光刺激的螺旋用于即时可视化热场分布和流动模式
Yahui Chen1, Yefei Liu1, Sheng Lu1
1State Key Laboratory of Materials-Oriented Chemical Engineering, College of Chemical Engineering, Jiangsu National Synergetic Innovation Center for Advanced Materials (SICAM), Nanjing Tech University, Nanjing 211816, China.
Journal of the American Chemical Society
|October 30, 2020
概括
研究人员使用一种新型光刺激指标 - - 含本佐醇单元的螺旋 (BS1-SP) 来可视化热毛细管对流. 这种方法提供了高分辨率,实时了解蒸发系统中的温度和流量模式.
科学领域:
- 流体动力学
- 热水力学
- 材料科学
背景情况:
- 热毛细管对流在基础和工业应用中至关重要.
- 在对流过程中实时监测流需要先进的成像技术.
研究的目的:
- 开发和使用一种用于可视化热毛细管对流的新型成像工具.
- 在观察表面动态时实现高空间和时间分辨率.
主要方法:
- 使用含有西的螺旋 (BS1-SP) 作为光刺激指标.
- 同时可视化挥发性溶剂表面的瞬间温度分布和流动模式.
主要成果:
- 在成像对流动学中实现了高空间和时间分辨率.
- 在实时视觉化了温度和流量模式的相互作用.
结论:
- 在蒸发系统中,BS1-SP是研究动态自我组织的有效工具.
- 开发的方法为热水力学提供了有价值的见解,并为流动行为分析提供了新的方法.
相关概念视频
Heating and Cooling Curves
29.1K
When a substance—isolated from its environment—is subjected to heat changes, corresponding changes in temperature and phase of the substance is observed; this is graphically represented by heating and cooling curves.
For instance, the addition of heat raises the temperature of a solid; the amount of heat absorbed depends on the heat capacity of the solid (q = mcsolidΔT). According to thermochemistry, the relation between the amount of heat absorbed or released by a substance,...
For instance, the addition of heat raises the temperature of a solid; the amount of heat absorbed depends on the heat capacity of the solid (q = mcsolidΔT). According to thermochemistry, the relation between the amount of heat absorbed or released by a substance,...
29.1K
Laminar and Turbulent Flow
12.2K
Fluid dynamics is the study of fluids in motion. Velocity vectors are often used to illustrate fluid motion in applications like meteorology. For example, wind—the fluid motion of air in the atmosphere—can be represented by vectors indicating the speed and direction of the wind at any given point on a map. Another method for representing fluid motion is a streamline. A streamline represents the path of a small volume of fluid as it flows. When the flow pattern changes with time, the...
12.2K
Heat Flow and Specific Heat
8.0K
Heat is a type of energy transfer that is caused by a temperature difference, and it can change the temperature of an object. Since heat is a form of energy, its SI unit is the joule (J). Another common unit of energy often used for heat is the calorie (cal), which is defined as the energy needed to change the temperature of 1 g of water by 1 °C, specifically between 14.5 °C and 15.5 °C, since the energy needed shows a slight temperature dependence. Another commonly used unit is...
8.0K
Irrotational Flow
1.3K
Irrotational flow is characterized by fluid motion where particles do not rotate around their axes, resulting in zero vorticity. For a flow to be irrotational, the curl of the velocity field must be zero. This imposes specific conditions on velocity gradients. For instance, to maintain zero rotation about the z-axis, the gradient condition:
1.3K
Steady, Laminar Flow in Circular Tubes
2.0K
Hagen-Poiseuille flow describes a viscous fluid's steady, incompressible flow through a cylindrical tube with a constant radius R. This flow profile is often applied to understand fluid transport in narrow channels, such as capillaries. It serves as a foundational example of laminar flow. In this model, cylindrical coordinates (r,θ,z) are used to describe the radial (r), angular (θ), and axial (z) dimensions within the tube. For Hagen-Poiseuille flow, the velocity profile is purely...
2.0K
Turbulent Flow
964
Turbulent flow is characterized by unpredictable fluctuations in velocity and pressure, which result in a chaotic fluid movement distinct from the orderly patterns of laminar flow. While laminar flow is governed by smooth, parallel layers with minimal mixing, turbulent flow exhibits highly irregular, three-dimensional patterns. This behavior arises due to instabilities in the fluid's velocity profile, and amplifies as the flow velocity increases. Minor disturbances, known as turbulent...
964


