首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Effect of particle size distribution on hydrodynamics and solids back-mixing in CFB risers using CPFD simulation
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Effect of particle size distribution on hydrodynamics and solids back-mixing in CFB risers using CPFD simulation

机译:使用CPFD模拟对CFB立管中粒径分布对流体力学和固体反混的影响

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摘要

Industrial CFB risers usually handle polydisperse mixtures with broad size distribution, which significantly influenced the performance of the reactors. However, traditional Computational Fluid Dynamics (CFD) models usually assumed that the particle followed the mono-disperse distribution. In the present work, the method of computational particle fluid dynamic (CPFD) was applied for simulating the complex hydrodynamics in the CFB riser with various particle size distributions (PSDs).Two kinds of PSDs, namely Gaussian and Lognormal distribution with various PSD widths, were implemented into the CPFD scheme. With the CPFD method, the present work extensively studied the effects of PSD on the hydrodynamics and on the solids back-mixing. The CPFD results showed that the PSD significantly affected particle's flow behaviors at the lower zone of the riser, while the PSD effects were negligible in the upper part of the riser. This is meaningful for the industrial riser reactors since most of the reaction and transport process occur in this lower zone of the riser. Besides, the simulation results showed that wider PSD dramatically weaken the particle's back-mixing behaviors in the riser. The significant effects of PSD predicted by the CPFD method imply that large errors will be introduced if the mono-disperse assumption is adopted to simulate the experimental CFB riser handling particles with broad size distribution.
机译:工业CFB提升管通常处理尺寸分布较宽的多分散混合物,这极大地影响了反应器的性能。但是,传统的计算流体动力学(CFD)模型通常假定粒子遵循单分散分布。在本文中,采用计算粒子流体动力学方法(CPFD)来模拟具有各种粒径分布(PSD)的CFB立管中的复杂流体动力学。两种PSD,即高斯分布和对数正态分布,具有各种PSD宽度,被实施到CPFD计划中。通过CPFD方法,本工作广泛研究了PSD对流体动力学和固体反混的影响。 CPFD结果表明,PSD显着影响立管下部区域的颗粒流动行为,而PSD效应在立管的上部可忽略不计。这对于工业立管反应器是有意义的,因为大多数反应和运输过程都发生在立管的下部区域。此外,仿真结果表明,较宽的PSD极大地削弱了立管中颗粒的回混行为。通过CPFD方法预测的PSD的显着效果意味着,如果采用单分散假设来模拟实验性CFB立管处理宽尺寸分布的颗粒,则会引入较大的误差。

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