在超临界压力下的伪沸过程中产生泡状核的临界值
Ming Dong1, Jinliang Xu1,2, Yan Wang3
1Beijing Key Laboratory of Multiphase Flow and Heat Transfer for Low Grade Energy Utilization, North China Electric Power University, Beijing 102206, China.
Langmuir : the ACS journal of surfaces and colloids
|June 11, 2024
概括
研究人员确定了原子级超临界伪沸的临界能量值. 这一发现通过分析动态和潜在能量动态,将亚临界和超临界沸现象联系起来.
科学领域:
- 热力学和流体力学 热力学和流体力学
- 材料科学和纳米技术材料科学和纳米技术
背景情况:
- 超临界的伪沸,通过宏观观察,涉及蒸发式和沸式的热传递.
- 之前的研究已经通过实验量化了它对传热率的贡献.
研究的目的:
- 探讨在超临界压力下产生气泡状核的原子尺度临界值.
- 使用总能量 (动力 + 潜力) 和分子动力学模拟来描述这个值.
主要方法:
- 分子动力学模拟的流体加热的固体壁在流体温度以上.
- 通过可移动的活塞壁来控制流体压力.
- 对压力,不均加热和表面湿透效应的研究.
主要成果:
- 确定了超临界伪沸的新标准:的总能量 (Te) >0.012 eV在8 MPa时.
- 临界值随着压力增加而增加.
- 不均的加热和表面湿度会影响核化部位和传热方式 (伪膜或伪核),但不会影响临界值.
结论:
- 在超临界压力下的伪沸缺乏表面张力,导致不规则的泡状结构.
- 该研究通过通过动能和潜在能量竞争来解释伪沸,将亚临界和超临界沸联系起来.
- 提供了对不同压力状态的相变现象的基本理解.
更多相关视频
10:06Microfluidic Fabrication Techniques for High-Pressure Testing of Microscale Supercritical CO2 Foam Transport in Fractured Unconventional Reservoirs
Published on: July 2, 2020
6.8K
08:19Induction of Microstreaming by Nonspherical Bubble Oscillations in an Acoustic Levitation System
Published on: May 9, 2021
2.2K
相关概念视频
pV-Diagrams
4.1K
The pV diagram, which is a graph of pressure versus volume of the gas under study, is helpful in describing certain aspects of the substance. When the substance behaves like an ideal gas, the ideal gas equation describes the relationship between its pressure and volume. On a pV diagram, it is common to plot an isotherm, which is a curve showing p as a function of V with the number of molecules and the temperature fixed. Then, for an ideal gas, the product of the pressure of the gas and its...
4.1K
Excess Pressure Inside a Drop and a Bubble
1.6K
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.
1.6K
Vapor Pressure
34.8K
When a liquid vaporizes in a closed container, gas molecules cannot escape. As these gas phase molecules move randomly about, they will occasionally collide with the surface of the condensed phase, and in some cases, these collisions will result in the molecules re-entering the condensed phase. The change from the gas phase to the liquid is called condensation. When the rate of condensation becomes equal to the rate of vaporization, neither the amount of the liquid nor the amount of the vapor...
34.8K
Phase Diagram
5.8K
The phase of a given substance depends on the pressure and temperature. Thus, plots of pressure versus temperature showing the phase in each region provide considerable insights into the thermal properties of substances. Such plots are known as phase diagrams. For instance, in the phase diagram for water (Figure 1), the solid curve boundaries between the phases indicate phase transitions (i.e., temperatures and pressures at which the phases coexist).
5.8K
Vapor Pressure of Fluid
1.3K
The vapor pressure of a fluid is a crucial concept in fluid mechanics, influencing phenomena such as boiling and cavitation. Vapor pressure refers to the pressure exerted by a vapor at a state of thermodynamic equilibrium with its corresponding liquid phase at a specific temperature. It represents the tendency of molecules to escape from the fluid surface into the vapor phase.
When a liquid is placed in a closed container with a small air space, and the space is evacuated, vapor molecules will...
When a liquid is placed in a closed container with a small air space, and the space is evacuated, vapor molecules will...
1.3K
Vapor Pressure Lowering
26.5K
The equilibrium vapor pressure of a liquid is the pressure exerted by its gaseous phase when vaporization and condensation are occurring at equal rates:
Dissolving a nonvolatile substance in volatile liquid results in a lowering of the liquid’s vapor pressure. This phenomenon can be explained by considering the effect of added solute molecules on the liquid's vaporization and condensation processes. To vaporize, solvent molecules must be present at the surface of the solution....
Dissolving a nonvolatile substance in volatile liquid results in a lowering of the liquid’s vapor pressure. This phenomenon can be explained by considering the effect of added solute molecules on the liquid's vaporization and condensation processes. To vaporize, solvent molecules must be present at the surface of the solution....
26.5K
