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CORRESPONDENCE ANALYSIS AS A TOOL TOWARDS OPTIMIZING THE USE OF WHITE BIRCH IN THE PANEL INDUSTRY

机译:对应分析作为优化面板行业中白桦树使用的工具

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摘要

This study examines parts distribution for lumber sawn from conventional-length and short-length logs. Select, No. 1 Common, and No. 2A Common white birch lumber was simulation-processed using both rip-first and crosscut-first processing methods witha typical panel-industry cutting order. A white birch database was developed and used to simulate crosscut-first and rip-first rough mills and determine the effects of the species physio-morphological characteristics on yield. ROMI-RIP and ROMI-CROSS simulations show that conventional-length lumber offers the greatest production flexibility because it is able to produce long and wide components. These components can be broken down into combinations of shorter length parts. Lumber from the short log sawmill produces a greater variety of components in order to maximize part yield from the lumber. Correspondence analysis determined that lumber grade and processing method are the two variables explaining most of the variability in component production. Overall lumber type (from conventional-versus short log sawmill) contributed less among the sources of variability in the model. When component distributions were analyzed on a per grade basis, lumber type was more important than process choice in explaining component variability, for the highest and lowest grade lumber. For No. 1 Common lumber, the process explained relatively more of the variability in comparison to the other grades
机译:这项研究检查了从常规长度和短长度原木锯制的木材的零件分布。 Select,No。1 Common和No. 2A Common的白桦木材是按照典型的面板行业切割顺序使用裂口优先和横切优先的加工方法进行模拟加工的。开发了白桦数据库,并将其用于模拟横切优先和撕裂优先的粗磨机,并确定物种生理形态特征对产量的影响。 ROMI-RIP和ROMI-CROSS仿真表明,常规长度的木材具有最大的生产灵活性,因为它能够生产长而宽的零件。这些组件可以分解为较短长度部分的组合。短木锯材厂的木材生产出更多的零件,以使木材的零件产量最大化。对应分析确定木材等级和加工方法是解释零件生产中大多数变化的两个变量。在模型的可变性来源中,总体木材类型(来自传统木材与短木锯木材)的贡献较小。当按等级分析成分分布时,对于最高和最低等级的木材,在解释成分变异性方面,木材类型比工艺选择更为重要。与其他等级的木材相比,对于1号普通木材,该方法可以解释相对更多的变异性

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