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A Comparison of Sampling Methods for a Standing Tree Acoustic Device

机译:立木声学设备采样方法的比较

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One method of evaluating potential product performance is the use of acoustic tools for identifying trees with high stiffness. Acoustic velocities for 100 standing labially pine (Pinus taeda) trees, obtained with the transmitting and receiving probes placed on the same face and opposite faces, were compared. Significant differences in velocity between the two methods were found, with velocity determined using the opposite-face method generally dependent on stem diameter, or the amount of wood through which the stress wave must pass. The only opposite-face method in which the velocities did not vary with dbh was for an assumed flight path where the stress wave traveled from the transmitting probe around the circumference of the stem in the outerwood and then down longitudinally to the receiving probe. Variation in velocities from hit-to-hit was 62% less using the opposite-face method compared with the same-face method. It is recommended to use the circumferential opposite-face (Vel_OC) calculation when determining stress wave velocity for a standing tree.
机译:评估潜在产品性能的一种方法是使用声学工具来识别具有高刚度的树木。比较了将发射和接收探针放置在同一面和相对面上获得的100棵松散的松树(Pinus taeda)树木的声速。发现两种方法之间的速度存在显着差异,使用反面方法确定的速度通常取决于杆直径或应力波必须通过的木材量。速度不随dbh改变而变化的唯一反面方法是在假定的飞行路径上,应力波从发射探头绕着外木中茎的圆周传播,然后沿纵向下降到接收探头。与同面方法相比,使用异面方法,每次打击之间的速度变化要少62%。在确定立木的应力波速度时,建议使用周向相对面(Vel_OC)计算。

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