Design and study on lightweight organic fertilizer distributor
Jie Hu
1
,
Jiacheng He
2
,
Yang Wang
2
,
Yan-Ping Wu
1
,
Chen Chang
3
,
Zhenyu Ren
1
,
Xiao-Xian Li
1
,
Shiji Shi
1
,
Yipeng Du
1
,
Peixiang He
1
3
Sichuan Research& Design Institute of Agricultural Machinery, Sichuan, PR China
|
Publication type: Journal Article
Publication date: 2020-02-01
scimago Q1
wos Q1
SJR: 1.834
CiteScore: 15.1
Impact factor: 8.9
ISSN: 01681699
Computer Science Applications
Agronomy and Crop Science
Forestry
Horticulture
Abstract
Long-term large-scale use of chemical fertilizers will destroy soil fertility, reduce fertilizer efficiency of chemical fertilizers, and lead to crop yield reduction. The application of organic fertilizer can improve soil fertility, provide favorable conditions for crop growth, and promote crop yield. In order to improve the utilization rate and operation efficiency of organic fertilizer in hilly areas and promote the sustainable development of agriculture, this paper designs and studies a lightweight organic fertilizer distributor combined with the current situation of fertilization in hilly areas of China. The lightweight organic fertilizer distributor studied in this paper adopts the top-row row fertilizer method, which mainly consists of the top-row fertilizer apparatus with horizontal scrapers, the horizontal scraper elevating mechanism, the control system and the subsidiary mechanism. In this paper, the mechanical model of horizontal scraper is established and the mathematical model of fertilizer output of fertilizer dispenser is built by analyzing the principle of fertilizer dispensing. The design of each hardware circuit has been completed and the fertilizer control algorithm of the fertilizer applicator has been determined. The performance test of the fertilizer dispenser and the performance test of the whole fertilizer dispenser are carried out. The results show that the control system works steadily and reliably. When the forward speed of the fertilizer applicator is normal (0.5–1.2 m/s) and the set amount of fertilizer application is 900–2100 kg/hm2, the fertilization amount is accurate, the maximum deviation between the actual amount of fertilizer application and the set amount of fertilizer application is less than 10%; the fertilization uniformity is good and the variation coefficient of uniformity is less than 7%, the actual amount of fertilizer application per unit area, the uniformity of fertilizer application and the forward speed of the fertilizer applicator are good. It has nothing to do with the design requirements.
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Metrics
16
Total citations:
16
Citations from 2025:
4
(25%)
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BibTex
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GOST
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Hu J. et al. Design and study on lightweight organic fertilizer distributor // Computers and Electronics in Agriculture. 2020. Vol. 169. p. 105149.
GOST all authors (up to 50)
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Hu J., He J., Wang Y., Wu Y., Chang C., Ren Z., Li X., Shi S., Du Y., He P. Design and study on lightweight organic fertilizer distributor // Computers and Electronics in Agriculture. 2020. Vol. 169. p. 105149.
Cite this
RIS
Copy
TY - JOUR
DO - 10.1016/j.compag.2019.105149
UR - https://doi.org/10.1016/j.compag.2019.105149
TI - Design and study on lightweight organic fertilizer distributor
T2 - Computers and Electronics in Agriculture
AU - Hu, Jie
AU - He, Jiacheng
AU - Wang, Yang
AU - Wu, Yan-Ping
AU - Chang, Chen
AU - Ren, Zhenyu
AU - Li, Xiao-Xian
AU - Shi, Shiji
AU - Du, Yipeng
AU - He, Peixiang
PY - 2020
DA - 2020/02/01
PB - Elsevier
SP - 105149
VL - 169
SN - 0168-1699
ER -
Cite this
BibTex (up to 50 authors)
Copy
@article{2020_Hu,
author = {Jie Hu and Jiacheng He and Yang Wang and Yan-Ping Wu and Chen Chang and Zhenyu Ren and Xiao-Xian Li and Shiji Shi and Yipeng Du and Peixiang He},
title = {Design and study on lightweight organic fertilizer distributor},
journal = {Computers and Electronics in Agriculture},
year = {2020},
volume = {169},
publisher = {Elsevier},
month = {feb},
url = {https://doi.org/10.1016/j.compag.2019.105149},
pages = {105149},
doi = {10.1016/j.compag.2019.105149}
}