在水和砂中的气体通道之间的相互作用.
Germán Varas1, Gabriel Ramos2,3, Valérie Vidal4
1Instituto de Fisica, <a href="https://ror.org/02cafbr77">Pontificia Universidad Católica de Valparaiso (PUCV)</a>, Avenida Universidad 330, Valparaiso, Chile.
Physical review. E
|September 19, 2024
概括
在Hele-Shaw细胞中双重注入空气会产生复杂的泡相互作用. 最佳的相位分布取决于相互作用的可变性,而不仅仅是强度,影响工业空气散射和反应器.
科学领域:
- 流体动力学 流体动力学
- 多相流的流量是多相的.
背景情况:
- 垂直的Hele-Shaw细胞用于研究液体位移.
- 气-液体或气-固体相互作用在工业过程中至关重要,如空气燃烧和催化反应器.
研究的目的:
- 研究由同时双点空气注入形成的气体通道之间的相互作用.
- 定义和分析流密度参数,以描述泡相互作用和相位分布.
主要方法:
- 使用垂直的Hele-Shaw电池,同时进行双点空气注入.
- 采用颗粒床运动跟踪的图像分析来定义流密度参数.
- 分析了流密度参数的垂直 (n_{z}) 和水平 (n_{x}) 积累.
主要成果:
- 与单次注射相比,双注射会导致大量的气泡和加剧的空气通道相互作用.
- 确定了与手指到骨折过渡和平均空气通道相互作用相关的特定垂直高度.
- 水平分析 (n_{x}) 量化了流体化区域的重叠.
- 最佳的三相分布与相互作用的可变性比强度更相关.
结论:
- 空气通道相互作用的可变性,而不是强度,是双注射系统中最佳相位分布的关键.
- 结果为优化涉及多相流的工业应用提供了见解,例如空气散热和催化反应器.
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