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Gas jet penetration lengths from upward and downward nozzles in dense gas-solid fluidized beds

机译:密集气固流化床中上下喷嘴的气体射流穿透长度

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The penetration lengths of a jet issuing from upward and downward injection nozzles were measured in a dense fluidized bed of Geldart A to Geldart B particles, operated at superficial velocity well beyond the minimum bubbling velocity. Nozzle orientation, injection velocity and injected gas density were found to be the parameters having the most influence on the jet penetration lengths. Three distinct jet penetration lengths were determined for the upward nozzle: L_(min), L_(max) and L_b, in accordance with Knowlton and Hirsan's (1980) definition [1], while for the downward nozzle, only L_(min) and L_(max) were observed. The jet penetration lengths were correlated with respect to dimensiohless groups in a systematic approach in an effort to identify the most important terms. For each nozzle orientation, the analysis yielded unique correlation format which could be applied to each characteristic jet length by changing the correlation parameters. Fundamental distinctions between the upward and downward nozzles were uncovered. The mechanism responsible for the jet momentum dissipation was found to be gravitational forces acting on the jet volume for the upward nozzle and drag forces exerted on the entrained particles for the downward nozzle. Five new correlations were derived for the prediction of the characteristic jet lengths for upward and downward nozzles. The correlations retained for the upward nozzle were also found to be in good agreement with data from a high pressure fluidized bed.
机译:从向上和向下喷射喷嘴射出的射流的穿透长度是在Geldart A到Geldart B颗粒的密集流化床中测得的,该颗粒的表观速度远远超过最小起泡速度。发现喷嘴取向,喷射速度和喷射气体密度是对射流穿透长度影响最大的参数。根据Knowlton和Hirsan(1980)的定义[1],确定了向上喷嘴的三个不同的射流穿透长度:L_(min),L_(max)和L_b,而对于向下喷嘴,仅L_(min)和L_b观察到L_(max)。为了确定最重要的术语,采用了系统的方法,将射流的穿透长度与无结点组相关联。对于每个喷嘴方向,分析产生唯一的相关格式,可以通过更改相关参数将其应用于每个特征射流长度。发现了向上和向下喷嘴之间的根本区别。发现造成喷射动量耗散的机理是重力作用在向上喷嘴的喷射量上,而阻力作用在向下喷嘴的夹带颗粒上。推导了五个新的相关性,以预测向上和向下喷嘴的特征射流长度。还发现保留在向上喷嘴的相关性与高压流化床的数据非常吻合。

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