Quantifying the Impact of Off-Road Driving on Root-Area Distribution in Soils

G. P. Nortjé, W. Hoven, M. Laker, Johanna C. Jordaan, M. A. Louw
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引用次数: 5

Abstract

Studies on the effects of off-road driving on soils were conducted in the Makuleke Contractual Park of the Kruger National Park. The studies were conducted on three different soils with different textures and soil compactibilities. Traffic pressure was applied with a game drive vehicle loaded with 10 sand bags, each weighing 70 kg, plus the driver. This gave a total vehicle mass of 3795 kg, simulating a vehicle fully laden with tourists. The results of the study reported here included comparing of the effects of four different tyre pressures on the root area distribution below each tyre pressure. At all sites, root density fractions under the tracks were reduced significantly at all tyre pressures, compared with the control values. Results indicated that root penetration percentage and root area distribution were reduced drastically as tyre pressure increased. Our work reaffirms previous research showing that higher tyre pressures cause higher sub-soil compaction than lower tyre pressures. Thus, driving with lower tyre pressures when driving off-road should be considered when developing management strategies for off-road driving in wildlife protected areas.
非公路驾驶对土壤根面积分布的量化影响
在克鲁格国家公园的Makuleke合同公园进行了越野驾驶对土壤影响的研究。研究对象为三种不同质地和土壤压实度的土壤。一辆载有10个沙袋(每袋重70公斤)和司机的游戏驾驶车辆施加交通压力。这使得车辆的总质量为3795公斤,模拟了一辆满载游客的车辆。这里报告的研究结果包括比较四种不同轮胎压力对每个轮胎压力下根部面积分布的影响。在所有地点,在所有轮胎压力下,与控制值相比,轨道下的根密度分数显著降低。结果表明,随着轮胎压力的增加,根系穿透率和根系面积分布明显减小。我们的工作重申了以前的研究表明,较高的轮胎压力导致较高的底土压实比较低的轮胎压力。因此,在制定野生动物保护区越野驾驶管理策略时,应考虑在越野驾驶时降低胎压。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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