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相关概念视频

Surface Tension of Fluid01:22

Surface Tension of Fluid

213
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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Surface Tension and Surface Energy01:16

Surface Tension and Surface Energy

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When a paint brush is immersed in water, the bristles wave freely inside the water. When it is taken out, the bristles stick together. The reason behind this effect is surface tension.
Consider a beaker filled with liquid. The bulk molecules in the liquid experience equal attractive forces on all sides with the surrounding molecules. However, the surface molecules experience a net attractive force downward due to the bulk molecules. The surface of the liquid behaves like a stretched membrane,...
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Hydrostatic Pressure Force on a Curved Surface01:04

Hydrostatic Pressure Force on a Curved Surface

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Hydrostatic pressure on curved surfaces is a fundamental concept in fluid mechanics with broad applications in the civil engineering field. When fluid is in contact with a curved surface, as in a reservoir, dam, or storage tank, it exerts pressure that varies in magnitude and direction along the curved surface. To assess the total hydrostatic force exerted by the fluid on a curved structure, engineers typically isolate the fluid volume adjacent to the surface and analyze the forces acting on...
1.3K
Fluid Pressure01:14

Fluid Pressure

571
In mechanical engineering, fluid pressure plays a critical role in designing systems that utilize liquid flow, such as hydraulic systems, pumps, and valves. When designing these systems, engineers must ensure they can withstand the forces created by fluid pressure to avoid damage or failure.
According to Pascal's law, a fluid at rest will generate equal pressure in all directions. This pressure is measured as a force per unit area, and its magnitude depends on the fluid's specific...
571
Fluid Pressure over Flat Plate of Variable Width01:02

Fluid Pressure over Flat Plate of Variable Width

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When a flat plate is submerged in a fluid, the fluid exerts pressure on the plate. This pressure can lead to many different phenomena, including drag and buoyancy. To understand the behavior of the fluid over a flat plate of variable width, it is essential to analyze the distribution of the pressure exerted.
The pressure distribution on the plate can be calculated by determining the force that acts on a differential area strip of the plate. Thus, the magnitude of the force is equal to the...
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Pressure of Fluids01:14

Pressure of Fluids

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There are many examples of pressure in fluids in everyday life, such as in relation to blood (high or low blood pressure) and in relation to weather (high- and low-pressure weather systems). A given force can have a significantly different effect, depending on the area over which the force is exerted. For instance, a force applied to an area of 1 mm2 has a pressure that is 100 times greater than the same force applied to an area of 1 cm2. That's why a sharp needle is able to poke through...
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Taking Advantage of Reduced Droplet-surface Interaction to Optimize Transport of Bioanalytes in Digital Microfluidics
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在生物电子充电表面上的流体控制.

Ting Wang1, Jiexin Hou1, Mingmei Wang2

  • 1Department of Mechanical Engineering, Hong Kong Polytechnic University, 999077, Hong Kong, China.

ACS nano
|February 19, 2025
PubMed
概括

生物工程表面模仿自然设计,用于先进的流体控制. 本综述探讨了自然和人工表面上的流体现象,指导着生物灵感工程的未来创新.

科学领域:

  • 表面科学和流体动力学
  • 生物启发工程和材料科学

背景情况:

  • 工程表面对于液体应用至关重要,如自清洁,防冰,热管理和水能收获等.
  • 自然的生物表面,特别是异质的表面,表现出显著的流体行为,为人工设计提供了灵感.

研究的目的:

  • 探索自然生物表面上的流体现象.
  • 对生物工程表面的流体操纵进行审查,重点关注滴滴,液体流和蒸汽流.
  • 讨论表面设计策略,它们的局限性和现实应用的挑战.

主要方法:

  • 在均和异质表面上调节流体运动的基本原理的审查.
  • 对各种流体场景的表面设计策略的分析.
  • 确定生物灵感流体学方面的挑战和未来研究方向.

主要成果:

  • 了解在均表面上的对称流体运动和在异质表面上的定向运动.
  • 对特定流体应用的工程表面的强度和限制的评估.
  • 在实际流体系统中实施工程表面的关键挑战的识别.

结论:

  • 生物启发工程为推进流体科学提供了巨大的潜力.
关键词:
生物启发的表面.滴滴运输是指滴滴运输.流体操纵 流体操纵不同质的表面是不同的.液体运输液体运输的运输方式表面张力 表面张力 表面张力表面的湿透性 表面的湿透性蒸汽运输 蒸汽运输 蒸汽运输

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  • 对生物工程表面的进一步研究可以在各种流体应用中取得突破.
  • 解决现实世界的挑战对于成功部署工程表面至关重要.