Performance Analysis and Operation Parameter Optimization of Shaker-Type Harvesting for Camellia Fruits

This study aims to address the challenges of achieving a high harvesting rate and low flower bud damage rate during the harvesting of camellia fruits. To this end, a dynamic model of the camellia osmantha tree and a self-developed shaker-type harvesting machine were used as research subjects. The fi...

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Published inAgriculture (Basel) Vol. 14; no. 11; p. 1989
Main Authors Gao, Qiaoming, Han, Jianfeng, Zeng, Shan, Wang, Yu, Wei, Wei, Wang, Dongxue, Ye, Hang, Lu, Jing, Zeng, Haoxiang
Format Journal Article
LanguageEnglish
Published Basel MDPI AG 01.11.2024
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Abstract This study aims to address the challenges of achieving a high harvesting rate and low flower bud damage rate during the harvesting of camellia fruits. To this end, a dynamic model of the camellia osmantha tree and a self-developed shaker-type harvesting machine were used as research subjects. The first 24 natural frequencies and mode shapes of the camellia tree were solved using the finite element method, and the effects of vibration frequency, excitation position, and vibration duration on the harvesting rate and flower bud damage rate were quantitatively analyzed through an orthogonal experiment. The numerical analysis results indicate that the camellia tree exhibits good response characteristics at vibration frequencies of 10–15.5 Hz and 38.5 Hz. The three-factors orthogonal experiment figured out that the optimal operational parameters for shaker-type harvesting were determined to be a vibration duration of 30 s, a motor output frequency of 12.5 Hz, and a gripping position height of 50 to 60 cm above the ground. Meanwhile, under these operational parameters, the harvesting efficiency reached 96.97%, while the flower bud damage rate was only 6%.
AbstractList This study aims to address the challenges of achieving a high harvesting rate and low flower bud damage rate during the harvesting of camellia fruits. To this end, a dynamic model of the camellia osmantha tree and a self-developed shaker-type harvesting machine were used as research subjects. The first 24 natural frequencies and mode shapes of the camellia tree were solved using the finite element method, and the effects of vibration frequency, excitation position, and vibration duration on the harvesting rate and flower bud damage rate were quantitatively analyzed through an orthogonal experiment. The numerical analysis results indicate that the camellia tree exhibits good response characteristics at vibration frequencies of 10–15.5 Hz and 38.5 Hz. The three-factors orthogonal experiment figured out that the optimal operational parameters for shaker-type harvesting were determined to be a vibration duration of 30 s, a motor output frequency of 12.5 Hz, and a gripping position height of 50 to 60 cm above the ground. Meanwhile, under these operational parameters, the harvesting efficiency reached 96.97%, while the flower bud damage rate was only 6%.
Audience Academic
Author Gao, Qiaoming
Wang, Yu
Wei, Wei
Lu, Jing
Han, Jianfeng
Ye, Hang
Wang, Dongxue
Zeng, Haoxiang
Zeng, Shan
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Cites_doi 10.1007/s00468-013-0902-0
10.1016/j.compag.2014.06.011
10.3390/rs15102500
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StartPage 1989
SubjectTerms Analysis
camellia fruits
Damage
Design
Dynamic models
Efficiency
Finite element method
Flowers
Fruit
Fruits
Harvest
harvesting machinery
Machinery
modal analysis
Numerical analysis
orthogonal test
Parameters
Resonant frequencies
shaker-type
Trees
Vibration
Vibration analysis
Vibration effects
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Title Performance Analysis and Operation Parameter Optimization of Shaker-Type Harvesting for Camellia Fruits
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