盐沼植被阻力系数的季节性变化

IF 4.2 2区 工程技术 Q1 ENGINEERING, CIVIL
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引用次数: 0

摘要

了解植被阻力系数的季节变化对于改进波浪衰减预测和适应气候影响至关重要。本研究利用在崇明东滩湿地进行的为期一年的系列实地测量数据,探讨了盐沼植被阻力系数的季节变化。研究揭示了阻力系数复杂的季节变化。结果表明,将特征流速和有效植被长度的非线性方程结合起来,可显著提高阻力系数预测的精度,确保与实地观测结果更加吻合。此外,它还引入了一个改进的阻力系数公式,其中包含了对植被刚度和相对浸没度的调整,更准确地反映了盐沼植被阻力的季节性变化。这一改进的公式对于准确评估植被在波浪衰减中的作用至关重要,为设计和实施海岸防御和湿地保护措施提供了重要的启示。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Seasonal variations in drag coefficient of salt marsh vegetation

Understanding the seasonal variations of vegetation drag coefficients is crucial for improving wave attenuation predictions and adapting to climate impacts. This study explores the seasonal changes in drag coefficients within salt marsh vegetation, using data from a year-long series of field measurements at the Chongming Dongtan Wetland. It uncovers the complex seasonal variations of drag coefficients. Results demonstrate that incorporating a nonlinear equation for characteristic flow velocity and effective vegetation length significantly improves the precision of drag coefficient predictions, ensuring a closer match with field observations. Furthermore, it introduces a refined drag coefficient formula that incorporates adjustments for vegetation stiffness and relative submergence, offering a more accurate representation of the seasonal variability in drag forces exerted by salt marsh vegetation. This enhanced formula is crucial for accurately assessing vegetation's role in wave attenuation, providing critical insights for the design and implementation of coastal defense and wetland conservation initiatives.

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来源期刊
Coastal Engineering
Coastal Engineering 工程技术-工程:大洋
CiteScore
9.20
自引率
13.60%
发文量
0
审稿时长
3.5 months
期刊介绍: Coastal Engineering is an international medium for coastal engineers and scientists. Combining practical applications with modern technological and scientific approaches, such as mathematical and numerical modelling, laboratory and field observations and experiments, it publishes fundamental studies as well as case studies on the following aspects of coastal, harbour and offshore engineering: waves, currents and sediment transport; coastal, estuarine and offshore morphology; technical and functional design of coastal and harbour structures; morphological and environmental impact of coastal, harbour and offshore structures.
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