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Installing cables did not affect annual radial increment in co-dominant stems of red oaks

机译:安装电缆不会影响红橡树主茎的年度径向增量

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Arborists install cables to support co-dominant stems. The adaptive growth hypothesis predicts that doing so will alter radial increments in the stems because their motion will have been restricted. To facilitate the wind-induced motion of cabled stems, cables made of more extensible material have been suggested as an alternative to systems made of steel. Cables made of steel and polypropylene were installed in red oaks (Quercus rubra L.). Trees were harvested after five years and annual radial increment was measured for the previous sixteen years in four directions (incident with and perpendicular to the direction of the cable) on five discs removed from two co-dominant stems that were cabled in each tree. Annual radial increment did not change in response to the installation of cables with one exception: in the three years following installation, it was greater incident with the cable on two discs immediately proximal and distal to the eyebolt in each co-dominant stem to which steel cables were attached. The exception appears to be due to the formation of wound wood. The results contradict the adaptive growth hypothesis, but this was likely due to cables not restricting wind-induced motion to the extent achieved in previous studies
机译:树木学家安装电缆以支撑主茎。自适应生长假说预测,这样做会改变茎的径向增量,因为它们的运动将受到限制。为了促进电缆杆的风致运动,已经提出了由可延展性更大的材料制成的电缆作为钢制系统的替代方案。将钢和聚丙烯制成的电缆安装在红橡树(Quercus rubra L.)中。五年后收获树木,并从每个树木的两个主干中取出五个圆盘,在四个方向(入射方向和垂直于电缆的方向)上测量前十六年的年径向增量。每年的径向增量不会因电缆的安装而发生变化,但有一个例外:在安装后的三年中,电缆在每个共同主干上紧接在吊环螺栓近端和远端的两个圆盘上的事故更多。电缆已连接。异常似乎是由于缠绕木材的形成。结果与自适应增长假设相矛盾,但这可能是由于电缆未将风致运动限制在先前研究中所达到的程度

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