...
首页> 外文期刊>Transactions of the ASAE >SOIL COMPACTION BY MANURE SPREADERS EQUIPPED WITH STANDARD AND OVERSIZED TIRES AND MULTIPLE AXLES
【24h】

SOIL COMPACTION BY MANURE SPREADERS EQUIPPED WITH STANDARD AND OVERSIZED TIRES AND MULTIPLE AXLES

机译:标准,超大轮胎和多轴的撒肥机对土壤的压实

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

A study was conducted on a heavy clay soil to evaluate soil compaction induced by different traffic treatments associated with liquid manure spreader systems. Five spreader weights (from 96 to 218 kN), two running gears (tandem and tridem, i.e., three axles) and two types of tire (conventional low section tire and oversized tire) were combined to obtain six traffic treatments, representative of liquid manure spreading operations in Quebec. Soil dry bulk density ( ñb) and cone index (CI) were measured to evaluate compaction. Tire rut depths and the lateral influence zone were also investigated in the study. For a single pass of a spreader, soil compaction was confined to the tilled layer (about 0-250 mm depth) regardless of traffic treatments, and this did not affect emergence rates and yields of soybean under the particular soil and climate conditions that prevailed at the time of the study. Neither tandem nor tridem running gears were found to adequately contain soil compaction within the tilled layer for total spreader weights exceeding 154 kN. The acceptable limitation for a tandem spreader with conventional 21.5L-16.1 tires would be a total load of about 96 kN, resulting in average ground pressures of 150 kPa or less. If medium capacity spreaders are required, oversized tires are recommended for manure spreading on prairies or post-seeding applications on small grain crops. Finally, the recourse to multiple-axle running gears for larger spreaders to maintain or reduce unit load per axle or ground pressure does not result in less soil compaction than lower capacity tandem spreaders with comparable axle loads and ground pressure.
机译:在重粘土上进行了一项研究,以评估与液体肥料撒播机系统相关的不同交通处理所引起的土壤压实。五个吊具重量(从96到218 kN),两个行走机构(纵排和三叉,即三根车轴)和两种轮胎(常规的低断面轮胎和超大轮胎)组合在一起,以获得六种交通处理,代表液态肥料在魁北克开展业务。测量了土壤干重密度(?b)和圆锥指数(CI)以评估压实度。轮胎车辙深度和横向影响区也进行了研究。对于摊铺机的单次通过,无论采用何种运输方式,土壤压实都限于耕种层(约0-250毫米深度),并且这并不影响在特定土壤和气候条件下普遍存在的大豆出苗率和大豆产量。学习时间。对于总撒布机重量超过154 kN的情况,未发现串联或Tridem行走机构在耕层内充分包含土壤压实度。对于具有常规21.5L-16.1轮胎的串联式吊具,可接受的限制是约96 kN的总负载,导致平均地面压力为150 kPa或更小。如果需要中等容量的撒肥机,建议在草原上撒肥或在小谷物作物的播种后撒肥,建议使用超大轮胎。最后,对于较大的撒布机而言,采用多轴行走机构来维持或降低每轴或地面压力的单位负载,不会比具有相同轴荷和地面压力的低容量串联撒肥机减少土壤压实。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号