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Value recovery from two mechanized bucking operations in the southeastern United States

机译:从美国东南部的两个机械式曲折作业中回收价值

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The value recovered from two mechanized bucking operations in the southeastern United States was compared with the optimal value computed using an individual-stem log optimization program, A VIS. The first operation recovered 94% of the optimal value. The main cause for the value loss was a failure to capture potential sawlog volume; logs were bucked to a larger average small end diameter than necessary. The result was that a portion of the stem with potential sawlog volume was being converted into lower value pulpwood. Although the value loss was relatively small, the length measurements were outside of the acceptable range and the machine needed to be recalibrated. The second operation recovered only 58% of the optimal value. The main cause of loss was poor length measurement, producing a number of short logs that would have been rejected as chip-and-saw logs. Statistical quality control charts from both operations show that logs were being cut too long for the first operation studied and too short for the second operation. These low cost control methods should be required for monitoring mechanized bucking operations. We believe they will help to reduce the value lost from inconsistent measurements.
机译:将在美国东南部的两次机械化屈曲操作中回收的值与使用单茎测井优化程序A VIS计算的最佳值进行了比较。第一次操作恢复了最佳值的94%。价值损失的主要原因是无法捕获潜在的锯木量。原木被压成比所需的更大的平均小端直径。结果是部分具有潜在锯木体积的茎被转化为价值较低的纸浆木。尽管价值损失相对较小,但长度测量值超出了可接受的范围,因此需要对机器进行重新校准。第二个操作仅恢复了最佳值的58%。造成损失的主要原因是长度测量不佳,产生了许多短木料,这些原木将被拒绝作为木屑和木料原木。这两个操作的统计质量控制图显示,对于所研究的第一个操作,原木的切割时间太长,而对于第二个操作,原木的切割时间太短。这些低成本的控制方法应被用来监视机械化的屈曲操作。我们相信它们将有助于减少因测量不一致而造成的损失。

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