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A New Grain Harvesting System for Single-Pass Grain Harvest, Biomass Collection, Crop Residue Sizing, and Grain Segregation

机译:一种用于单次通过谷物收割,生物量收集,作物残茬分级和谷物分离的新型谷物收割系统

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摘要

A cereal grain harvesting system is introduced that combines existing technologies in a unique way to improve cereal grain harvest performance, increase profitability, and efficiently collect biomass. The harvesting system is comprised of three machines: one to reap grain, harvest biomass, and size crop residue for no-till seeding; a second to thresh and winnow the grain; and a third to separate the grain by quality for added value. This study describes the new harvesting system and the development of one of the system's major components: the reaper/flail harvester. The reaper/flail harvester consists of a mobile power unit, a stripper header to harvest the crop, and a flail to chop the standing residue into small pieces. A prototype harvester was fabricated and tested to determine system design criteria and performance characteristics in terms of machine power requirements, quantity of biomass collected, and bulk density of the material harvested. Trials were conducted in seven wheat ( Triticum aestivum L.) fields in Oregon during 2005 and 2006 that ranged in yield from 3.3 to 6.4 t ha -1 . Harvester performance was evaluated at various travel speeds, straw chop heights, and with different types of wheat. Flail power requirements were highly linearly correlated with quantity and rate of biomass chopped (R 2 = 0.91). The maximum reaping power requirement was 2.7 kW m -1 , only slightly higher than the no-load power requirement of 1.9 kW m -1 . Power requirements for reaping, conveying, and flailing ranged from a low of 5.0 to a high of 13.5 kW m -1 depending on travel speed, crop yield, biomass concentration, and chop height. Values were linearly correlated with the combined grain, chaff, and biomass feed rate (t h -1 ) with an R 2 of 0.88. Total machine power requirements for a harvester with a 7.3 m header would be about 175 kW, including 75 kW for propulsion, losses, and reserve. Chaff yield in the grain/chaff (graff) mixture harvested exceeded 2 t ha -1 in six of the seven trials. With chaff valued at $23 t -1 , collecting 2 t ha -1 of chaff would increase farm revenues by $46 ha -1 . Realistic graff densities of awned wheat were less than 1/11 that of clean grain, and new, efficient material handling systems would need to be developed to have harvesting capacities comparable to that of a conventional combine-based system. Awnless wheat had graff densities that averaged about 1/5 that of clean grain. Equipment is commercially available to handle this volume of material and have harvesting field capacities comparable to that of a conventional combine-based system.
机译:引入了谷物收割系统,该系统以独特的方式结合了现有技术,从而提高了谷物收割性能,增加了盈利能力并有效地收集了生物量。收割系统由三台机器组成:一台用于收割谷物,收获生物量,以及对免耕播种的农作物残茬进行分级;一秒钟打谷并吹出谷物;第三是按质量区分谷物以增加价值。这项研究描述了新的收割系统和系统主要组成部分之一的开发:收割机/连fla收割机。收割机/连fla收割机包括一个移动电源,一个收割机割台(用于收获农作物)和一个连ail割机,用于将残留的残渣切成小块。制造并测试了原型收割机,以确定系统的设计标准和性能特征,包括机器功率要求,所收集的生物量和所收获物料的堆积密度。在2005年至2006年期间,在俄勒冈州的七个小麦(Triticum aestivum L.)田间进行了试验,产量范围为3.3至6.4 t ha -1。在各种行进速度,稻草高度和不同类型的小麦下评估收割机性能。连il功率需求与切碎的生物质的数量和速率高度线性相关(R 2 = 0.91)。最大收割功率要求为2.7 kW m -1,仅略高于1.9 kW m -1的空载功率要求。收割,运输和打碎的功率要求范围从低至5.0到高至13.5 kW m -1,具体取决于行进速度,作物产量,生物质浓度和排骨高度。该值与谷物,谷壳和生物质的总进料速率(t h -1)线性相关,R 2为0.88。具有7.3 m割台的收割机的总机器功率要求约为175 kW,其中包括75 kW的推进力,损失和储备。在七个试验中的六个试验中,收获的谷物/糠(混合物)混合物中的糠的产量超过了2 t ha -1。谷壳的价值为$ 23 t -1,收集2 t ha -1谷壳将使农场收入增加$ 46 ha -1。遮阳棚小麦的实际草皮密度小于干净谷物的实际草皮密度,因此需要开发新的,有效的物料处理系统,使其具有与传统的联合收割机系统相当的收割能力。小麦籽粒的平均密度约为干净谷物的1/5。设备可在市场上买到,用于处理这种体积的材料,并且具有与传统基于联合收割机的系统相当的收割场能力。

著录项

  • 来源
    《Transactions of the ASABE》 |2008年第5期|p.1519-1527|共9页
  • 作者

    M. C. Siemens D. E. Hulick;

  • 作者单位

    The authors are Mark C. Siemens, A SABE Member Engineer, Agricultural Engineer, formerly with USDA-ARS Columbia Plateau Conservation Research Center, Pendleton, Oregon;

    currently with Department of Agricultural and Biosystems Engineering, University of Arizona, Yuma Agricultural Center, Yuma, Arizona;

    and Donald E. Hulick, former Engineering Technician, USDA-ARS, Columbia Plateau Conservation Research Center, Pendleton, Oregon. Corresponding author: Mark C. Siemens, University of Arizona, Yuma Agricultural Center, 6425 W. 8th St., Yuma, AZ 85364;

    phone: 928-782-3836;

    fax: 928-782-1940;

    e-mail: siemens@cals.arizona.edu.;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Biomass, Biomass collection, Cereal grain, Chaff, Flail, Harvester, Harvesting system, Power requirement, Reaper, Residue management, Stripper header, Wheat;

    机译:生物质;生物质收集;谷类谷物;Ch子;连Fla;收割机;收割系统;电力需求;收割机;残渣管理;汽提塔割台;小麦;

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