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Harvesting system simulation using a systems dynamic model

机译:使用系统动态模型进行收割系统仿真

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To compete in the current work environment in the southeastern United States, forestry companies and logging contractors must manage their harvest systems to ensure efficient production. Efficiency in this case can be defined in terms of tons of wood produced per unit of system cost. Site and system factors affect the output from a stand and affect the efficiency of different harvesting systems. A model was developed that can simulate harvesting system production efficiency with changing stand and terrain parameters. Four common southeastern US harvesting systems were included in the model. The model includes functions, adjustable by the user, that quantify the efficiency of each harvest system is measured with respect to terrain parameters (slope and average extraction distance), as well as stand parameters (average tree diameter, stocking intensity, and harvest intensity). By adjusting any of these parameters, it is possible to compare the four harvest systems and to perform various sensitivity analyses. Result examples presented in the article include change in productivity with increasing tree size, productivity changes of a cut-to-length system in varied silvicultural conditions, as well as the associated evaluation of the cost of inefficiency of each system.
机译:为了在美国东南部当前的工作环境中竞争,林业公司和伐木承包商必须管理其采伐系统以确保有效的生产。在这种情况下,效率可以用单位系统成本产生的木材吨数来定义。场地和系统因素影响展台的产量,并影响不同收获系统的效率。开发了一个模型,该模型可以通过更改林分和地形参数来模拟收获系统的生产效率。该模型包括美国东南部的四个常见采伐系统。该模型包括可由用户调节的功能,这些功能可量化相对于地形参数(坡度和平均提取距离)以及林分参数(平均树径,放养强度和收获强度)测量的每个收获系统的效率。通过调整这些参数中的任何一个,可以比较四个收获系统并执行各种灵敏度分析。本文提供的结果示例包括随着树木大小的增加而导致生产力的变化,在各种造林条件下定尺系统的生产力变化以及对每个系统效率低下的成本的相关评估。

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