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相关概念视频

Excess Pressure Inside a Drop and a Bubble01:13

Excess Pressure Inside a Drop and a Bubble

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The shape of a small drop of liquid can be considered spherical, neglecting the effect of gravity. This drop can further be considered as two equal hemispherical drops put together due to surface tension. The forces acting on the spherical drop are due to the pressure of the liquid inside the drop, the pressure due to air outside the drop, and the force due to the surface tension acting on the two hemispherical drops.
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Theories of Dissolution: The Danckwerts' Model and Interfacial Barrier Model01:09

Theories of Dissolution: The Danckwerts' Model and Interfacial Barrier Model

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Various dissolution theories provide insight into the factors that influence the dissolution rate. Danckwerts' Model suggests that turbulence, rather than a stagnant layer, characterizes the dissolution medium at the solid-liquid interface. In this model, the agitated solvent contains macroscopic packets that move to the interface via eddy currents, facilitating the absorption and delivery of the drug to the bulk solution. The regular replenishment of solvent packets maintains the...
440
Surface Tension of Fluid01:22

Surface Tension of Fluid

494
Surface tension is a fundamental property of fluids, occurring at the boundary between a liquid and a gas or between two immiscible liquids. This phenomenon arises from the cohesive forces between molecules at the fluid's surface, creating an effect similar to a stretched elastic membrane. Inside each fluid, molecules are equally attracted in all directions by neighboring molecules, but surface molecules experience a net inward force, resulting in surface tension.
Surface tension varies...
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Couette Flow01:22

Couette Flow

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Couette flow represents the flow of fluid between two parallel plates, with one plate fixed and the other moving with a constant velocity. This configuration allows for a simplified analysis using the Navier-Stokes equations, which govern fluid motion under conditions of viscosity and incompressibility. For Couette flow, the assumptions include a steady, laminar, incompressible flow with a zero-pressure gradient in the flow direction. This flow type is beneficial for understanding shear-driven...
442
Boundary Layer Characteristics01:18

Boundary Layer Characteristics

227
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...
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相关实验视频

Updated: Sep 14, 2025

A Microfluidic System with Surface Patterning for Investigating Cavitation Bubble(s)&#8211;Cell Interaction and the Resultant Bioeffects at the Single-cell Level
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A Microfluidic System with Surface Patterning for Investigating Cavitation Bubble(s)–Cell Interaction and the Resultant Bioeffects at the Single-cell Level

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粒子壁多相相互作用中的化驱动的泡演变和负载机制.

Yuxuan Deng1, Haiting Xi1, Zhentao Gu1

  • 1Bailie School of Petroleum Engineering, Lanzhou City University, Lanzhou 730071, PR China.

Ultrasonics sonochemistry
|July 18, 2025
PubMed
概括

洞穴气泡在颗粒和表面附近崩,产生强烈的压力负荷. 粒子运动和近距离显著改变气泡动力学,影响流体系统中的能量消散和声学排放.

科学领域:

  • 流体动力学 流体动力学
  • 声学 声学 声学 声学
  • 材料科学 材料科学 材料科学

背景情况:

  • 化气泡的动态对于流体中的能量转移至关重要.
  • 气泡,粒子和边界之间的相互作用会影响流体系统的性能.
  • 了解这些相互作用对于声波侵蚀和声化学等应用至关重要.

研究的目的:

  • 为了研究粒子运动和边界近距离对化气泡动态的影响.
  • 分析泡崩期间的能量消耗和负载效应.
  • 阐明化诱导的能量转移的机制.

主要方法:

  • 使用了高分辨率的数值模拟.
  • 模拟涵盖了一系列粒子-泡距离 (0.51.2) 和沉降速度 (0.31.8) 的范围.
  • 分析了气泡的演变,压力负荷和能量转移.

主要成果:

  • 单粒子崩产生高压喷水冲击 (>40MPa).
  • 靠近墙壁的崩产生双模压力反应 (~20MPa),由于泡破裂和微喷射.
  • 较高的粒子速度抑制了喷气形成,但增加了声辐射.

结论:

关键词:
气泡动力学 气泡动力学洞穴形成 洞穴形成能量消耗消耗的能量.粒子-流体相互作用结构性响应 结构性响应

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  • 粒子-泡泡相互作用调节崩行为,并减少边界上的喷水负荷.
  • 边界条件和粒子动力学决定了化能量转移.
  • 结果提供了关于侵蚀和声化学过程中的流体结构相互作用的见解.