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Effect of the injection-nozzle geometry on the interaction between a gas-liquid jet and a gas-solid fluidized bed

机译:喷嘴几何形状对气液射流与气固流化床之间相互作用的影响

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In industrial fluid cokers, bitumen is first mixed with steam in a premixer, and then fed to the atomiza-tion nozzle. The objective of this work was to evaluate the impact of both the premixer and the nozzle geometrical configuration on the quality of the liquid-solid contact resulting from injections of liquid into a gas-solid fluidized bed. To assess the quality of the liquid-solid contact a method based on electric conductance measurements of the bed material previously developed by the authors [9] was used. Liquid atomization efficiency in open air, spray geometry, and spray stability were also characterized to evaluate their effects on the nozzle spraying performance within the fluidized bed. This study indicated that spray stability is highly beneficial to the liquid-solid contact efficiency. In particular, fluid constrictions such as the series of converging and diverging sections within the nozzle have a stabilizing effect on the spray. Future optimization of the existing liquid-injection systems should consider alternative gas-liquid premixers and nozzle geometries to enhance the jet stability.
机译:在工业流体焦化器中,首先将沥青与蒸汽在预混合器中混合,然后送入雾化喷嘴。这项工作的目的是评估预混合器和喷嘴的几何构型对液体注入气固流化床所产生的液固接触质量的影响。为了评估液固接触的质量,使用了基于作者先前开发的床层材料电导率测量的方法[9]。还对露天液体雾化效率,喷雾几何形状和喷雾稳定性进行了表征,以评估它们对流化床内喷嘴喷雾性能的影响。这项研究表明,喷雾稳定性对液固接触效率非常有利。特别地,诸如喷嘴内的一系列收敛和发散区段的流体收缩对喷雾具有稳定作用。现有液体喷射系统的未来优化应考虑使用其他气液预混合器和喷嘴几何形状,以增强喷射稳定性。

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