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相关概念视频

Boundary Layer Characteristics01:18

Boundary Layer Characteristics

58
When a fluid encounters a solid surface, a boundary layer forms due to the interaction between the fluid's motion and the stationary surface. This phenomenon is characterized by a thin region adjacent to the surface where viscous forces dominate, influencing the fluid's velocity profile. The development of the boundary layer begins at the leading edge of the surface and evolves as the fluid moves downstream.As the fluid flows over the surface, friction between the fluid and the wall slows down...
58
Typical Model Studies01:30

Typical Model Studies

350
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.
350
Deriving the Speed of Sound in a Liquid01:09

Deriving the Speed of Sound in a Liquid

486
As with waves on a string, the speed of sound or a mechanical wave in a fluid depends on the fluid's elastic modulus and inertia. The two relevant physical quantities are the bulk modulus and the density of the material. Indeed, it turns out that the relationship between speed and the bulk modulus and density in fluids is the same as that between the speed and the Young's modulus and density in solids.
The speed of sound in fluids can be derived by considering a mechanical wave...
486
Modeling and Similitude01:12

Modeling and Similitude

257
Scaled modeling is a fundamental technique in engineering, enabling the study of large and complex systems by creating smaller, manageable replicas that recreate critical characteristics of the original. In hydrology and civil infrastructure, for example, scaled models of dams help analyze water flow, turbulence, and pressure. This method allows for accurate predictions of real-world behavior within a controlled environment, significantly reducing the cost and time involved in full-scale...
257
Turbulent Flow01:24

Turbulent Flow

158
Turbulent flow is characterized by unpredictable fluctuations in velocity and pressure, which result in a chaotic fluid movement distinct from the orderly patterns of laminar flow. While laminar flow is governed by smooth, parallel layers with minimal mixing, turbulent flow exhibits highly irregular, three-dimensional patterns. This behavior arises due to instabilities in the fluid's velocity profile, and amplifies as the flow velocity increases. Minor disturbances, known as turbulent...
158
Laminar and Turbulent Flow01:07

Laminar and Turbulent Flow

8.5K
Fluid dynamics is the study of fluids in motion. Velocity vectors are often used to illustrate fluid motion in applications like meteorology. For example, wind—the fluid motion of air in the atmosphere—can be represented by vectors indicating the speed and direction of the wind at any given point on a map. Another method for representing fluid motion is a streamline. A streamline represents the path of a small volume of fluid as it flows. When the flow pattern changes with time, the...
8.5K

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相关实验视频

Updated: Jun 16, 2025

Simultaneous Measurement of Turbulence and Particle Kinematics Using Flow Imaging Techniques
10:53

Simultaneous Measurement of Turbulence and Particle Kinematics Using Flow Imaging Techniques

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基于探测数据的混合层流结构的参数建模.

Ying Liu, Tao Luo, Kaixuan Yang

    Optics express
    |June 14, 2025
    PubMed
    概括

    这项研究分析了中国的光学流.

    科学领域:

    • 大气科学 大气科学
    • 光学物理学的光学物理学

    背景情况:

    • 大气边界层中的光学流影响了各种应用.
    • 了解其垂直特征对于性能优化至关重要.

    研究的目的:

    • 为了研究光学流的垂直特征.
    • 开发和验证流结构的参数化模型.
    • 评估垂直分辨率对折射率结构常数 (Cn2) 估计的影响.

    主要方法:

    • 利用来自中国三个不同地区的高分辨率无线电探测器数据.
    • 开发了一种混合层流结构参数化模型.
    • 与10米,50米和100米分辨率的模型进行比较.
    • 提出了一种双模型框架,将局部流的逻辑正则和多项式方法集成在一起.

    主要成果:

    • 验证了对流的指数衰变模型的稳定性.
    • 观察到流减弱的区域变化 (h^-4/3与h^-2衰变模式).
    • 证明了双模型框架在引进区域的光学流的表征方面的有效性.

    结论:

    • 区域大气条件显著影响光学流衰变.

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  • 拟议的双模型框架准确量化了异常Cn2增强.
  • 这些发现支持了自适应光学,激光通信和大气建模方面的进展.