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Forces and Stresses Generated During Rigging Operations

机译:索具操作过程中产生的力和应力

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Rigging is one of the most dangerous aspects of arboriculture, yet there are no robust studies of the forces and stresses generated during rigging. Compounding the inherent danger of rigging is the structurally-deficient condition of many trees that are removed using rigging. Red pines (Pinus resinosaAit) (n = 13) were removed using conventional techniques, and forces at the block and in the rope were measured as the top, and four subsequent pieces were rigged with a block and Port-A-Wrap. Stress inthe trunk at breast height was calculated from strain measurements and each tree's modulus of elasticity. Multiple regression was used to determine which independent variables (mass of piece, fall distance and fall ratio, notch angle and depth) best predicted forces. Tops and pieces exhibited different relationships with mass, which was the best predictor of force at the block and tension in the rope. Other variables were not as important and exhibited counter-intuitive relationships with forces. Therewere few differences m stress generated when removing tops and pieces, which appeared to be due to greater deflection higher in the trunk when tops were removed.
机译:索具是树木栽培中最危险的方面之一,但对索具过程中产生的力和应力尚无可靠的研究。索具固有的危险加剧了许多用索具拆除的树木的结构缺陷。使用常规技术将红色的松树(Pinus resinosaAit)(n = 13)去除,并在顶部和顶部测量木块和绳子上的力,然后用木块和Port-A-Wrap捆扎四个后续的块。根据应变测量值和每棵树的弹性模量计算出胸部高度处树干的应力。多元回归用于确定哪个独立变量(件的质量,下落距离和下落比率,缺口角度和深度)是最佳预测力。顶部和碎片与质量的关系不同,这是对块体作用力和绳索张力的最佳预测指标。其他变量不那么重要,并且表现出与力的反直觉关系。去除顶部和碎片时产生的应力差异很小,这似乎是由于去除顶部时树干的挠度更大。

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