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Soil Physical Property Changes After Skidder Traffic With Varying Tire Widths

机译:土壤物理性质在具有不同轮胎宽度的杠杆流量之后发生变化

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Eight combinations of skidder tires, ranging in total width from 0.7 m to 2.2 m, were evaluated for rut formation potential on two soils in south-central Alabama. One was a mixed pine-hardwood bottomland; the other was an upland, predominantly pine stand. Each soil/tire combination was replicated twice. Changes in soil profile after one, three, seven, and nine loaded passes were used as indices of soil disturbance. The number of skidder passes was the most significant factor influencing rut formation. The effect was linear up to nine passes on both test sites. The first pass on the upland site accounted for half the average rut depth and area. The magnitude of the displacement after one pass was related to tire width. Each subsequent pass caused a uniform smaller increment in depth and area. The magnitude of the increase was independent of tire width. On the bottomland site, however, each pass resulted in an increment in both depth and area the magnitude of which was a function of tire width. Average rut cross-sectional area on the bottomland site ranged from 0.13 m2 to 0.75 m2 for nine passes. Depth of ruts ranged from 1.7 cm to 3.6 cm for nine passes on the upland soil, and from 1.4 cm to 21.2 cm for nine passes on the bottomland soils. Soil physical properties were not affected by skidder traffic regardless of tire width.
机译:在阿拉巴马州中市中心的两种土壤中,评估了从0.7米到2.2米的0.7米至2.2米的宽度宽度。一个是混合的松木硬木底;另一个是高地,主要是松树架。每种土壤/轮胎组合被复制两次。将土壤剖面的变化在一个,三,七,九个装载的通行证之后用作土壤障碍的指标。施工次数是影响车辙形成最重要的因素。在两个测试网站上的效果直到九次通过。高地站点上的第一次传递占平均车辙深度和区域的一半。一个通过后的位移的大小与轮胎宽度有关。每个后续通过导致深度和区域的均匀增量。增加的幅度与轮胎宽度无关。然而,在底线现场,每个通道在深度和区域中导致增量,其幅度是轮胎宽度的函数。九艘通道的底部地点的平均车辙横截面积范围为0.13平方米至0.75平方米。在北方土壤上的九次通过1.7厘米至3.6厘米的车辙深度,底部土壤中的九次通过1.4厘米至21.2厘米。无论轮胎宽度如何,土壤物理性质都不受杠杆流量的影响。

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