倒空的瓶子是否会出现液体自转现象?

IF 3.6 2区 工程技术 Q1 MECHANICS International Journal of Multiphase Flow Pub Date : 2024-08-30 DOI:10.1016/j.ijmultiphaseflow.2024.104976
Malyadeep Bhattacharya , Rajaram Lakkaraju
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引用次数: 0

摘要

瓶颈直径较小的倒置液体瓶通过在瓶颈处周期性地吸入气泡来排空,随后液体排出,这一过程被称为 "咕噜咕噜"。相反,瓶颈直径大的倒置液瓶中,一个大的泰勒气泡上升到空气-水界面,随后界面瞬间坍塌,液体无序排出。我们通过数值计算发现,尽管没有施加初始漩涡,但在排空瓶中,液体在时间演化过程中会因搅动运动而形成螺旋状大尺度旋转结构。大颈瓶内的诱导结构很强,瓶颈附近的循环强度最大。当瓶颈直径较小时,螺旋结构的强度会降低,并保留了纯粹的振荡 "咕噜 "模式。大颈瓶颈部附近的高循环强度会导致液体加速,这也是现有液体排放经验模型偏离实验观察结果的原因。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Do emptying bottles show self-induced liquid rotation?

An inverted liquid bottle with a small neck diameter empties through periodic admission of air bubbles at the neck, followed by liquid discharge, a process termed ‘glugging’. In contrast, a large Taylor bubble rises to the air–water interface in the bottle for large neck diameters, followed by an instant interface collapse and a chaotic liquid discharge. We numerically find that a spiral large-scale rotating structure due to churning motion develops in the liquid during time evolution in an emptying bottle, though an initial swirl is not imposed. The induced structure is strong for a large neck bottle, and the circulation strength is maximum near the neck region. The spiral structure’s strength decreases for small neck diameters, and a pure oscillatory ‘glugging’ mode is preserved. The high circulation strength near the neck region for the large neck bottle causes liquid to accelerate and is the reason for the existing empirical models on liquid discharge to deviate from experimental observations.

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来源期刊
CiteScore
7.30
自引率
10.50%
发文量
244
审稿时长
4 months
期刊介绍: The International Journal of Multiphase Flow publishes analytical, numerical and experimental articles of lasting interest. The scope of the journal includes all aspects of mass, momentum and energy exchange phenomena among different phases such as occur in disperse flows, gas–liquid and liquid–liquid flows, flows in porous media, boiling, granular flows and others. The journal publishes full papers, brief communications and conference announcements.
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