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Assessing soil conservation strategies for upland cropping in Northeast Thailand with the WaNuLCAS model

机译:使用WaNuLCAS模型评估泰国东北部旱地种植的土壤保持策略

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Soil conservation approaches and agroforestry systems can play an important role in controlling erosion from tropical hillside cropping systems. Experimental testing of their potential application domain and design, however, is costly and time consuming. We, therefore, tested the ability of the Water, Nutrient and Light Capture in Agroforestry Systems (WaNuLCAS) model. The specific objectives of the study were: (i) to evaluate the WaNuLCAS model for predicting water induced erosion under different soil conservation strategies, (ii) to use the model for a better understanding of various soil conservation measures in controlling erosion, and (iii) to assess the magnitude and dynamics of key processes influencing the efficiency of soil conservation measures. A 3-year-data set (2003–2005) from a field experiment from the Loei province in Northeast Thailand on the impact of soil conservation (Leucaena hedgerow, Jack bean relay cropping) under minimum tillage on runoff and soil loss was tested. Results indicated that WaNuLCAS was able to predict soil loss and runoff well at the test site; i.e. R 2 = 0.80 and 0.82, respectively. In the calibration procedure a sub data set was used, where adjusting crop development parameters was an important step for improving simulated soil loss (R 2 = 0.75) and runoff (R 2 = 0.89). Soil conservation measures such as Leucaena hedges were effective techniques to control runoff and soil loss. Implementing a dynamic soil structure module in combination with minimum tillage reduced runoff and soil loss via an increase in available macropores and hence drainage over time which improved simulation results. Relay cropping with Jack bean played an important role in the control treatment in reducing soil loss during the third year due to its additional soil cover and positive impact on soil fertility as suggested by the model. Hence, the WaNuLCAS model is a valuable tool to study and understand processes and to explore management options for improving tropical hillside cropping threatened by soil degradation.
机译:土壤保护方法和农林业系统可以在控制热带山坡种植系统的侵蚀中发挥重要作用。然而,对其潜在的应用领域和设计进行实验测试既昂贵又耗时。因此,我们测试了农林业系统(WaNuLCAS)模型中水,养分和光捕获的能力。该研究的具体目标是:(i)评价WaNuLCAS模型,以预测在不同土壤保持策略下水诱导的侵蚀,(ii)使用该模型更好地了解控制侵蚀的各种土壤保持措施,以及(iii) )以评估影响土壤保护措施效率的关键过程的规模和动态。测试了一个3年数据集(2003年至2005年),该数据集来自泰国东北部黎府的田间试验,研究了最小耕作对径流和土壤流失的土壤养护(Leucaena树篱,波豆种)的影响。结果表明,WaNuLCAS能够很好地预测试验地点的土壤流失和径流。即R 2 分别为0.80和0.82。在校准过程中,使用了一个子数据集,其中调整作物发育参数是改善模拟土壤流失(R 2 = 0.75)和径流(R 2 )的重要步骤。 = 0.89)。诸如Leucaena树篱等土壤保护措施是控制径流和土壤流失的有效技术。结合最小耕作量,实施动态土壤结构模块,可增加可用大孔,从而减少径流和土壤流失,从而随着时间的流逝而排水,从而改善了模拟结果。如模型所建议的那样,由于杰克豆的额外土壤覆盖和对土壤肥力的积极影响,在第三年减少土壤流失的防控处理中起着重要作用。因此,WaNuLCAS模型是研究和理解过程以及探索改善土壤退化威胁的热带山坡种植的管理选择的宝贵工具。

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