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Infield Biomass Bales Aggregation Logistics and Equipment Track Impacted Area Evaluation

机译:内陆生物质捆包聚集物流和设备跟踪影响区评估

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摘要

Efficient bale stack location, infield bale logistics, and equipment track impacted area were conducted in three different studies using simulation in R. Even though the geometric median produced the best logistics, among the five mathematical grouping methods, the field middle was recommended as it was comparable and easily accessible in the field. Curvilinear method developed (8-259 ha), incorporating equipment turning (tractor: 1 and 2 bales/trip, automatic bale picker (ABP): 8-23 bales/trip, harvester, and baler), evaluated the aggregation distance, impacted area, and operation time. The harvester generated the most, followed by the baler, and the ABP the least impacted area and operation time. The ABP was considered as the most effective bale aggregation equipment compared to the tractor. Simple specific and generalized prediction models, developed for aggregation logistics, impacted area, and operation time, have performed well (0.88 ≤ R2 ≤ 0.99). An ABP of 8 bales capacity, also capable of 11 bales/trip, was recommended.
机译:在R中使用模拟在三个不同的研究中进行了有效的草捆堆放位置,田间草捆物流和设备履带影响区域。尽管几何中位数产生了最佳的物流,但在五种数学分组方法中,建议采用田间中间,因为具有可比性并且在现场易于访问。开发了曲线法(8-259公顷),包括设备翻转(拖拉机:每包1和2包,自动打包机(ABP):每包8-23包,收割机和打包机),评估了聚集距离,受影响区域和操作时间。收割机产生的影响最大,其次是打捆机,ABP的受影响面积和操作时间最少。与拖拉机相比,ABP被认为是最有效的草捆聚集设备。针对聚集物流,受影响区域和运营时间开发的简单的特定和广义的预测模型效果良好(0.88≤R2≤0.99)。建议使用8包的ABP,每趟还可以11包。

著录项

  • 作者单位

    North Dakota State University.;

  • 授予单位 North Dakota State University.;
  • 学科 Agricultural engineering.
  • 学位 M.S.
  • 年度 2017
  • 页码 164 p.
  • 总页数 164
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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