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茶莖稈離散元模型參數(shù)標(biāo)定與試驗(yàn)
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國(guó)家自然科學(xué)基金項(xiàng)目(5210521)和河南省科技攻關(guān)項(xiàng)目(242102111182)


Calibration and Experiment of Discrete Element Model Parameters for Tea Stem
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    摘要:

    針對(duì)名優(yōu)茶采收過(guò)程中機(jī)械部件與茶莖稈相互作用機(jī)理不明確、茶莖稈模型不精確等問(wèn)題,,以茶莖稈為研究對(duì)象,,提出了一種基于粘結(jié)增強(qiáng)法的茶莖稈3層離散元仿真模型。以最大剪切力為評(píng)價(jià)指標(biāo),通過(guò)Plackett-Burman試驗(yàn),、最陡爬坡試驗(yàn)和Box-Behnken試驗(yàn),,完成茶莖稈仿真粘結(jié)參數(shù)標(biāo)定,利用標(biāo)定的參數(shù)構(gòu)建拉伸和穿刺模型進(jìn)行相應(yīng)仿真試驗(yàn),,與物理試驗(yàn)進(jìn)行對(duì)比,。結(jié)果表明,粘結(jié)參數(shù)中木質(zhì)部-木質(zhì)部法向接觸剛度,、木質(zhì)部-木質(zhì)部切向接觸剛度和粘結(jié)半徑對(duì)莖稈力學(xué)性能影響顯著,,其最優(yōu)組合為3.447×1011 N/m3、3.536×1011 N/m3和4.404×10-5 mm,;拉伸和穿刺驗(yàn)證試驗(yàn)相對(duì)誤差不大于3%,,且莖稈受力變化趨勢(shì)基本一致,表明標(biāo)定優(yōu)化后參數(shù)具有可行性和準(zhǔn)確性,,可為茶莖稈相關(guān)系統(tǒng)數(shù)值模擬研究提供理論基礎(chǔ),。

    Abstract:

    In response to the ambiguous understanding of the interaction mechanism between mechanical components and tea stem with the imprecision of tea stem model in the harvesting process of famous tea, focusing on tea stem, a novel approach termed binding enhancement was proposed to establish a three-layer discrete element simulation model for tea stem. The maximum shear force was used as the evaluation index with the factors of the normal contact stiffness of the xylem-xylem, the tangential contact stiffness of the xylem-xylem, and the bonding radius. The Plackett-Burman experimental design was used to select the significant influencing factors on the maximum shear force. The calibration range of significant parameters was narrowed down by the steepest climbing test, and the optimal combination of two models was further obtained through Box-Behnken test and variance analysis. Subsequently, the calibrated parameters were utilized to construct comprehensive models for tensile and puncture simulations, which was systematically compared and analyzed against corresponding physical experiments.The results indicated that the xylem-xylem normal contact stiffness, xylem tangential contact stiffness and bond radius had a significantly effect on the mechanical properties of the stem. The optimal combination was determined to be 3.447×1011 N/m3, 3.536×1011 N/m3, and 4.404×10-5 mm, respectively. The tensile and puncture verification experiments displayed relative errors not exceeding 3%, and the trend in stem force variation demonstrated substantial consistency. These results underscored the feasibility and accuracy of the calibrated and optimized parameters, thereby laying a solid theoretical foundation for numerical simulation studies pertaining to tea stem system.

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杜哲,李鄧輝,李心平,金鑫,吳永彬,于帆.茶莖稈離散元模型參數(shù)標(biāo)定與試驗(yàn)[J].農(nóng)業(yè)機(jī)械學(xué)報(bào),2025,56(1):311-320. DU Zhe, LI Denghui, LI Xinping, JIN Xin, WU Yongbin, YU Fan. Calibration and Experiment of Discrete Element Model Parameters for Tea Stem[J]. Transactions of the Chinese Society for Agricultural Machinery,2025,56(1):311-320.

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  • 收稿日期:2024-01-17
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  • 在線發(fā)布日期: 2025-01-10
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