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基于Tavares模型的多面體棉籽離散元參數(shù)標(biāo)定與試驗(yàn)
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新疆維吾爾自治區(qū)重大科技專項(xiàng)(2022A02010-2)和新疆生產(chǎn)建設(shè)兵團(tuán)英才支持計(jì)劃青年項(xiàng)目(2023CB008-09)


Parameter Calibration and Experiment of Polyhedral Cottonseed Discrete Element Based on Tavares Model
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    摘要:

    針對(duì)基于離散元法的棉籽壓縮破碎過(guò)程中缺少準(zhǔn)確仿真模型的問(wèn)題,,本文以新陸早84號(hào)棉籽為研究對(duì)象,,結(jié)合物理試驗(yàn)與仿真試驗(yàn),對(duì)棉籽參數(shù)進(jìn)行標(biāo)定,?;谌S掃描技術(shù),使用Solidworks 2022中的網(wǎng)格建模功能,,快速建立棉籽多面體模型,。采用堆積角試驗(yàn)對(duì)棉籽種間參數(shù)進(jìn)行標(biāo)定,得到棉籽-棉籽碰撞恢復(fù)系數(shù),、棉籽-棉籽靜摩擦因數(shù),、棉籽-棉籽滾動(dòng)摩擦因數(shù)的最優(yōu)參數(shù)組合為0.106、0.248,、0.105,,仿真堆積角與實(shí)際堆積角相對(duì)誤差為0.28%,證明棉籽種間參數(shù)準(zhǔn)確,。通過(guò)單顆粒壓縮試驗(yàn)對(duì)Tavares模型參數(shù)進(jìn)行標(biāo)定,,以棉籽破碎力與破碎能為指標(biāo)進(jìn)行驗(yàn)證,結(jié)果表明棉籽破碎力與破碎能相對(duì)誤差分別為2.37%和2.87%,,說(shuō)明構(gòu)建的棉籽模型和Tavares模型參數(shù)可以表征棉籽壓縮破碎過(guò)程,。

    Abstract:

    Aiming to address the lack of an accurate simulation model for the compression and crushing process of cottonseed, based on the discrete element method, the Xinluzao 84 cottonseed was used as the research object, and its parameters were calibrated through the combination of physical tests and simulations. According to the actual morphological characteristics of cottonseed, the volume of cottonseed was calculated by using the average particle size to represent the size of cottonseed in the vertical length direction, and the result was less error with the volume obtained by using the triaxial dimensions, which proved that it was reliable to use the average particle size to describe the size of cottonseed in the vertical length direction. The polyhedral model of cottonseed was rapidly constructed by using the mesh modelling function in Solidworks 2022.The correlation was established between the volume relative error, simulation time, and the number of facets of the model. It was determined that the optimal number of facets for the polyhedral cottonseed model was 1.098, with corresponding simulation time of 171 minutes and volume relative error of 0.46%. The stacking angle test was employed to calibrate the interspecific parameters of cottonseed. The results indicated that the collision recovery coefficient of cottonseed-cottonseed, the static friction coefficient of cottonseed-cottonseed, and the rolling friction coefficient of cottonseed-cottonseed had a significant effect on the stacking angle. The optimal parameter combinations were determined to be 0.106, 0.248, and 0.105, respectively. Relative error of 0.28% was observed between the simulation stacking angle and the actual stacking angle when using these parameter values, demonstrating the accuracy of the cottonseed parameters. The parameters of the Tavares model were calibrated and verified by the indexes of cottonseed crushing force and crushing energy through the single particle compression test. The results showed that the relative errors of cottonseed crushing force and crushing energy were 2.37% and 2.87%, respectively. This indicated that the constructed cottonseed model and the calibrated parameters of the Tavares model were able to effectively characterize the compression and crushing process of cottonseed.

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李元超,田辛亮,趙巖,劉學(xué)虎,周脈樂(lè),戴馥霜,王文哲.基于Tavares模型的多面體棉籽離散元參數(shù)標(biāo)定與試驗(yàn)[J].農(nóng)業(yè)機(jī)械學(xué)報(bào),2024,55(7):124-131,220. LI Yuanchao, TIAN Xinliang, ZHAO Yan, LIU Xuehu, ZHOU Maile, DAI Fushuang, WANG Wenzhe. Parameter Calibration and Experiment of Polyhedral Cottonseed Discrete Element Based on Tavares Model[J]. Transactions of the Chinese Society for Agricultural Machinery,2024,55(7):124-131,,220.

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  • 收稿日期:2024-04-29
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  • 在線發(fā)布日期: 2024-07-10
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