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種溝土壤-種子-覆土裝置互作離散元模型建立與驗證
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中國機械工業(yè)集團有限公司重大科技專項(ZDZX2020-2)


Establishment and Verification of Discrete Element Model for Seed Furrow Soil-Seed-Covering Device
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    摘要:

    針對研究播種機覆土裝置作業(yè)過程中種溝土壤及種子微觀運動規(guī)律時,缺乏準確可靠的種溝土壤-種子-覆土裝置三者互作離散元模型的問題,,以含水率為(15.7±0.25)%的黏土為研究對象,,基于EDEM軟件對相關參數(shù)及模型進行標定。建立覆土裝置與種溝土壤互作模型,,通過Plackett-Burman試驗,,以覆土作業(yè)牽引阻力為響應值,篩選出對牽引阻力影響敏感的參數(shù)為土壤-土壤滾動摩擦因數(shù),、土壤-65Mn靜摩擦因數(shù),、臨界法向應力、臨界切向應力,,通過最陡爬坡試驗確定各敏感參數(shù)的取值范圍,,通過Box-Behnken試驗優(yōu)化得出土壤-土壤滾動摩擦因數(shù)、土壤-65Mn靜摩擦因數(shù),、臨界法向應力,、臨界切向應力分別為0.15、0.31,、18.45kPa,、18.58kPa。以大豆種子為例,,建立了種溝土壤與種子互作離散元模型,,以種溝土壤與大豆種子碰撞恢復系數(shù)、靜摩擦因數(shù),、滾動摩擦因數(shù)為試驗因素,,以仿真堆積角為評價指標,通過Box-Behnken試驗優(yōu)化得出各試驗因素取值分別為0.57,、0.33、0.08,。建立了種溝土壤-種子-覆土裝置三者互作離散元模型,,并開展了試驗驗證,。結果表明,牽引阻力仿真值與實測值相對誤差平均值為2.22%,,堆積角仿真值與實測值相對誤差為1.61%,,覆土厚度和種子粒距變異系數(shù)仿真值與實測值相對誤差分別為4.89%、5.90%,,均較小,,所建立的種溝土壤-種子-覆土裝置三者互作離散元模型準確。

    Abstract:

    In order to solve the problem that there is a lack of accurate and reliable discrete element interaction model of seed furrow soil-seed-covering device in the study of the micro-movement law of seed furrow soil and seed in the operation of covering device of planter. Taking the cohesive soil with moisture content of (15.7±0.25)% as research object, the relevant parameters and models were calibrated based on EDEM. The traction resistance of soil covering operation was taken as the response value. Based on Plackett-Burman test, the parameters sensitive to traction resistance were selected as soil-soil rolling friction coefficient, soil-65Mn static friction coefficient, critical normal stress and critical shear stress. The range of values for each sensitive parameter was determined based on the steepest ascent test. Based on Box-Behnken experimental optimization, the values of soil-soil rolling friction coefficient, soil-65Mn static friction coefficient, critical normal stress, and critical shear stress were obtained as 0.15, 0.31, 18.45kPa, and 18.58kPa, respectively. Secondly, taking soybean seeds as example, the discrete element interaction model of seed furrow soil-seed was established. The collision recovery coefficient, static friction coefficient and rolling friction coefficient between seed furrow soil and soybean seeds were taken as the experimental factors. The simulation stacking angle was taken as the evaluation index. Through the optimization of Box-Behnken test, the values of each test factor were 0.57, 0.33, 0.08, respectively. Finally, the discrete element interaction model of seed furrow soil-seed-covering device was established, and the experimental verification was carried out. The results showed that the average relative error between the simulated and measured values of traction resistance was 2.22%. The relative error between the simulated and measured values of the stacking angle was 1.61 %. The relative errors between the simulated and measured values of soil cover thickness and seed spacing variation coefficient were 4.89% and 5.90%, respectively. They were all small. The established discrete element interaction model of seed furrow soil-seed-covering device was accurate.

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盧琦,劉芳建,劉立晶,劉忠軍,劉云強.種溝土壤-種子-覆土裝置互作離散元模型建立與驗證[J].農(nóng)業(yè)機械學報,2023,54(10):46-57. LU Qi, LIU Fangjian, LIU Lijing, LIU Zhongjun, LIU Yunqiang. Establishment and Verification of Discrete Element Model for Seed Furrow Soil-Seed-Covering Device[J]. Transactions of the Chinese Society for Agricultural Machinery,2023,54(10):46-57.

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  • 收稿日期:2023-04-11
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  • 在線發(fā)布日期: 2023-05-18
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