Acta Agriculturae Zhejiangensis ›› 2023, Vol. 35 ›› Issue (6): 1452-1461.DOI: 10.3969/j.issn.1004-1524.2023.06.22

• Biosystems Engineering • Previous Articles     Next Articles

Numerical simulation and optimization of key structure for centrifugal variable fertilizer spreader

XIN Yapeng1(), WANG Lin2, SHI Yinyan1,*(), WANG Xiaochan1, WU Changwei1, LIU Hui1   

  1. 1. College of Engineering, Nanjing Agricultural University, Nanjing 210031, China
    2. State Key Laboratory of Power System of Tractor, Luoyang 471039, Henan, China
  • Received:2022-06-07 Online:2023-06-25 Published:2023-07-04

Abstract:

In order to solve the problems of uneven fertilization and poor particle distribution caused by double disc centrifugal fertilizer spreader in the process of throwing rice fertilizer, the key structure of the current centrifugal double disc variable fertilizer spreader was optimized to improve the uniformity of fertilizer application. Based on the theoretical analysis of the key structure, the discrete element method was used to establish the simulation model of the centrifugal variable fertilizer spreader, and the three factor and three-level rotation orthogonal test was designed to simulate the parameters and optimize the structure of the fertilizer disc type (represented by brachistochrone curve shape), the number of blades on the fertilizer disc and the rising angle of the spiral blanking device. The results showed that the influence of factors on the distribution coefficient of variation (Cv) decreased as brachistochrone curve shape of the fertilizer disc>the number of blades>the rising angle of spiral blanking device. Through regression analysis and optimization, it was found that when the brachistochrone curve shape of the fertilizer disc was 0.276, the number of fertilizer blades was 4, and the rising angle of the spiral blanking device was 47.02°, the Cv reached the minimum value of 13.29%. The average relative error between the measured value verified by the experiment and the numerical simulation optimization was 8.99%. These results indicated that the simulation of fertilizer spreading based on discrete element method could optimize the working parameters of centrifugal fertilizer spreading device.The model had high reliability and could provide theoretical reference to improve the field performance of variable fertilizer spreader.

Key words: variable fertilization, structural optimization, discrete element method, coefficient of variation

CLC Number: