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Field-based estimates of floodplain roughness along the Tisza River (Hungary): The role of invasive Amorpha fruticosa

机译:沿着蒂萨河(匈牙利)的洪泛区粗糙度的基于普利普兰粗糙度的估计:侵入性阿米尔菲罗的作用

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River flooding has become a major issue in the last decades, placing at risk wide portions of the planet. Modeled scenarios are the most helpful tools to reduce flood hazard; nevertheless they can lead to significant over- or underestimation of flood discharge and peak flood level if field attributes, especially floodplain roughness, are not carefully surveyed and reasonably included in their design. Besides, floodplains provide optimal habitats for invasive species, which can form dense stands, influencing roughness and flow velocity considerably. The floodplains of the Tisza River and its tributaries (Hungary) are highly invaded by invasive plants, however their existence is not considered during flood modeling. Among these plants Amorpha fruticosa has the greatest impact and creates impenetrable shrubbery on the floodplain, having 5-10 branches sprouting from its stump. The aim of this study is to give a precise and field-based estimation of vegetation density and floodplain roughness of different vegetation categories along the floodplain of the Tisza River, to overcome inaccuracies caused by the use of reference values. Through the Parallel Photographic Method, digital images are used to create photo mosaics and derive accurate estimates of vegetation density and floodplain roughness. Further, the role of invasive A. fruticosa in increasing vegetation density of the floodplain is also investigated. Results confirm a considerable underestimation of vegetation density and floodplain roughness (average difference: 0.04-0.06) by using simple reference values, as invasive Amorpha contributes for 55% of vegetation density on average, and on abandoned fields it constitutes 100% of the woody vegetation. These values suggest that modeled flood water levels can be remarkably underestimated if density of invasive species is not considered. The results of this study stress the importance of including field-based assessments of vegetation characteristics and the influence of invasive species in river modeling, to generate realistic predictions and address effective flood hazard strategies.
机译:河流洪水在过去的几十年中成为一个主要问题,占地球的危险部分。建模方案是减少洪水危害的最有用的工具;尽管如此,如果场属性,特别是洪泛区粗糙度,没有仔细调查和合理地包含在其设计中,他们可能会导致洪水放电和峰值洪水水平的显着或低估。此外,洪泛平坦为侵入性物种提供最佳栖息地,可以形成致密的稳定性,影响粗糙度和流速。 Tisza河及其支流(匈牙利)的洪泛平均受侵入性植物的高度入侵,但在洪水建模期间不考虑它们的存在。在这些植物中,Amorpha Fruticosa具有最大的影响,并且在洪泛平原上产生了令人难以置信的灌木丛,其中有5-10个分支从其树桩发出。本研究的目的是提供沿着蒂萨河洪泛区的不同植被类别的植被密度和洪泛平原粗糙度的精确和现场估算,以克服参考价值的使用引起的不准确性。通过并行摄影方法,数字图像用于创造照片马赛克,并导出植被密度和洪泛平原的准确估计。此外,还研究了侵袭性A. Fruticosa在增加洪泛平坦植被密度时的作用。结果证实,通过使用简单的参考值,植被密度和洪泛平原粗糙度(平均差异:0.04-0.06),随着​​侵入性的植物,平均为植被密度的55%贡献,并且在废弃的领域中,它构成了100%的木质植被的贡献。这些值表明,如果不考虑侵入物种的密度,可以显着低估模型的洪水水平。本研究结果强调了包括基于现场植被特征的评估以及河流建模中侵入性物种的影响的重要性,从而产生现实预测和解决有效的洪水危险策略。

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