首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Local time-averaged gas holdup in a fluidized bed with side air injection using X-ray computed tomography
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Local time-averaged gas holdup in a fluidized bed with side air injection using X-ray computed tomography

机译:使用X射线计算机断层摄影术通过侧面空气注入在流化床中的平均时间平均气体滞留量

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Local time-averaged gas holdup in a 10.2 cm diameter fluidized bed is determined using X-ray computed tomography (CT) over a range of superficial gas velocities (U_g), side air injection flow rates (Q_(side)), and fluidized bed material. Without side air injection, only small variations in the local time-averaged gas holdup are observed for beds composed of glass beads, ground walnut shell, or ground corncob. With the introduction of side air injection, which simulates the immediate volatilization of biomass in a fluidized bed gasifier, a distinctive plume is observed along the reactor wall above the side injection port. The plume gradually expands toward the center of the bed as height increases; the expansion is found to increase with increasing Q_(side). As U_g increases, fluidization becomes more uniform and the effect of the side air injection on the fluidization hydrodynamics is less pronounced. Additionally, increasing U_g increases overall gas holdup and bed expansion. Of the three bed materials examined, ground corncob fluidization is the least affected by side air injection and shows the highest overall gas holdup while glass bead fluidization is much more affected by side air injection and has the lowest overall gas holdup. This study demonstrates the usefulness of X-ray CT in noninvasively visualizing detailed internal features of fluidized beds. These results will be used in future studies to validate computational fluid dynamics (CFD) models of fluidized beds.
机译:使用X射线计算机断层扫描(CT)在一定范围的表观气速(U_g),侧吹空气流速(Q_(side))和流化床中使用X射线计算机断层扫描(CT)确定在10.2 cm直径流化床中的局部平均时间气体滞留量材料。如果没有侧面空气注入,则对于由玻璃珠,磨碎的核桃壳或磨碎的玉米芯组成的床,只能观察到局部时间平均气体滞留量的微小变化。随着侧面空气喷射的引入(它模拟了流化床气化炉中生物质的立即挥发),沿着侧面喷射口上方的反应器壁观察到了独特的烟羽。随着高度的增加,羽流逐渐向床的中心扩展。发现扩展随着Q_(side)的增加而增加。随着U_g的增加,流化变得更加均匀,并且侧向空气注入对流化流体动力学的影响不太明显。另外,增加U_g会增加总体气体滞留量和床层膨胀。在检查的三种床料中,地面玉米芯流化受侧空气注入的影响最小,并且显示出最高的总气体滞留率,而玻璃珠的流化受侧空气注入的影响更大,并且具有最低的总气体滞留率。这项研究证明了X射线CT在无创地观察流化床的详细内部特征方面的有用性。这些结果将用于将来的研究中,以验证流化床的计算流体动力学(CFD)模型。

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