Tree Felling with a Drill Cone

IF 2.7 2区 农林科学 Q1 FORESTRY Croatian Journal of Forest Engineering Pub Date : 2023-01-01 DOI:10.5552/crojfe.2023.2015
C. Knobloch, L. Richter, Jörn Erle
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Abstract

Motor-manual timber felling is one of the most dangerous operations in the forest and cannot be completely replaced by fully mechanized timber harvesting by a harvester when dealing with large and deciduous trees. Shifting the center of gravity of tree ready to be felled beyond its tipping line using conventional felling wedges is dangerous because the forest worker is directly behind the stem and under the tree crown until just before the tree falls. The worker can be hit by the trunk itself, but also by falling parts of the crown. In a preliminary study for the development of a new type of felling head, felling with a drill cone that can open the felling cut with the help of an applied torque was investigated. A drill cone does not require any special cutting technique, no counter forces to the tree, works without impulses, it is self-retaining and can be unscrewed again.In order to determine the torque required for felling the tree as a function of the tree parameters, the mathematical equation framework was established and practical experiments were used to determine the friction parameters and verify the calculations. The torque of the drill cone is used to bend the intact fibers of the hinge, shift the center of gravity of the tree in the direction of fall, and to overcome the friction of the drill cone on the felling cut. The effects of forward or backward leaning trees on the required torque can also be quantified. It has been shown that the efficiency of a drill cone is low, but this is compensated for by the high internal torque to lift ratio. The maximum measured input torque for felling trees with a felling diameter up to 55 centimeter was 100 Nm.
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用钻锥砍树
机动-手动伐木是森林中最危险的作业之一,在处理大型落叶树木时,不能完全由采伐机的完全机械化木材采伐所取代。使用传统的采伐楔子将准备被砍伐的树木的重心转移到其倾斜线之外是危险的,因为森林工人在树倒之前一直在树干的后面和树冠的下面。工人可能被树干本身击中,也可能被掉落的树冠部分击中。为开发一种新型采伐头进行了初步研究,研究了利用施加扭矩打开采伐切口的钻锥采伐。钻锥不需要任何特殊的切割技术,对采油树没有反作用力,工作时没有脉冲,它是自固定的,可以再次拧下。为了确定采伐树木所需的扭矩与树木参数的关系,建立了数学方程框架,并通过实际实验确定了摩擦参数,验证了计算结果。钻锥的扭矩用于弯曲铰链的完整纤维,使采油树的重心向下降方向移动,并克服钻锥对采伐切口的摩擦。前倾树或后倾树对所需扭矩的影响也可以量化。研究表明,钻锥的效率较低,但这可以通过较高的内扭矩与举升比得到补偿。采伐直径达55厘米的树木时,测量到的最大输入扭矩为100 Nm。
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来源期刊
CiteScore
5.20
自引率
12.50%
发文量
23
审稿时长
>12 weeks
期刊介绍: Croatian Journal of Forest Engineering (CROJFE) is a refereed journal distributed internationally, publishing original research articles concerning forest engineering, both theoretical and empirical. The journal covers all aspects of forest engineering research, ranging from basic to applied subjects. In addition to research articles, preliminary research notes and subject reviews are published. Journal Subjects and Fields: -Harvesting systems and technologies- Forest biomass and carbon sequestration- Forest road network planning, management and construction- System organization and forest operations- IT technologies and remote sensing- Engineering in urban forestry- Vehicle/machine design and evaluation- Modelling and sustainable management- Eco-efficient technologies in forestry- Ergonomics and work safety
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