•  
  •  
 

Turkish Journal of Agriculture and Forestry

Abstract

The combination of magnetohydrodynamic (MHD) acceleration technology and the negative pressure suction principle ensures the effective lifting and transport of jujube fruits, addressing the challenges of traditional harvesting methods and providing a new solution for improving jujube harvesting efficiency. This study focuses on the impact of key parameters, including pipe diameter, electrode plate length, and electrode positioning, on the performance of the MHD acceleration pipe through numerical simulations. The structural optimization of the MHD acceleration pipe in the air-suction jujube harvester aims to enhance airflow acceleration efficiency. The results from both numerical simulations and experimental studies indicate that: 1) a smaller pipe diameter increases airflow velocity, while a larger diameter helps maintain the negative pressure environment inside the pipe and increases the pressure difference, 2) the length of the metal electrode plates contributes to improving the pressure difference, with longer plates generating larger pressure differences, and 3) proper electrode positioning is also crucial, as misalignment weakens the acceleration effect. Through orthogonal experimental design, the optimal configuration for the acceleration pipe was determined to be a pipe diameter of 160 mm, electrode plate length of 600 mm, and electrode position at 0 mm, resulting in an airflow velocity of 19.26 m/s and a pressure difference of 206.18 Pa. This study provides important theoretical insights for optimizing jujube harvesting equipment and demonstrates the potential of MHD acceleration control technology in agricultural machinery.

Author ORCID Identifier

YI WANG: 0000-0003-0621-3253

JING NIE: 0000-0002-3763-9559

JINGBIN LI: 0000-0003-4264-7024

LONGPENG DING: 0009-0008-5880-1261

XUEWEI CHAO: 0000-0001-7559-0293

XIANFEI WANG: 0009-0009-6513-7845

DOI

10.55730/1300-011X.3302

Keywords

Magnetohydrodynamic, jujube picking machine, flow field simulation, parameter optimization, experimental analysis

First Page

755

Last Page

768

Publisher

The Scientific and Technological Research Council of Türkiye (TÜBİTAK)

Creative Commons License

Creative Commons Attribution 4.0 International License
This work is licensed under a Creative Commons Attribution 4.0 International License.

Share

COinS