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首页> 外文期刊>International Journal of Forest Engineering >Modeling Production of Longline Yarding Operations in Coastal British Columbia
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Modeling Production of Longline Yarding Operations in Coastal British Columbia

机译:沿海哥伦比亚沿海征地运营生产

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Two Madil 046 skyline yarders, rigged as slackline systems and equipped with Ballenger motorized carriages, were studied by field crews from the University of British Columbia - Forest Operations Group for approximately six months at sites on the west coast of Vancouver Island in British Columbia. A continuous turn element time study, using handheld data recorders was employed to collect data throughout the study. Mean cycle times for the two operations ranged from 11.5 to 13.5 minutes per cycle. Delays contributed at least 20 percent of the cycle time for both operations and were primarily caused by carriage related problems. Average piece size differed by more than 56 percent and created significant differences in overall system productivity. While average cycle time for the two systems differed by at least two minutes, the system with the longer cycle time had higher mean production due to the larger volume per piece and per cycle. The study results strongly suggest that maximizing volume per cycle is critical to maintaining productivity and minimizing costs, even though cycle time may be increased. In this case, one system was able to capitalize on larger average piece size to significantly improve hourly production, even though cycle times for this yarder were higher. More effort is needed during operations to monitor volume (or weight) per cycle and consistently maintain the maximum volume per cycle for existing conditions.
机译:两位Madil 046 Skyline Yarders,被英国哥伦比亚大学的船员研究了Slackline Systems,并配备了有鬼机动车,森林运营集团在不列颠哥伦比亚省Vancouver Island西海岸的景点大约六个月。使用手持数据记录器的连续转弯元件时间研究在整个研究中收集数据。两个操作的平均循环时间范围从11.5到13.5分钟。延迟贡献了两种操作的循环时间的至少20%,主要由运输相关问题引起。平均尺寸差异超过56%,并产生了整体系统生产率的显着差异。虽然两个系统的平均循环时间至少在两分钟内不同,但由于每件较大的卷和每个循环,系统具有较长循环时间的系统具有更高的平均生产。研究结果强烈表明,即使可以增加循环时间,每个周期最大化每个周期的体积至关重要。在这种情况下,一个系统能够利用更大的平均片段尺寸,以显着提高每小时生产,即使这个码头的循环时间较高。在操作期间需要更多的努力来监视每个周期的体积(或重量),并且始终保持现有条件的每个周期的最大卷。

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