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首页> 外文期刊>Chemical engineering journal >Analysis of the bubbling behaviour of 2D gas solid fluidized beds Part II. Comparison between experiments and numerical simulations via Digital Image Analysis Technique
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Analysis of the bubbling behaviour of 2D gas solid fluidized beds Part II. Comparison between experiments and numerical simulations via Digital Image Analysis Technique

机译:二维气固流化床鼓泡行为分析第二部分。通过数字图像分析技术进行的实验和数值模拟之间的比较

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摘要

In the field of gas-solid fluidization, bubbles, and all features regarding them, have a very great importance, as they significantly affect the process performance. Numerous experimental studies on bubbles, and their formation, evolution, and properties, have been performed in the past. These investigations appear particularly difficult, due to the nature of these systems, since the gas phase is distributed in both the bubble and the emulsion phase. Several experimental approaches have been developed to tackle this study. Among these, the Digital Image Analysis Technique purposely developed in Part I of the present work, based on the use of a video camera for monitoring the phenomenon coupled with image analysis has been found viable and effective. Moreover, the bubbles behaviour and characteristics have been described by means of a variety of mathematical models. In recent years, in particular, computational fluid dynamics (CFD) tools have been found to be very effective in providing a powerful framework through which these models can be implemented and numerically solved. This paper combines both experimental and computational studies, presenting the comparison, performed by DIAT, between experimental data and relevant CFD simulations. In particular, simulations have been performed by means of the ANSYS-CFX code. The comparison comprises the following quantities: bed expansion, bubble hold-up, size evolution, distribution, density, aspect ratio, and bubble velocimetry data.
机译:在气固流化领域,气泡以及与气泡有关的所有功能非常重要,因为气泡会显着影响过程性能。过去,已经进行了许多有关气泡及其形成,演变和性质的实验研究。由于这些系统的性质,这些研究显得特别困难,因为气相既分布在气泡相中,又分布在乳液相中。已经开发了几种实验方法来解决该研究。其中,已经发现在本工作的第一部分中有目的地开发的数字图像分析技术是可行且有效的,该技术基于使用摄像机来监视现象并结合图像分析。此外,已经通过多种数学模型描述了气泡的行为和特性。尤其是近年来,已发现计算流体动力学(CFD)工具在提供强大的框架方面非常有效,通过这些框架可以实施和数值求解这些模型。本文结合了实验研究和计算研究,提出了DIAT在实验数据和相关CFD模拟之间进行的比较。特别地,已经通过ANSYS-CFX代码执行了仿真。比较包括以下数量:床膨胀,气泡滞留,尺寸演变,分布,密度,长宽比和气泡测速数据。

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