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Impact of wheeled and tracked tractors on soil physical properties in a mixed conifer stand

机译:牵引拖拉机对混合针叶树架土壤物理性质的影响

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摘要

Damage to forest soil caused by vehicle traffic mainly consists of soil compaction, displacement, and rut formation. Severity of the damage depends on vehicle mass, weight of the carried loads, ground morphology, and soil properties, such as moisture. This paper investigates the impacts of two types of vehicles (tracked or wheeled tractor), traffic intensities (one or five skidding cycles) and soil moisture (24% or 13% by weight) on compaction of a loam textured soil in a mixed conifer stand of central Italy. Changes in porosity, bulk density, shear and penetration resistances were analyzed. The latter three parameters were significantly higher in the trafficked soil portions than in the undisturbed ones in all treatments, while the opposite was true for porosity. The impact on soil bulk density and porosity was stronger for the wheeled tractor working on moist soil, while no significant effect of soil moisture was recorded for the tracked tractor. Shear and penetration resistances increased as a consequence of traffic, depending on both tractor type and soil moisture. The largest impact on shear resistance was recorded for the wheeled tractor on moist soil, while significant differences in penetration resistance were observed only between tracked and wheeled tractors in dry soil conditions. In order to preserve soil quality during logging activities, we recommend to operate under dry soil conditions and to limit vehicle movement on existing or new planned trails.
机译:车辆交通造成的森林土壤损坏主要由土壤压实,排量和车辙形成组成。损伤的严重程度取决于车辆质量,携带载荷的重量,地面形态和土壤性质,如水分。本文调查了两种车辆(履带式或轮式拖拉机),交通强度(一种或五个滑动循环)和土壤水分(24%或13%(重量)的影响对混合针叶树架的壤土织地不细土壤的压实意大利中部。分析了孔隙率,堆积密度,剪切和渗透抗性的变化。由于所有治疗中的未受干扰的土壤部分,后者三个参数明显高于未受干扰的参数,而孔隙率相反。对湿土工作的轮式拖拉机对土壤堆积密度和孔隙率的影响更强,而履带式拖拉机没有记录土壤水分的显着效果。根据交通的后果,剪切和穿透电阻根据拖拉机类型和土壤水分而增加。在潮湿的土壤上为轮式拖拉机记录了对剪切电阻的最大影响,而在干燥土壤条件下跟踪和轮式拖拉机之间只观察到渗透性的显着差异。为了在伐木活动期间保持土壤质量,我们建议在干旱地区条件下运营,并限制现有或新计划小径上的车辆运动。

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