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相关概念视频

Deriving the Speed of Sound in a Liquid01:09

Deriving the Speed of Sound in a Liquid

515
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...
515
Measurement of Fluid Pressure01:16

Measurement of Fluid Pressure

216
Fluid pressure is commonly measured using devices called manometers, which rely on liquid columns to indicate pressure differences. The height of a liquid column in a manometer reflects the pressure exerted by the fluid, providing a simple yet effective means of measurement. Different types of manometers serve specific purposes based on their configurations and the type of fluids involved.
A basic form of manometer is the piezometer, a vertical tube open at the top and filled with the same...
216
Viscosity of Fluid01:19

Viscosity of Fluid

437
Viscosity measures the resistance a fluid offers to flow and deformation. It results from internal friction between layers of fluid moving relative to one another. Dynamic viscosity, denoted by the Greek letter mu (μ), quantifies the force needed to move one fluid layer over another. For Newtonian fluids like water and air, the relationship between the shearing stress and the rate of shearing strain is linear, meaning their viscosity remains constant regardless of the applied stress.
437
Viscosity01:17

Viscosity

5.9K
When water is poured into a glass, it falls freely and quickly, whereas if honey or maple syrup is poured over a pancake, it flows slowly and sticks to the surface of the container. This difference in the flow of different kinds of liquids arises due to the fluid friction between the liquid layers and the liquid and the surrounding material. This property of fluids is called fluid viscosity. In this example, water has a lower viscosity than honey and maple syrup.
The SI unit of viscosity is...
5.9K

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相关实验视频

Updated: Jul 15, 2025

Experimental Measurement of Settling Velocity of Spherical Particles in Unconfined and Confined Surfactant-based Shear Thinning Viscoelastic Fluids
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Experimental Measurement of Settling Velocity of Spherical Particles in Unconfined and Confined Surfactant-based Shear Thinning Viscoelastic Fluids

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通过在泡柱中实地测量粘度来表征水性泡.

Wei Yu1, Jack Hau Yung Lo1, Mazen Yousef Kanj1

  • 1Center for Integrative Petroleum Research (CIPR), College of Petroleum Engineering & Geosciences, King Fahd University of Petroleum & Minerals, Dhahran 31261, Saudi Arabia.

Langmuir : the ACS journal of surfaces and colloids
|October 4, 2023
PubMed
概括

这项研究引入了一种新方法,用于在标准泡柱测试中与泡高度一起测量泡粘度. 这种技术提供了一种更敏感和更有效的方法来描述泡的稳定性和老化行为.

科学领域:

  • 合体和表面科学科学
  • 材料科学 材料科学 材料科学
  • 类风病学 类风病学 类风病学

背景情况:

  • 在食品加工,化品和石油生产等各种行业中,泡的表征至关重要.
  • 传统的泡柱测试缺乏全面泡分析所需的深度.
  • 在标准测试中测量泡粘度一直是一个长期存在的挑战.

研究的目的:

  • 开发和验证一种用于同时在现场测量泡粘度和泡高度的方法.
  • 通过这种综合方法来研究水性泡的老化行为.
  • 在泡衰变过程中将泡结构,高度和粘度关联起来.

主要方法:

  • 将振动粘度计集成到标准泡柱测试设置中.
  • 在泡衰变期间同时监测泡高度和泡粘度.
  • 使用新方法分析泡老化动态和稳定性.

主要成果:

  • 在早期泡衰变期间,在泡高度变化之前,观察到泡粘度的显著,快速下降.
  • 这种早期的粘度下降归因于泡粗.
  • 与基于高度的测量相比,开发的方法显示出更高的灵敏度和时间效率.

结论:

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  • 这种新方法提供了对泡稳定性和老化的更全面的了解.
  • 同时的粘度和高度测量提供了比单独的泡高度更深入的见解.
  • 这种技术对于表征各种表面活性剂和气体成分的泡是有效的.