显著差异 (p < 0.05).
- 冲击稳定性与速度 (r = -0.61至 -0.749) 和冲击指数 (r = -0.356至 -0.582) 有中等至高的相关性.
结论:
- 冲击稳定性是高水平国家和当地年轻游泳运动员之间的关键差异化因素.
- 增强的冲击稳定性与改善的游泳速度和冲击指数密切相关,突出显示了它对性能的重要性.
相关概念视频
Buoyancy and Stability for Submerged and Floating Bodies
1.8K
In fluid mechanics, buoyancy and stability are key concepts for understanding the behavior of submerged and floating bodies. When a stationary body is fully or partially submerged in a fluid, the fluid exerts a force on the body known as the buoyant force. This force acts vertically upward through a point called the center of buoyancy, which is the center of the displaced fluid volume. According to Archimedes' principle, the magnitude of the buoyant force is equal to the weight of the fluid...
1.8K
Pole and System Stability
287
The transfer function is a fundamental concept representing the ratio of two polynomials. The numerator and denominator encapsulate the system's dynamics. The zeros and poles of this transfer function are critical in determining the system's behavior and stability.
Simple poles are unique roots of the denominator polynomial. Each simple pole corresponds to a distinct solution to the system's characteristic equation, typically resulting in exponential decay terms in the system's...
Simple poles are unique roots of the denominator polynomial. Each simple pole corresponds to a distinct solution to the system's characteristic equation, typically resulting in exponential decay terms in the system's...
287
Steady Flow of a Fluid Stream
283
Consider a control volume, such as a pipe with solid boundaries, through which fluid flows and changes direction due to the impulse exerted by the resulting force from the pipe walls. In steady flow, the mass of fluid entering the control volume at a given time, t, with velocity v1, is equal to the mass leaving after infinitesimal time dt, with velocity v2.
During this process, the momentum of the fluid within the control volume remains constant over the time interval dt. By applying the...
During this process, the momentum of the fluid within the control volume remains constant over the time interval dt. By applying the...
283
Velocity and Acceleration in Steady and Unsteady Flow
105
In fluid mechanics, velocity and acceleration are key concepts for analyzing particle motion in both steady and unsteady flow. Consider a fluid particle moving along a pathline, where its velocity depends on its position and time. The particle's acceleration is obtained by differentiating the velocity with respect to time.
The acceleration can be generalized to any point in the flow, and expressed as components along three perpendicular directions, representing changes in velocity over...
The acceleration can be generalized to any point in the flow, and expressed as components along three perpendicular directions, representing changes in velocity over...
105
Factors Affecting Activity Coefficient
796
The extended Debye-Hückel equation indicates that the activity coefficient of an ion in an aqueous solution at 25°C depends on three partially interdependent properties: the ionic strength of the solution, the charge of the ion, and the ion size.
The activity coefficient value for an ion is close to one when the solution has almost zero ionic strength, i.e., when the solution shows close to ideal behavior. As the ionic strength of the solution increases from 0 to 0.1 mol/L, a...
The activity coefficient value for an ion is close to one when the solution has almost zero ionic strength, i.e., when the solution shows close to ideal behavior. As the ionic strength of the solution increases from 0 to 0.1 mol/L, a...
796

