首页> 外文期刊>The Canadian Journal of Chemical Engineering >Parameters Influencing Dilute-Phase Pneumatic Conveying Through Pipe Systems: A Computational Study by the Euler/Lagrange Approach
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Parameters Influencing Dilute-Phase Pneumatic Conveying Through Pipe Systems: A Computational Study by the Euler/Lagrange Approach

机译:管道系统中影响稀薄气力输送的参数:欧拉/拉格朗日方法的计算研究

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The present contribution summarizes research related to the numerical computation of pneumatic conveying systems applying the Euler/Lagrange approach. For that purpose, a rigorous modelling of the particulate phase was aspired, including the relevant fluid dynamic forces, particle-wall collisions with wall roughness and inter-particle collisions. For the validation of the computations, experiments of Huber and Sommerfeld were selected for the conveying through a 80mm stainless steel pipe with 5m horizontal pipe, bend and 5m vertical pipe. The majority of the computations were done for the same pipe system; however, in this instance, consisting of 150mm stainless steel pipes. In these cases the average conveying velocity was 27m/s and the particle mass loading was 0.3 (mass flow rate of particles/mass flow rate of air). For this configuration the influence of wall roughness, inter-particle collisions, particle size, and mass loading on the resulting particle concentration distribution, the secondary flow as well as the pressure drop in the different pipe elements was analyzed. Moreover, a segregation parameter was defined which describes the location of the maximum particle concentration throughout the pipe system. The secondary flow intensity (SFI) was used to characterize the influence of the particle phase on the developing structure of the secondary flow.
机译:本文稿总结了与使用欧拉/拉格朗日方法进行的气力输送系统数值计算有关的研究。为此,希望对颗粒相进行严格的建模,包括相关的流体动力,具有壁粗糙度的颗粒间碰撞和颗粒间碰撞。为了验证计算的准确性,选择了Huber和Sommerfeld的实验来通过一条80mm的不锈钢管(水平管为5m,弯管为5m,垂直管为5m)进行输送。大多数计算是针对同一管道系统完成的;但是,在这种情况下,它由150毫米的不锈钢管组成。在这些情况下,平均输送速度为27m / s,粒子质量负荷为0.3(粒子的质量流量/空气的质量流量)。对于此配置,分析了壁粗糙度,粒子间碰撞,粒子尺寸和质量负载对所得粒子浓度分布,二次流以及不同管件中的压降的影响。此外,定义了分离参数,该参数描述了整个管道系统中最大颗粒浓度的位置。二次流动强度(SFI)用于表征颗粒相对二次流动的发展结构的影响。

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