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首页> 外文期刊>Ecological Modelling >Analysing the effects of soil properties changes associated with land use changes on the simulated water balance: A comparison of three hydrological catchment models for scenario analysis
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Analysing the effects of soil properties changes associated with land use changes on the simulated water balance: A comparison of three hydrological catchment models for scenario analysis

机译:分析与土地利用变化相关的土壤性质变化对模拟水平的影响:三种水文集水模型对情景分析的比较

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摘要

This paper presents results of a model comparison study within the LUCHEM framework ('assessing the impact of Land Use Change on Hydrology by Ensemble Modelling') where the effects of land use change on catchment water balances were assessed with various hydrological catchment models. The motivation for this part of LUCHEM is that it is well known that land use changes may induce changes in soil chemical and soil physical properties (e.g. bulk density). Unfortunately the effects of land use change on soil hydraulic properties are seldom investigated directly, but some information on changes in bulk density is available. Changes in bulk density can be used as input for pedotransfer functions to derive changes in soil hydraulic model parameters. In this study, three different catchment models (SWAT, TOPLATS, WASIM) are compared with respect to their sensitivity to land use change with and without consideration of associated changes in soil parameterisation. The results reveal that different models show a different sensitivity to the change in soil parameterisation while the magnitude of absolute changes in simulated evapotranspiration and discharge is similar. SWAT calculates largest changes in the water balance in a German mesoscale catchment. TOPLATS also shows significant changes in the calculated catchment water balances as well as in the runoff generation while WASIM reacts least sensitive. While TOPLATS and WASIM show similar patterns with respect to changes in the water flows for all subcatchments and land use scenarios, SWAT results are similar for the different catchments, but show scenario specific patterns. In relation to the magnitude of the effects on simulated water flows induced by land use change, the significance of considering soil change effects depends on both, the scenario definition and on the model sensitivity to soil parameterisation. For two of the three land use scenarios representing an intensified land use, SWAT and TOPLATS simulate water balance changes in the same order of magnitude due to both, land use and soil property changes. Therefore, a consideration of changes in soil properties as part of land use change scenario analysis is recommended. Future field work needs to aim at the validation of the assumed dependency of soil hydrologic properties on land use change. (C) 2007 Elsevier B.V. All rights reserved.
机译:本文介绍了Luchem框架内的模型比较研究的结果(“评估了土地利用变化对水性模型的影响”),其中用各种水文集水模型评估了土地利用变化对集水区分的影响。 Luchem这一部分的动机是,众所周知,土地利用变化可能会诱导土壤化学物质和土壤物理性质的变化(例如,散装密度)。不幸的是,土地利用变化对土壤液压性能的影响很少直接调查,但有关散装密度变化的一些信息可用。堆积密度的变化可用作网站传输功能的输入,以导出土壤液压模型参数的变化。在这项研究中,将三种不同的集水模型(SWAT,TOPLATS,WASIM)相对于其与土地利用变化的敏感性进行比较,并且不考虑土壤参数化相关变化。结果表明,不同的模型对土壤参数化的变化显示不同的敏感性,而模拟蒸发和放电的绝对变化的大小相似。 SWAT计算德国Mesoscale集水区中的水平的最大变化。 Toplats还显示了计算的集水区水平的显着变化以及径流产生,而WASIM反应最不敏感。虽然Toplats和WASIM在所有子迁移和土地使用场景的水流变化方面表现出类似的模式,但是SWAT结果对于不同的流域类似,而且显示了场景特定模式。关于土地利用变化引起的模拟水流效应的影响,考虑土壤变化效应的重要性取决于对土壤参数化的方案定义和模型敏感性。对于代表强化土地使用的三种土地使用方案中的两个,由于土地利用和土壤属性发生变化,SWAT和Toplats模拟水平以相同数量级的变化。因此,建议考虑土壤性质变化作为土地利用变化场景分析的一部分。未来的现场工作需要旨在验证土壤水文特性对土地利用变化的假设依赖性。 (c)2007 Elsevier B.v.保留所有权利。

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