Mixed Seeds of Oat and Vetch Based on DEM-Fluent Coupling Motion Simulation in a Venturi Tube

Author:

Liao Yangyang1,You Yong1ORCID,Hui Yunting1,Zhang Xuening1,Wang Decheng1

Affiliation:

1. Department of Agricultural Engineering, College of Engineering, China Agricultural University, Beijing 100083, China

Abstract

The gas–solid flow of mixed seeds of oat and vetch in the air-blowing venturi tube was simulated numerically by means of a coupling approach of the discrete element method (DEM) and computational fluid dynamics (CFD). In the gas–solid coupling model, EDEM software was used to depict the discrete particle phase, and ANSYS Fluent software was used to describe the continuous gas phase. The effects of the seed entry angle and inlet air velocity on the uniformity of mixed seed supply were studied and analyzed from the angle of airflow field variation and mixed seeds movement characteristics. The simulation results showed that the seeding angle has a great influence on the seed movement in the tube and affects the pressure and velocity gradient of the airflow field. If the seed insertion angle is too large, the number of collisions between the seed and the tube wall will increase, and the phenomenon of seeds retention and disordered jumping will occur. The inlet air velocity mainly affects the outlet air velocity and seed velocity and has little effect on the change in airfield. With the increase in inlet air velocity, the greater the velocity and force of the seeds, the closer the mixed seeds collide with the wall to the outlet pipe. At high inlet airflow velocity, there is a great disparity in the movement speed between the seeds, resulting in uneven spacing between the seeds. The results showed that under the conditions of 60° seed entry angle and 35~40 m/s inlet air velocity, the airflow field distribution in the tube was uniform and the seed movement was continuous and uniform.

Funder

National Key R&D Program of China

China Agriculture Research System

Publisher

MDPI AG

Subject

Process Chemistry and Technology,Chemical Engineering (miscellaneous),Bioengineering

Reference26 articles.

1. The niche of annual mixed-seeding meadow in response to density in alpine region of the Qilian Mountain, China;Zhao;Shengtai Xuebao Acta Ecol. Sin.,2013

2. Benefits of mixing grasses and legumes for herbage yield and nutritive value in Northern Europe and Canada;Brophy;Grass Forage Sci. J. Br. Grassl. Soc.,2014

3. Research progress of mixed planting of leguminous and gramineous forages to improve soil;Lu;Trans. Chin. J. Grassl.,2019

4. Effects of different planting configurations on yield of Avena sativa and Vicia sativa mixed plantings with soybean in alpine pastures;Zhu;Acta Prataculturae Sin.,2020

5. Mixed Sowing Combination of Grass, Bean and Forage in Ningxia Oasis and Its Proportional Effect;Qi;Trans. Grass Ind. Sci.,2015

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