白杨林土壤压实度与收获季节、土壤质地和景观位置的关系

R. Kolka, Aaron Steber, K. Brooks, C. Perry, M. Powers
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引用次数: 20

摘要

尽管许多收获研究已经评估了压实,但没有研究考虑了收获季节、土壤质地和景观位置对西部湖泊州收获的土壤容重和表层土壤强度的相互作用关系。2005年,我们测量了最近砍伐的主要白杨林分(Populus granddentata Michx)的容重和表层土壤强度。和白杨(Populus tremuloides micx .)生长在明尼苏达州北部的Chippewa国家森林。我们根据收获季节、土壤质地和地形位置对这些空地进行分层。在几乎所有情况下,我们观察到采伐后的容重和表层土壤强度比相邻和类似但未采伐的林分更高。在收获点内,细质地土壤在夏季收获时通常比粗质地土壤具有更高的表层土壤强度(更密实),而细质地土壤在夏季收获时比冬季收获时具有更高的表层土壤强度。景观位置仅在细质土壤中起重要作用。与冬收相比,夏收后山顶和趾坡位置的表层土壤强度更高。总的来说,我们的研究结果表明,在未冻结的土壤条件下,位于斜坡上下位置的细质地土壤最容易在伐木过程中被压实。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Relationships between Soil compaction and harvest season, soil texture, and landscape position for aspen forests
Although a number of harvesting studies have assessed compaction, no study has considered the interacting relationships of harvest season, soil texture, and landscape position on soil bulk density and surface soil strength for harvests in the western Lake States. In 2005, we measured bulk density and surface soil strength in recent clearcuts of predominantly aspen stands (Populus grandidentata Michx. and Populus tremuloides Michx.) in the Chippewa National Forest in northern Minnesota. We stratified these clearcuts by the season harvested, soil texture, and topographic position. In nearly all cases, we observed higher bulk density and surface soil strength following harvesting compared with adjacent and similar but unharvested stands. Within harvested sites, fine-textured soils generally had higher surface soil strength (more compaction) than coarse-textured soils when harvested in the summer, and fine-textured sites harvested in the summer had higher surface soil strength than those harvested in the winter. Landscape position was an important factor only in fine-textured soils. Both summit and toeslope positions had higher surface soil strength following summer harvesting compared with winter harvesting. Overall, our results indicate that fine-textured soils located on both lower and upper slope positions and harvested during unfrozen soil conditions are most susceptible to compaction during logging.
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