相关实验视频
Updated: Jul 14, 2026

10:09
Fast Imaging Technique to Study Drop Impact Dynamics of Non-Newtonian Fluids
Published on: March 5, 2014
通过数值模拟了解可变形油滴附近的腔动力学
Deepak K Pandey1, Rupak Kumar1, Vivek V Ranade1
1Multiphase Reactors and Intensification Group, Bernal Institute, University of Limerick, Limerick V94T9PX, Ireland.
Ultrasonics sonochemistry
|March 28, 2025
概括
洞穴形成 洞穴形成
科学领域:
- 流体动力学 流体动力学
- 化学工程是化学工程的组成部分.
- 材料科学是一种材料科学.
背景情况:
- 化是液体-液体乳化的一个关键过程.
- 洞穴的崩会产生微型喷流,这对于乳化至关重要.
- 了解腔液滴相互作用对于优化乳化至关重要.
研究的目的:
- 在水力动力空化装置中对单个腔体-滴滴相互作用进行数值研究.
- 分析滴滴腔大小比率 (β) 和脱离参数 (γ) 对动态的影响.
- 评估这些参数对空洞喷射速度和能量消耗的影响.
主要方法:
- 使用多流体,流体体积 (VOF) 方法的直接数值模拟.
- 模拟了各种空洞-滴滴相互作用的场景.
- 评估的空洞喷射速度 (Umax) 和能量消耗率 (ε).
主要成果:
- 洞喷射速度最初增加,然后随着脱离参数的变化而减少.
- 洞喷射速度随着尺寸比增加而增加和高原.
- 在特定的β和γ值 (例如,β=2.5,γ=0.7和β=5,γ=1.2) 观察到的最大喷气速度.
- 能量消耗率始终在10^8 m2/s3.3左右.
结论:
- 这项研究增强了对乳化过程中空腔-滴滴相互作用的基本理解.
- 结果为开发化诱导的滴滴破裂模型提供了基础.
- 这些发现使化学工业的乳化应用得到了改进.
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