首页> 外文会议>The 2001 ASME International Mechanical Engineering Congress and Exposition, 2001, Nov 11-16, 2001, New York, New York >EXPERIMENTAL AND NUMERICAL MODELING OF GASEOUS CARBON DIOXIDE INJECTING INTO AQUEOUS WATER IN BOTTLE FILLER SYSTEM
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EXPERIMENTAL AND NUMERICAL MODELING OF GASEOUS CARBON DIOXIDE INJECTING INTO AQUEOUS WATER IN BOTTLE FILLER SYSTEM

机译:气态二氧化碳注入瓶装填料系统的实验与数值模拟。

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An efficient enhancement of the carbonation rate in the bottle filling stage can substantially increase the production in beverage industries. The bottle filling system currently used in most of the manufacturers can still be improved for a better performance of carbonation by designing the injection tube system. This paper reports on an experimental and numerical mass transfer modeling that can simulate the dissolution process of gaseous carbon dioxide into aqueous water in the bottle filler system. In order to establish the operating characteristics of the bottle filler system, an ordinary tap water and pure carbon dioxide were used as the liquid-gas system. The two-phase numerical modeling was developed that can serve as a framework for the continuous improvement of the design of the carbonation process in the bottle filler system. For an optimal design of CO_2 injection tube and flow conditions, a computational fluid dynamics (CFD) approach is one of the most power tools. However, since only limited experimental data are available in the open literature to verify the computational results, an experiment study was performed to obtain measurements of CO_2 level, temperature, and pressure during the carbonation process in the bottle filled with liquid. Both experimental and numerical studies of various flow condition and different sizes of injection tube are presented in this paper.
机译:在瓶灌装阶段有效提高碳酸化率可以大大提高饮料行业的产量。通过设计注射管系统,仍可以改善当前大多数制造商使用的瓶装系统,以提高碳酸化性能。本文报道了一个实验和数值传质模型,该模型可以模拟瓶装灌装系统中气态二氧化碳在水中溶解的过程。为了确定瓶装灌装系统的运行特性,将普通自来水和纯二氧化碳用作液气系统。开发了两阶段的数值模型,可以作为持续改进瓶灌装系统中碳化过程设计的框架。对于CO_2注入管和流量条件的最佳设计,计算流体动力学(CFD)方法是最强大的工具之一。但是,由于公开文献中只有有限的实验数据可用于验证计算结果,因此进行了一项实验研究,以获取充满液体的瓶子碳酸化过程中CO_2水平,温度和压力的测量值。本文介绍了各种流动条件和不同尺寸注射管的实验和数值研究。

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