首页> 外文会议>Annual International Meeting of the American Society of Agricultural and Biological Enginners >Adaptability of Chopper Harvester in Harvesting Sugarcane,Energy Cane, and Banagrass
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Adaptability of Chopper Harvester in Harvesting Sugarcane,Energy Cane, and Banagrass

机译:在收获甘蔗,能量甘蔗和平庸中的斩波收割机的适应性

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Energy crops are important sources of feedstock for biofuel production. Feedstock cost, accounting for more than 50% of biofuel operating cost, plays a significant role in the commercialization ofbiofuels. Energy crop harvesting cost is the biggest single contributor of the total feedstock production cost. Thus investigation of harvesters to improve productivity and efficiency, hence reducing costs, is important for biofuel production. The performance of an existing sugarcane harvester was evaluatedin terms of biomass recovery rate and field efficiency to assess its adoptability for energy cane harvesting. The harvester performance was compared in Hawaii fields with three different types of energy crops: energy cane, banagrass, and sugarcane. The biomass recovery rates achieved by the harvester were 83.0%, and 86.6%, and 52.3% respectively for energy cane, banagrass and sugarcane whereas the field efficiencies were 86.2%, 80.6%, and 59.6% respectively. The recovery rates in harvesting energy caneand banagrass were higher than the reference recovery rate of 73% provided by literature. Similarly, nominal field efficiency for a harvester provided by literature is 70%. The sugarcane harvester used in this work achieved higher field efficiency with energy cane and banagrass harvesting compared to the ASABE standard. Additionally, the limitations of existing machines in harvesting energy crops were analyzed to identify the main factors limiting biomass recovery rate and field efficiency. It was foundthat stubble leaning angles and machine off-track errors will affect most in the harvester's recovery rate, and plugging issues will affect the field efficiency the most.
机译:能源作物是生物燃料生产原料的重要来源。原料成本,占生物燃料运营成本的50%以上,在商业化方面发挥着重要作用。能源作物收获成本是总原料生产成本的最大单一贡献者。因此,调查收割机以提高生产率和效率,从而降低成本,对生物燃料生产是重要的。现有的甘蔗收割机的性能是评估生物量回收率的术语,以评估其对能量甘蔗收获的依赖性。在夏威夷田地比较了收割机性能,其中三种不同类型的能量作物:能量甘蔗,平庸和甘蔗。通过收割机实现的生物质回收率分别为83.0%和86.6%,分别为86.6%,分别为52.3%,而甘蔗分别为86.2%,80.6%和59.6%。收获能源Caneand Benagrass的回收率高于文献提供的73%的参考回收率。类似地,文献提供的收割机的标称场效率为70%。与ASABE标准相比,在这项工作中使用的甘蔗收割机与能量甘蔗和平庸收获实现了更高的现场效率。另外,分析了现有机器在收获能量作物中的局限性,以确定限制生物质回收率和现场效率的主要因素。它是茬倾斜角度和机器偏离轨道的误差会影响最严重的回收率,并且堵塞问题将影响现场效率。

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