Effects of Forest Harvesting Operations on Hydrology: Experiences From the Palatinate Forest Biosphere Reserve

IF 2.9 3区 地球科学 Q1 Environmental Science Hydrological Processes Pub Date : 2025-04-04 DOI:10.1002/hyp.70115
Tibebe B. Tigabu, Eva Verena Müller, Menberu B. Meles, Helen E. Dahlke, Gebhard Schüler, Nicola Fohrer, Paul D. Wagner
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Abstract

The use of timber harvesting and skidding machines significantly alters a catchment's hydrological processes due to soil compaction effects. Although it is obvious that the use of heavy forest machines increases surface runoff and water yield, quantifying these effects remains challenging. This research aimed at exploring how physically based hydrological models are suited for investigating the effects of soil compaction on hydrologic responses at the catchment scale. We employed a process-based SWAT+ hydrological model to assess the impact of temporary (e.g., skid trails) and more permanent timber harvest infrastructure on the hydrologic response of the Palatinate Forest Biosphere Reserve in Germany. We specifically analysed the role of soil compaction in hydrological processes by simulating water fluxes under three scenarios: uncompacted soil (baseline), compacted soil during harvest and skidding operations (Scenario-1) and due to permanently constructed infrastructures (Scenario-2). Results demonstrated substantial alterations in water fluxes under Scenarios-1 and -2 compared to the baseline, with annual average surface runoff increasing by 74% and 125%, respectively, and lateral flow decreasing by 14% and 26%. These changes varied notably between steep and low slope areas. Steep slope regions exhibited significantly larger increases in surface runoff, while low slope areas experienced greater reductions in lateral flow and percolation. This differentiation underlines the combined influence of management scenarios and slope, highlighting the critical need for forest harvesting strategies that account for spatial variability and the types of machinery employed.

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森林采伐作业对水文的影响:来自普法尔茨森林生物圈保护区的经验
由于土壤压实效应,木材采伐和打滑机的使用显著地改变了集水区的水文过程。虽然重型森林机械的使用明显增加了地表径流和水量,但量化这些影响仍然具有挑战性。本研究旨在探索基于物理的水文模型如何适用于在流域尺度上调查土壤压实对水文响应的影响。我们采用基于过程的SWAT+水文模型来评估临时(如滑轨)和更永久的木材采伐基础设施对德国普法尔茨森林生物圈保护区水文响应的影响。我们通过模拟三种情况下的水流量,具体分析了土壤压实在水文过程中的作用:未压实土壤(基线)、收获和打滑作业期间的压实土壤(情景1)和永久性建设基础设施(情景2)。结果表明,与基线相比,情景1和情景2下的水通量发生了实质性变化,年平均地表径流分别增加74%和125%,横向流量减少14%和26%。这些变化在陡坡地和低坡地之间差异显著。陡坡区地表径流的增加幅度较大,而低坡区侧流和渗滤的减少幅度较大。这种差异突出了管理方案和坡度的综合影响,突出了迫切需要考虑到空间变异性和所采用机械类型的森林采伐战略。
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来源期刊
Hydrological Processes
Hydrological Processes 环境科学-水资源
CiteScore
6.00
自引率
12.50%
发文量
313
审稿时长
2-4 weeks
期刊介绍: Hydrological Processes is an international journal that publishes original scientific papers advancing understanding of the mechanisms underlying the movement and storage of water in the environment, and the interaction of water with geological, biogeochemical, atmospheric and ecological systems. Not all papers related to water resources are appropriate for submission to this journal; rather we seek papers that clearly articulate the role(s) of hydrological processes.
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