Velocity uncertainty quantification based on Riparian vegetation indices in open channels colonized by Phragmites australis

IF 4.6 Q2 ENVIRONMENTAL SCIENCES
G. Lama, A. Errico, V. Pasquino, S. Mirzaei, F. Preti, G. Chirico
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引用次数: 27

Abstract

Abstract One of the main purposes of Ecohydraulics is to predict the effects of riparian vegetation on aquatic ecosystems within real water channels. The interaction between water flow and riparian plants significantly affects flow dynamics, hydraulic conveyance, and water quality of vegetated water bodies. This study aimed at quantifying analytically the uncertainty in flow average velocity estimations associated with the uncertainty of Leaf Area Index (LAI) of Phragmites australis (Cav.) Trin. ex Steudel covering a vegetated channel. The impacts of this species on the hydrodynamics of vegetated streams are far to be completely understood. The uncertainty in flow average velocity was assessed through the first-order second-moment statistical method, by comparing direct and indirect LAI measurements of mature Phragmites australis plants. Indirect LAI values were obtained using the LICOR® LAI-2000 Plant Canopy Analyzer device. The results of this study suggest that the uncertainties in flow average velocity estimations are comparable to those associated with experimental measurements of streamwise velocity components retrieved in real vegetated flows fully covered by mature Phragmites australis plants.
芦苇定殖明渠河岸植被指数的流速不确定性定量研究
生态水力学的主要目的之一是预测实际水道内河岸植被对水生生态系统的影响。水流与河岸植物的相互作用对植被水体的水流动力学、水力输送和水质有重要影响。本研究旨在定量分析芦苇叶面积指数(LAI)不确定性对平均流速估算的不确定性。指标。前斯图德尔覆盖植被通道。这个物种对有植被的溪流的水动力学的影响还远未完全了解。通过比较芦苇成熟植株的直接LAI和间接LAI测量值,采用一阶二阶矩统计方法评估平均流速的不确定性。使用LICOR®LAI-2000植物冠层分析仪装置获得间接LAI值。本研究结果表明,流量平均流速估算的不确定性与在完全被成熟芦苇植物覆盖的真实植被流中反演的流向流速分量的实验测量结果相当。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
7.10
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