The Medium-Blocking Discharge Vibration-Uniform Material Plasma Seed Treatment Device Based on EDEM

Author:

Hui Yunting1,Huang Chen1,Liao Yangyang1,Wang Decheng1,You Yong1ORCID,Bai Xu1

Affiliation:

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

Abstract

Pre-sowing treatment of seeds by plasma can improve seed vigor and promote seed germination and growth. To solve the problems of low processing volume and uneven treatment in plasma seed treatment devices, according to the process scheme of medium-blocking discharge plasma seed treatment, a medium-blocking discharge vibration-uniform material plasma seed treatment device was designed, the structure and working principle of the vibration-uniform material device were systematically analyzed, and the mathematical model of seed force was established. According to electromagnetic vibration theory, the seed sorting and conveying principles were analyzed in the lower trough, and the relevant parameters were selected and calculated. Using EDEM discrete element simulation software, a numerical simulation of alfalfa seed feeding and vibration-uniform material process was carried out. A three-factor, three-level orthogonal test was established. The results showed that the vibration amplitude and groove shape significantly affected the coefficient of variation of seed uniformity on the groove during the seed feeding and vibration-uniform material processes, and the groove wheel speed had a certain effect on the coefficient of variation of uniformity. The main order of factors affecting the uniformity of seed spreading was vibration amplitude B > notch shape C > speed A. The optimal speed was 35 r/min, the optimal notch shape was circular, and the optimal vibration amplitude was 0.55 mm.

Funder

China Agriculture Research System

National Key R&D Program of China

Publisher

MDPI AG

Subject

Agronomy and Crop Science

Reference38 articles.

1. The present situation and prospect of the processing technology of forage grass in China;Zhong;Chin. Sci. Bull.,2018

2. Main composition of alfalfa and its application in animal husbandry;Pan;J. Tradit. Chin. Vet. Med.,2015

3. Bizzuti, B.E., Pérez-Márquez, S., van Cleef, F.D.O.S., Ovani, V.S., Costa, W.S., Lima, P.M.T., Louvandini, H., and Abdalla, A.L. (2023). In Vitro Degradability and Methane Production from By-Products Fed to Ruminants. Agronomy, 13.

4. Forage and Seed Yield Variation of Alfalfa Cultivars in Response to Planting Date;Bakheit;SVU-Int. J. Agric. Sci.,2019

5. Storage, utilization and conservation of forage germplasm in China;Yan;Pratacultural Sci.,2008

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