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The influence of secondary flow in a two-phase gas-solid system in straight channels with a non-circular cross-section

机译:具有非圆形横截面的直通道中两相气固系统中二次流的影响

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The paper considers two-phase gas-solid turbulent flow of pneumatic transport in straight horizontal channels with a non-circular cross-section. During turbulent flow, a specific flow phenomenon, known as secondary flow, occurs in these channels in the cross-sectional plane. The existence of strong temperature gradients in the cross-sectional plane of the channel or the cases of curved channels result in the appearance of the secondary flow of the first kind. However, in straight channels with a non-circular cross-section, in the developed turbulent flow mode, a secondary flow, known as Prandtl’s secondary flow of the second kind, is induced. The paper presents a numerical simulation of a developed two-phase turbulent flow by using the PHOENICS 3.3.1 software package. Reynolds stress model was used to model the turbulence. The paper provides the data on the changes in turbulent stresses in the channel cross-section as well as the velocities of solid particles transported along the channel.
机译:本文考虑了在具有非圆形横截面的直水平通道中气动输送的两相气固湍流。在湍流期间,在横截面上的这些通道中会发生一种特定的流动现象,称为二次流动。在通道的横截面中存在强的温度梯度,或者在弯曲通道的情况下,会导致出现第一类二次流。但是,在具有非圆形横截面的直通道中,在已发展的湍流模式下,会产生二次流,称为第二种普朗特二次流。本文使用PHOENICS 3.3.1软件包对已开发的两相湍流进行了数值模拟。使用雷诺应力模型对湍流进行建模。本文提供了有关通道横截面中湍流应力变化以及沿通道传输的固体颗粒速度的数据。

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