Impact of Slope on Productivity of a Self-levelling Processor
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作者:
Strandgard, Martin
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Univ Sunshine Coast, Australia Forest Operat Res Alliance, Richmond, Vic 3121, AustraliaUniv Sunshine Coast, Australia Forest Operat Res Alliance, Richmond, Vic 3121, Australia
Strandgard, Martin
[1
]
Alam, Muhammad
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Univ Melbourne, Richmond, Vic 3121, AustraliaUniv Sunshine Coast, Australia Forest Operat Res Alliance, Richmond, Vic 3121, Australia
Alam, Muhammad
[2
]
Mitchell, Rick
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Univ Sunshine Coast, Australia Forest Operat Res Alliance, Albany, WA 6330, AustraliaUniv Sunshine Coast, Australia Forest Operat Res Alliance, Richmond, Vic 3121, Australia
Mitchell, Rick
[3
]
机构:
[1] Univ Sunshine Coast, Australia Forest Operat Res Alliance, Richmond, Vic 3121, Australia
[2] Univ Melbourne, Richmond, Vic 3121, Australia
[3] Univ Sunshine Coast, Australia Forest Operat Res Alliance, Albany, WA 6330, Australia
Slope is a major factor affecting forest harvesting machine productivity. As ground-based harvesting methods are generally cheaper than the alternatives, forest managers need to know when ground-based harvesting equipment can be used on sloping sites. The study objective was to determine the effect of slope on the productivity, cycle time and elemental times of a Valmet 450 FXL self-levelling processor processing a 24 year-old, un-thinned radiata pine plantation previously felled and stacked by a feller-buncher. The study site slope was estimated using a LiDAR (Light Detection and Ranging) derived digital terrain model and classified using the regional terrain classification system. Study trees were selected from areas predominantly in the hilly (12-19 degrees) and steep (20-26 degrees) slope classes, as these classes made up the majority of the study site area. In contrast to previous research, no significant differences were found between the processor productivity, cycle time and elemental times (moving/positioning, swinging and processing) between the slope classes. This was believed to result from the processor working well within its capabilities processing the relatively small trees on the study site. Other important factors may have included that the trees were pre-felled by a feller-buncher and placed in high density rows with their butt ends aligned, which minimised the processor boom and track movements, and that steep slope trees were selected from areas at the lower end of the steep slope class (20-23 degrees). Further research is needed to determine whether the processor productivity would be significantly lower when processing larger trees on steeper slopes.
机构:
Univ Manchester, Alliance Manchester Business Sch, Prod Inst, Manchester, Lancs, EnglandUniv Manchester, Alliance Manchester Business Sch, Prod Inst, Manchester, Lancs, England
Westwood, Andy
Sensier, Marianne
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Univ Manchester, Alliance Manchester Business Sch, Prod Inst, Manchester, Lancs, EnglandUniv Manchester, Alliance Manchester Business Sch, Prod Inst, Manchester, Lancs, England
Sensier, Marianne
Pike, Nicola
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Univ Manchester, Alliance Manchester Business Sch, Prod Inst, Manchester, Lancs, EnglandUniv Manchester, Alliance Manchester Business Sch, Prod Inst, Manchester, Lancs, England
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Univ Alcala De Henares, Dept Econ, Alcala De Henares, SpainUniv Alcala De Henares, Dept Econ, Alcala De Henares, Spain
Quiroga, Sonia
Suárez, Cristina
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Univ Alcala De Henares, Dept Econ, Alcala De Henares, SpainUniv Alcala De Henares, Dept Econ, Alcala De Henares, Spain
Suárez, Cristina
Fernandez-Haddad, Zaira
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Secretariat Social Dev, Management Ctr Evaluat & Monitoring Social Progra, Mexico City, DF, MexicoUniv Alcala De Henares, Dept Econ, Alcala De Henares, Spain
Fernandez-Haddad, Zaira
Philippidis, George
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Ctr Agrofood Res & Technol CITA, Aragonese Agcy Res & Dev ARAM, Unit Agrofood Econ & Nat Resources, Zaragoza, Spain
Univ Loyola Andalusia, Dept Econ, Seville, SpainUniv Alcala De Henares, Dept Econ, Alcala De Henares, Spain
机构:
Univ Manchester, Alliance Manchester Business Sch, Manchester, England
Univ Manchester, Prod Inst, Manchester, EnglandUniv Manchester, Alliance Manchester Business Sch, Manchester, England
McCann, Philip
Yuan, Pei-Yu
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Univ Birmingham, City Reg Econ & Dev Inst, Birmingham, EnglandUniv Manchester, Alliance Manchester Business Sch, Manchester, England
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Univ Manchester, Prod Inst, Alliance Manchester Business Sch, Manchester, EnglandUniv Manchester, Prod Inst, Alliance Manchester Business Sch, Manchester, England