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Modeling Hydrodynamics of Bubbling Fluidized Bed Reactor for Biomass Gasification

机译:模拟流化床反应器对生物质气化的模拟流体动力学

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Bubbling fluidized bed models finds wide applications in biomass gasification. Particle size, minimum fluidization velocity and pressure drop are the important parameters to characterize the hydrodynamic behaviour of the particles inside the fluidized bed. This study focuses on the effect of bed height, bed material, reactor size and the superficial velocity in the flow hydrodynamics leading to the optimum design of a bubbling fluidized reactor. The results showed that, increased bed height at higher flow velocity enhanced bubble coalescence creating slugs that flow through the centre of the bed. At higher gas flow rate, the bubbles size and velocity are increased with increase in bed height due to the exchange of mass and energy from the emulsion phase. The results also showed that, increase in bed mass, increased the bed pressure drop while decreasing the distributor pressure drop.
机译:鼓泡流化床模型在生物质气化中发现了广泛的应用。 粒度,最小流化速度和压降是表征流化床内颗粒的流体动力学行为的重要参数。 本研究重点介绍床高度,床材料,反应器尺寸和流动流体动力学中的表面速度的影响,导致鼓泡流化合物的最佳设计。 结果表明,在较高的流速增强的泡泡聚结时增加床高的床高,产生流过床中心的粘合剂。 在较高的气体流速下,由于乳液相的质量和能量的交换而增加,气泡尺寸和速度随着床高度的增加而增加。 结果还表明,床肿块增加,增加了床压下降,同时降低了分配器压降。

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