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Electrical Capacitance Volume Tomography and its Applications in Multiphase Flow Systems

机译:电容体积层析成像及其在多相流系统中的应用

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摘要

Electrical capacitance volume tomography (ECVT) is a novel non-invasive process tomography technique which can provide phase distribution information inside the imaging domain. Compared with other radiation based or magnetic resonance based process techniques, the cost of ECVT is very low, and it has high imaging speed. Compared with conventional electrical capacitance tomography, ECVT can deliver 3-D images and can accommodate to the imaging domains with irregular geometries. In the current study, ECVT is applied to various multiphase flow systems; the feasibilities of ECVT are demonstrated, and the limitations are discussed.;The major limitation of capacitance based tomography techniques is the low spatial resolution. One possible improvement approach is to increase the number of capacitance plates. In the current study, after introducing the basic principle of ECVT, a 24 channels ECVT sensor is compared with a 12 channels sensor. Different static solid objects are imaged by both sensors, and the results indicate that the image quality from 24 channels sensor is much better than the 12 channels system.;Trickle beds are widely used in industrial processes. A trickle bed is a column with gas and liquid concurrently flow downward through a packed bed. Although the structure is simple, the hydrodynamics is complex in a trickle bed, and there are several flow regimes exist. In this study, of particular interest are the trickling regime and pulsating regime. By applying ECVT to an air-water trickle bed, the liquid maldistribution in the trickling regime is observed. The pulse properties in pulsating regime are quantified. A mathematical model is derived to estimate the actual liquid velocity inside the pulsating trickle bed, and it is found that the pulsation is wave propagation.;In gas-liquid separation, sometimes a passive cyclonic gas-liquid separator is favored because of its simple structure, high efficiency and low energy consumption. In this study, ECVT is applied to a passive cyclonic gas-liquid separator, and the liquid distribution and the gas core behavior are investigated. A hydrodynamic model is mathematically derived to explain the gas core behavior, and the calculated results match the ECVT images well.;Bubble motion inside bubble columns is a very important topic. In this study, ECVT is applied to bubble columns with various distributors operating in different flow regimes. The spiral motion of the bubble plume is imaged, and the results match the data from optical fiber probe. Some other phenomena, such as flow regime transition, and the bubble acceleration inside a tapered conical shape column are also investigated. The last portion of this work considers ECVT applications in gas-solids systems. The gas jet in a fluidized bed is imaged by ECVT and MRI, and the results are compared quantitatively. As for irregular shape imaging domain, a bend shape ECVT is employed to investigate the solids distribution inside the riser exit region in a circulating fluidized bed.;By conducting this study, feasibilities of ECVT applications on multiphase flow systems are demonstrated. In the last chapter of this dissertation, future works are recommended.
机译:电容体积层析成像(ECVT)是一种新颖的非侵入式过程层析成像技术,可以在成像域内部提供相位分布信息。与其他基于辐射或基于磁共振的处理技术相比,ECVT的成本非常低,并且具有很高的成像速度。与传统的电容层析成像相比,ECVT可以传递3D图像,并可以适应具有不规则几何形状的成像域。在当前的研究中,ECVT被应用于各种多相流系统。电容式层析成像技术的主要局限是空间分辨率低。一种可能的改进方法是增加电容板的数量。在当前的研究中,在介绍了ECVT的基本原理之后,将24通道ECVT传感器与12通道传感器进行了比较。两个传感器对不同的静态固体物体进行成像,结果表明,24通道传感器的图像质量比12通道系统好得多。滴流床是一种塔,气体和液体同时向下流过填充床。尽管结构简单,但在滴流床中的流体力学却很复杂,并且存在多种流动形式。在这项研究中,特别令人感兴趣的是滴流状态和脉动状态。通过将ECVT应用于空气-水滴流床,可以观察到滴流状态下的液体分布不均。量化脉动状态下的脉冲特性。推导了一个数学模型来估算脉动滴流床内部的实际液体速度,发现脉动是波的传播。在气液分离中,由于其结构简单,有时倾向于使用被动旋风气液分离器,效率高,能耗低。在这项研究中,将ECVT应用于被动旋风气液分离器,并研究了液体分布和气芯行为。通过数学推导的流体动力学模型来解释气芯行为,计算结果与ECVT图像吻合良好。气泡柱内的气泡运动是一个非常重要的课题。在这项研究中,将ECVT应用于带有不同流量状态的各种分配器的气泡塔。对气泡羽流的螺旋运动进行成像,结果与光纤探针的数据相匹配。还研究了其他一些现象,例如流态转换和锥形圆锥内的气泡加速。这项工作的最后一部分考虑了ECVT在气固系统中的应用。通过ECVT和MRI对流化床中的气体喷射进行成像,并对结果进行定量比较。对于不规则形状的成像域,采用弯曲形状的ECVT来研究循环流化床中立管出口区域内的固体分布。通过进行这项研究,证明了ECVT在多相流系统中的可行性。在本论文的最后一章中,建议以后的工作。

著录项

  • 作者

    Wang, Aining.;

  • 作者单位

    The Ohio State University.;

  • 授予单位 The Ohio State University.;
  • 学科 Chemical engineering.;Engineering.
  • 学位 Ph.D.
  • 年度 2015
  • 页码 180 p.
  • 总页数 180
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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