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Travelling Waves01:04

Travelling Waves

A wave is a disturbance that propagates from its source, repeating itself periodically, and is typically associated with simple harmonic motion. Mechanical waves are governed by Newton's laws and require a medium to travel. A medium is a substance in which a mechanical wave propagates, and the medium produces an elastic restoring force when it is deformed.
Water waves, sound waves, and seismic waves are some examples of mechanical waves. For water waves, the wave propagation medium is water;...
Propagation of Waves01:07

Propagation of Waves

When a wave propagates from one medium to another, part of it may get reflected in the first medium, and part of it may get transmitted to the second medium. In such a case, the interface of the two mediums can be considered as a boundary that is neither fixed nor free.
Consider a scenario where a wave propagates from a string of low linear mass density to a string of high linear mass density. In such a case, the reflected wave is out of phase with respect to the incident wave, however the...
Shock Waves01:16

Shock Waves

While deriving the Doppler formula for the observed frequency of a sound wave, it is assumed that the speed of sound in the medium is greater than the source's speed through it. When this condition is breached, a shock wave occurs.
When the source's speed approaches the speed of sound, constructive interference between successive wavefronts emitted by the source occurs immediately behind it. Initially, scientists believed that this constructive interference would result in such high pressures...
Standing Waves in a Cavity01:28

Standing Waves in a Cavity

A household microwave and lasers are examples of standing electromagnetic waves in a cavity. When two conducting metal plates are placed parallel at the nodal planes, it creates a cavity where standing waves are formed. The cavity between the two planes is analogous to a stretched string held at the points x = 0 and x = L. Here, the distance 'L' between the two planes must be an integer multiple of half of the wavelength. The wavelengths that satisfy this condition are given by:
Standing Waves01:17

Standing Waves

Sometimes waves do not seem to move; rather, they just vibrate in place. Unmoving waves can be seen on the surface of a glass of milk kept in a refrigerator, which is one example of standing waves. Vibrations from the refrigerator motor create waves on the milk that oscillate up and down but do not seem to move across the surface. These waves are formed or created by the superposition of two or more identical moving waves in opposite directions. The waves move through each other, with their...
Interference and Superposition of Waves01:07

Interference and Superposition of Waves

When two waves of the same nature occur in the same region simultaneously, they result in interference. Interference of waves implies that the net effect of the waves is the sum of the individual waves' effects. However, it does not imply that the individual waves affect the propagation of other waves.
Interference occurs in mechanical waves, such as sound waves, waves on a string, and surface water waves. Mechanical waves correspond to the physical displacement of particles. Hence,...

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Updated: Jul 12, 2026

Visualization of Flow Field Around a Vibrating Pipeline Within an Equilibrium Scour Hole
09:37

Visualization of Flow Field Around a Vibrating Pipeline Within an Equilibrium Scour Hole

Published on: August 26, 2019

"内部波"沿着海底峡谷前进

F P Shepard, N F Marshall, P A McLoughlin

    Science (New York, N.Y.)
    |January 18, 1974
    PubMed
    概括

    在加利福尼亚州沿岸的海底峡谷中观察到交替电流以可预测的方式移动. 这些模式,可能是由内部波引起的,以25至88厘米/秒的速度行驶.

    科学领域:

    • 海洋学 海洋学 海洋学
    • 海洋地质学海洋地质学

    背景情况:

    • 海底峡谷是大陆边缘的重要地质特征.
    • 了解这些峡谷中的当前动态对于沉积物运输和生态系统研究至关重要.

    研究的目的:

    • 为了研究加利福尼亚海域海底峡谷轴上的电流的模式和传播.
    • 为了确定这些观察到的电流模式的速度和方向性.

    主要方法:

    • 追踪上下峡谷交替的电流模式.
    • 对沿海峡谷内的不同站点当前到达时间的分析.
    • 对观察到的电流模式的传播速度的估计.

    主要成果:

    • 在海底峡谷轴线上成功追踪了交流电流模式.
    • 当前模式后来到达了靠近峡谷头的站点.
    • 在位于岛屿之间的峡谷中,图案沿峡谷轴传播.
    • 传播速度在每秒25至88厘米之间.

    结论:

    • 观察到的电流模式很可能是由内部波驱动的.
    • 内部波在加利福尼亚州海底峡谷的水力动力学中发挥着重要作用.

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    Measurements of Waves in a Wind-wave Tank Under Steady and Time-varying Wind Forcing
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    Data Processing Methods for 3D Seismic Imaging of Subsurface Volcanoes: Applications to the Tarim Flood Basalt
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    Measurements of Waves in a Wind-wave Tank Under Steady and Time-varying Wind Forcing
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    Measurements of Waves in a Wind-wave Tank Under Steady and Time-varying Wind Forcing

    Published on: February 13, 2018