首页> 外文会议>ICONE18;International conference on nuclear engineering >MEASUREMENT OF THE DYNAMICAL MASS TRANSFER OF A SINGLE CO_2 BUBBLE USING LIF/HPTS VISUALIZATION AND A PHOTOELECTRIC OPTICALFIBER PROBE
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MEASUREMENT OF THE DYNAMICAL MASS TRANSFER OF A SINGLE CO_2 BUBBLE USING LIF/HPTS VISUALIZATION AND A PHOTOELECTRIC OPTICALFIBER PROBE

机译:利用LIF / HPTS可视化和光电技术测量单个CO_2气泡的动态质量传递光纤探头

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Gas-liquid two-phase flows are widely encountered in industrial plants such as chemical reactors, power plants, environmental plants and so on. It is essential to clarify the dissolution process of the bubbles and the structure of the gas-liquid two-phase flows for realizing the efficient operation of these industrial reactors. However, it is very difficult to clarify them because of their complexity. We made a challenge of clarifying them in detail.First, we discuss the dynamical processes of the mass transfer from a zigzagging CO_2 bubble of 2.9 mm in equivalent diameter by using three measurement methods (i.e. LIF(laser induced fluorescence)/HPTS(8-hydroxypyrene-l, 3, 6-trislfonic acid), PIV and a newly developed photoelectric optical fiber probe: POFP) effectively and mutually-complementarily.We directly visualized the dynamical mass transfer process from a zigzagging CO_2 bubble to the surrounding liquid by using LIF/HPTS. We measured the surrounding liquid motion induced by the bubble buoyancy using PIV. We visualized a high-CCVconcentration thin layer around the bubble was transported to the bubble rear and accumulated into the horseshoe-like vortices. The clear horse-shoe-like vortices were observed just after the launch of the bubble from a needle. Then, the wreckage of the bubble wake was transported widely into the surrounding liquid by the buoyancy driven flows.We measured directly the CO_2 concentration profile inside the bubble wake by using POFP. We succeeded in clarifying the profile of the CO_2 concentration inside the bubble wake, which is difficult to obtain from only the LIF/HPTS method. From this result, we obtained that the CO_2 concentration takes the maximum at the center region of the bubble wake and sharply decreases toward the outer edge of the bubble wake.Second, we simultaneously measured the diameters and velocities of the bubble by using POFP. We confirmed theperformance of the POFP; the results via POFP were compared with those obtained from the visualization of the bubbles by using a high-speed video camera.We demonstrated mutually-complementary use of three measurement methods is very effective to experimentally understand the dynamical processes of the mass transfer from a zigzagging CO_2 bubble to the surrounding liquid.
机译:气液两相流在化学反应器,发电厂,环境工厂等工业工厂中广泛使用。必须弄清楚气泡的溶解过程和气液两相流的结构,以实现这些工业反应器的有效运行。但是,由于它们的复杂性,很难对其进行澄清。我们面临着挑战,需要对其进行详细说明。 首先,我们通过使用三种测量方法(即LIF(激光诱导荧光)/ HPTS(8-羟基py-1、3、6-三氟磺酸),讨论了当量直径为2.9 mm的锯齿状CO_2气泡的传质动力学过程。 ),PIV和新开发的光电光纤探头:POFP)有效且互为补充。 我们使用LIF / HPTS直接可视化了从曲折的CO_2气泡到周围液体的动力学传质过程。我们使用PIV测量了气泡浮力引起的周围液体运动。我们看到气泡周围的高CCV浓度薄层被输送到气泡后部,并积聚到马蹄形的漩涡中。从针头冒出气泡后,便观察到清晰的马蹄形涡流。然后,气泡的残骸被浮力驱动的流动广泛地转移到周围的液体中。 我们使用POFP直接测量了气泡尾流内部的CO_2浓度分布。我们成功地弄清了气泡尾流内部的CO_2浓度分布,仅通过LIF / HPTS方法很难获得。从该结果,我们获得了CO 2浓度在气泡尾流的中心区域处最大并且朝着气泡尾流的外边缘急剧降低。 其次,我们使用POFP同时测量了气泡的直径和速度。我们确认了POFP的性能;通过POFP将结果与使用高速摄像机从气泡可视化中获得的结果进行比较。 我们证明了三种测量方法的相互补充使用对于从实验上理解从之字形的CO_2气泡到周围液体的质量传递的动力学过程非常有效。

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