臂尖控制和旋转舱对货代装货效率的影响

IF 2.7 2区 农林科学 Q1 FORESTRY Croatian Journal of Forest Engineering Pub Date : 2023-11-10 DOI:10.5552/crojfe.2024.2179
Florian Hartsch, Marian Schönauer, Christopher Pohle, Lorenz Breinig, Thilo Wagner, Dirk Jaeger
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引用次数: 0

摘要

气候变化以及相关的热浪和干旱导致中欧大量木材受损。为了应对这些挑战,由于其高生产率和工作安全性,通常采用由单手柄采伐机和转运机组成的机械化木材采伐系统。尽管这些工作系统具有优势,但操作先进的林业机器需要长时间的培训,并且对机器操作员来说需要高度的精神压力。近年来,操作员辅助系统已安装在森林机器,目的是减少机器操作员的脑力工作量,从而提高生产力。然而,对于操作员辅助系统对生产效率的实际影响的了解仍然缺乏。本案例研究通过时间研究的方式,调查了最近发布的两种操作员辅助功能——智能臂架控制(IBC)和旋转舱(RC)——在装载周期内对生产率的影响。因此,IBC和RC在不同的装载设置中使用货代John Deere 1210G进行了测试。测试了3种加载角度(与机床轴线方位逆时针方向分别为55°、90°和125°),以及5种加载距离(与起重机立柱距离4 m、5.5 m、7 m、8.5 m和10 m)。15个加载位置使用四种变体(I: IBC关闭RC关闭,II: RC打开IBC关闭,III: IBC打开RC关闭,IV: IBC打开RC打开)进行采样,每个位置和变体捕获10个复制,总共产生600个加载周期。当操作员没有任何系统支持时,每个装载周期的平均时间消耗为20.6±0.114秒。IBC的使用使每个装载周期的时间消耗显著减少了2秒。此外,当IBC与旋转舱结合使用时,可以进一步节省时间,每个装载周期的平均时间消耗为17.8±0.114秒(或改善14%)。虽然使用IBC和RC时观察到的时间消耗最低,但单独使用RC并没有显示出任何显着的时间改进。由于装载活动约占木材运输总周期时间的50%,因此在此工作要素中节省的潜在时间对于进一步提高工作效率至关重要。该试点案例研究量化了在实验环境中加载IBC和RC时节省的时间。研究结果可作为进一步研究影响高度机械化木材采伐系统生产力的因素的基础。
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Effects of Boom-Tip Control and a Rotating Cabin on Loading Efficiency of a Forwarder
Climate change and associated heat waves and droughts are causing enormous amounts of damaged wood in Central Europe. To face these challenges, mechanized timber harvesting systems consisting of single-grip-harvesters and forwarders are commonly employed due to their high productivity and work safety. Despite the advantages of these work systems, the operation of advanced forestry machines requires lengthy training and entails high levels of mental strain for machine operators. In recent years, operator assistance systems have been installed in forest machines with the intention of reducing mental workload of machine operators, thereby improving productivity. However, knowledge of the actual effect of operator assistance systems on productivity is still lacking.The present case study surveyed the effect of two recently released operator assitance features, Intelligent Boom Control (»IBC«) and a rotating cabin (»RC«), on productivity during loading cycles, by means of a time study. Therefore, IBC and RC were tested in different loading settings using a forwarder, John Deere 1210G. Three loading angles were tested (55°, 90° and 125° azimuthal and counterclockwise to the machine axis) in combination with five loading distances (4 m, 5.5 m, 7 m, 8.5 m, and 10 m distance from the crane pillar). The 15 loading positions were sampled using four variants (I: IBC off RC off, II: RC on IBC off, III: IBC on RC off, IV: IBC on RC on), capturing 10 replications for each position and variant, resulting in 600 loading cycles in total.When the operator was not supported by any system, mean time consumption per loading cycle amounted to 20.6 ± 0.114 sec. The utilization of IBC resulted in a significant reduction in time consumption of 2 seconds per loading cycle. Moreover, further time savings were observed when IBC was engaged in combination with a rotating cabin, leading to a mean time consumption of 17.8 ± 0.114 sec (or 14% improvement) per loading cycle. Although the lowest time consumption was observed when IBC and RC were engaged, the use of RC alone did not show any significant time improvements.Since loading activities occupy approximately 50% of the total cycle time in timber forwarding, potential time savings within this work element are crucial for further improvements of work productivity. This pilot case study quantified the time savings when IBC and RC were engaged during loading in an experimental setting. The results can be used as a basis for further investigations dealing with factors influencing the productivity of highly mechanized timber harvesting systems.
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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
期刊最新文献
Incorporating Simulators into a Training Curriculum for Forestry Equipment Operators Comparing Different Replacement Policies for Logging Machines in Brazil Effects of Boom-Corridor and Selective Thinnings on Harvester Productivity in Dense Small Diameter Pyrenean Oak (Quercus pyrenaica Willd.) Coppices in Spain Soil Characteristics in Oak Lowland Stand Assessment of Tractor Tires Used in Forest Conditions in Terms of Traction Performance and Impact on Ground
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