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水稻芽種離散元主要接觸參數(shù)仿真標(biāo)定與試驗(yàn)
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國(guó)家重點(diǎn)研發(fā)計(jì)劃項(xiàng)目(2017YFD0700802),、國(guó)家自然科學(xué)基金項(xiàng)目(51675188),、廣東省科技計(jì)劃項(xiàng)目(2014B020207002),、現(xiàn)代農(nóng)業(yè)產(chǎn)業(yè)技術(shù)體系建設(shè)專項(xiàng)資金項(xiàng)目(CARS-01-33)和廣東省公益研究與能力建設(shè)項(xiàng)目(2014A020208112)


Simulative Calibration and Experiment on Main Contact Parameters of Discrete Elements for Rice Bud Seeds
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    摘要:

    水稻播種時(shí)芽種含水率高、種芽長(zhǎng)度差異大,,表現(xiàn)出與其他作物種子不同的物理特性。為減小仿真分析時(shí)芽種參數(shù)設(shè)置不準(zhǔn)確而形成的模擬系統(tǒng)誤差,,本文基于水稻芽種摩擦角的試驗(yàn)與仿真測(cè)定,,標(biāo)定出不同含水率下的水稻芽種離散元主要接觸參數(shù)。通過(guò)芽種的摩擦角(兩種休止角及滑動(dòng)摩擦角)離散元仿真試驗(yàn),,建立了芽種-不銹鋼板靜摩擦因數(shù),、芽種-芽種靜摩擦因數(shù)、芽種-芽種滾動(dòng)摩擦因數(shù)與3個(gè)摩擦角之間的三元回歸方程,。以芽種的3個(gè)摩擦角試驗(yàn)結(jié)果作為修正指標(biāo),,對(duì)回歸方程數(shù)值求解,得到當(dāng)仿真結(jié)果與試驗(yàn)結(jié)果的擬合誤差達(dá)到允許范圍內(nèi)的3個(gè)主要接觸參數(shù),。將標(biāo)定后的參數(shù)進(jìn)行試驗(yàn)驗(yàn)證,,分別對(duì)不同含水率下的芽種摩擦角的仿真測(cè)定與實(shí)測(cè)結(jié)果進(jìn)行對(duì)比分析,相對(duì)誤差均小于2.75%,,表明水稻芽種離散元模型與實(shí)際顆粒物料體現(xiàn)出相同的摩擦特性,,建立的回歸模型滿足不同含水率芽種參數(shù)的標(biāo)定要求。對(duì)其他5個(gè)品種的水稻芽種摩擦角實(shí)測(cè)值與仿真結(jié)果進(jìn)行對(duì)比分析,,相對(duì)誤差均在5.54%以內(nèi),。該水稻芽種的離散元模型及接觸參數(shù)可為水稻精密播種裝置的動(dòng)態(tài)仿真提供參考。

    Abstract:

    Rice bud seeds exhibit different physical properties from other crop seeds as high moisture content and large length difference of rice buds. Therefore, it is essential to calibrate the main discrete elements contact parameters of rice bud seeds with different moisture contents, and reduce the simulation system error that caused by inaccurate parameters of rice bud seeds. Three main contact parameters were calibrated, including coefficient of static friction between bud seeds and stainless plate (X1), coefficient of static friction between bud seeds (X2) and coefficient of rolling friction between bud seeds (X3), through experimental determination combined with simulation test of rice bud seeds friction angle. Two dynamic repose angles α and β and slipping friction angle γ were formed with three devices, and measured with the software InSight Explorer based on image processing technology. Then through discrete element simulation test of bud seeds frictions with EDEM, the ternary regression equation between the three coefficients X1, X2 and X3 and the three friction angles was established. The experimental results of the three frictions were the correction index, and the regression equation was numerically solved to obtain the three main content parameters. The verification test of the calibration parameters showed that the relative error between simulation and experiment results of the bud seeds friction angles with different moisture contents was less than 2.75%. So the discrete element model of rice bud seeds and the actual particle material reflected the same friction characteristics, and the regression model satisfied the calibration requirements for bud seeds parameters with different moisture contents. Furthermore, the relative error of the other variety rice bud seeds was less than 5.54%, which indicated that the calibrated discrete element model and contact parameters of the bud seeds can be applied to the dynamic simulation of the precision sowing device.

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鹿芳媛,馬旭,譚穗妍,陳林濤,曾令超,安沛.水稻芽種離散元主要接觸參數(shù)仿真標(biāo)定與試驗(yàn)[J].農(nóng)業(yè)機(jī)械學(xué)報(bào),2018,49(2):93-99. LU Fangyuan, MA Xu, TAN Suiyan, CHEN Lintao, ZENG Lingchao, AN Pei. Simulative Calibration and Experiment on Main Contact Parameters of Discrete Elements for Rice Bud Seeds[J]. Transactions of the Chinese Society for Agricultural Machinery,2018,49(2):93-99.

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  • 收稿日期:2017-06-27
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  • 在線發(fā)布日期: 2018-02-10
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