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首页> 外文期刊>Environmental Modelling & Software >Uncertainty in hydromorphological and ecological modelling of lowland river floodplains resulting from land cover classification errors
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Uncertainty in hydromorphological and ecological modelling of lowland river floodplains resulting from land cover classification errors

机译:土地覆盖分类错误导致低地河漫滩水文生态学模型的不确定性

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摘要

Land cover maps provide essential input data for various hydromorphological and ecological models, but the effect of land cover classification errors on these models has not been quantified systematically. This paper presents the uncertainty in hydromorphological and ecological model output for a large lowland river depending on the classification accuracy (CA) of a land cover map. Using four different models, we quantified the uncertainty for the three distributaries of the Rhine River in The Netherlands with respect to: (1) hydrodynamics (WAQUA model), (2) annual average suspended sediment deposition (SEDIFLUX model), (3) ecotoxicological hazards of contaminated sediment for a bird of prey, and (4) floodplain importance for desired habitat types and species (BIO-SAFE model). We carried out two Monte Carlo (n = 15) analyses: one at a 69% land cover CA, the other at 95% CA. Subsequently we ran all four models with the 30 realizations as input. The error in the current land cover map gave an uncertainty in design water levels of up to 19 cm. Overbank sediment deposition varied up to 100% in the area bordering the main channel, but when aggregated to the whole study area, the variation in sediment trapping efficiency was negligible. The ecotoxicological hazards, represented by the fraction of Little Owl habitat with potential cadmium exposure levels exceeding a corresponding toxicity threshold of 148 ng d~(-1), varied between 54 and 60%, aggregated over the distributaries. The 68% confidence interval of floodplain importance for protected and endangered species varied between 10 and 15%. Increasing the classification accuracy to 95% significantly lowered the uncertainty of all models applied. Compared to landscaping measures, the effects due to the uncertainty in the land cover map are of the same order of magnitude. Given high financial costs of these landscaping measures, increasing the classification accuracy of land cover maps is a prerequisite for improving the assessment of the efficiency of landscaping measures.
机译:土地覆盖图为各种水文形态学和生态学模型提供了必要的输入数据,但是土地覆盖分类错误对这些模型的影响尚未得到系统的量化。根据土地覆盖图的分类精度(CA),本文提出了一条大型低地河流的水文形态和生态模型输出的不确定性。我们使用四种不同的模型,对以下方面的不确定性进行了量化:(1)流体动力学(WAQUA模型),(2)年平均悬浮沉积物沉积(SEDIFLUX模型),(3)生态毒理学污染的沉积物对猛禽的危害,以及(4)洪泛区对于所需栖息地类型和物种的重要性(BIO-SAFE模型)。我们进行了两次蒙特卡洛(n = 15)分析:一次分析的土地覆盖率为69%,另一次为95%。随后,我们以30个实现作为输入运行了所有四个模型。当前土地覆盖图中的错误给设计水位带来了最大19厘米的不确定性。在主要河道周边地区,岸上沉积物的沉积变化高达100%,但是当聚集到整个研究区域时,沉积物捕集效率的变化可以忽略不计。生态毒性危害以小猫头鹰栖息地中潜在的镉暴露水平超过相应的毒性阈值148 ng d〜(-1)的比例表示,分布范围在54%至60%之间。对于受保护和濒危物种,洪泛区重要性的68%置信区间介于10%和15%之间。将分类精度提高到95%可以显着降低所有应用模型的不确定性。与环境美化措施相比,土地覆盖图中不确定性带来的影响具有相同的数量级。鉴于这些美化措施的高昂财务成本,提高土地覆盖图的分类准确性是改善对美化措施效率的评估的前提。

著录项

  • 来源
    《Environmental Modelling & Software 》 |2013年第4期| 17-29| 共13页
  • 作者单位

    Department of Earth System Analysis, Faculty of Geo-Information Science and Earth Observation (ITC), University of Twente, PO Box 6, 7500 AA Enschede, The Netherlands Faculty of Geosciences, Department of Physical Geography, Utrecht University, PO Box 80115, 3508 TC Utrecht, The Netherlands;

    Faculty of Geosciences, Department of Physical Geography, Utrecht University, PO Box 80115, 3508 TC Utrecht, The Netherlands NCR, Netherlands Centre of River Research (NCR), P.O.Box 177, 2600 MH Delft, The Netherlands;

    Radboud University Nijmegen, Institute for Water and Wetland Research, Department of Environmental Science, PO Box 9010, 6500 GL Nijmegen, The Netherlands NCR, Netherlands Centre of River Research (NCR), P.O.Box 177, 2600 MH Delft, The Netherlands;

    Optimal Planet Training and Consultancy, P.O. Box 9010, 6500 GL Nijmegen, The Netherlands;

    Radboud University Nijmegen, Institute for Water and Wetland Research, Department of Environmental Science, PO Box 9010, 6500 GL Nijmegen, The Netherlands NCR, Netherlands Centre of River Research (NCR), P.O.Box 177, 2600 MH Delft, The Netherlands;

    Water Systems Modelling, HKV Consultants, PO Box 2120, 8203 AC Lelystad, The Netherlands;

    Faculty of Geosciences, Department of Physical Geography, Utrecht University, PO Box 80115, 3508 TC Utrecht, The Netherlands NCR, Netherlands Centre of River Research (NCR), P.O.Box 177, 2600 MH Delft, The Netherlands;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Biodiversity; Ecotoxicological hazards; Floodplain vegetation; Hydrodynamic uncertainty; Monte Carlo analysis; Rhine river; Special areas of nature conservation; Suspended sediment deposition;

    机译:生物多样性;生态毒理危害;洪泛区植被;流体动力学不确定性;蒙特卡洛分析;莱茵河自然保护的特殊领域;悬浮沉积物;

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