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Simulation of cotyledon-soil dynamics using the discrete element method (DEM)

机译:采用离散元素法(DEM)模拟子叶土动力学(DEM)

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For epigeal seeds, cotyledons experience soil resistance as they move up through soil during the emergence process. Understanding cotyledon-soil dynamics is important for seedbed preparation to promote good seedling emergence. A discrete element model (DEM) was developed to simulate soybean seedling emergence. The cotyledon of soybean was represented by an ellipsoid according to the measured shape. Soil particles were represented by an assembly of spherical particles. As the cotyledon moved upwards through the soil particles, the cotyledon-soil dynamic characteristics were monitored for different cotyledon sizes and orientations (from lying flat to standing vertically). The cotyledon-soil dynamic characteristics (soil resistance, number of soil-cotyledon contacts, and soil kinetic energy) significantly increased as the cotyledon size increased, and generally decreased as the cotyledon angle increased. The simulated soil resistance to cotyledon was 7.08 N that was comparable with the experimental value of 8.02 N reported in the literature. The soil resistance increased from 1.64 to 15.4 N as the cotyledon size increased from 4 to 14 mm, which indicated that smaller seeds would have advantages in terms of soil resistance. A more vertically inclined cotyledon had less resistance force from the soil, which partially explained why hypocotyl tends to pull or push the cotyledon to a relatively upright position during the emergence of a seedling. The proposed model was able to provide useful insights into the micro-mechanics of the seedling emergence through soil.
机译:对于表观粒子,子叶经历了在出现过程中通过土壤移动时的土壤阻力。了解子叶 - 土壤动力学对饲养良好幼苗出现的种子制剂很重要。开发了一种离散元素模型(DEM)以模拟大豆幼苗出现。大豆的子叶由椭圆形根据测量的形状表示。土壤颗粒由球形颗粒的组装表示。随着子叶通过土壤颗粒向上移动时,针对不同的子叶尺寸和方向监测子叶 - 土壤动态特性(从垂直伸直伸直)。随着子叶尺寸的增加,子叶 - 土壤动态特性(土壤抗性,土壤 - 子叶触点和土壤动能)显着增加,随着子叶角的增加,通常降低。对子叶的模拟土壤抗性为7.08n,与文献中报道的8.02n的实验值相当。由于子叶尺寸从4-14毫米增加,土壤阻力从1.64升增加到15.4 n增加,这表明较小的种子在土壤抗性方面具有优势。更垂直倾斜的子叶具有来自土壤的抵抗力较小,这部分解释了为什么在幼苗的出现期间,下胚轴倾向于拉动或将子叶拉动或将子叶推向相对直立的位置。该拟议的模型能够通过土壤的幼苗出现的微型机械提供有用的见解。

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