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Wave attenuation by coastal heterospecific vegetation-modeling of synthetic plant meadows by Response Surface Methodology (RSM)

机译:沿响应面法(RSM)通过沿海异质植被植被建模的沿海异素植被造型的波浪衰减(RSM)

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摘要

Knowing the interactions between wave and aquatic vegetation is becoming increasingly important because of the phenomenon of plant-induced wave attenuation for the development of sustainable coastal management systems. Many of the wave-vegetation interaction studies focus on monotypic coastal plant meadowswhile coastal plant meadows are typically heterospecific in nature, and the work on heterospecific plant meadows is still very limited. This research aims therefore to explain the heterospecific vegetation-wave interactions using a three-level four-factor surface response methodology (RSM) using controlled laboratory wave flume conditions. Heterospecific seagrass species, Cymodocea serrulata is physically simulated using synthetic plant mimics to establish a relationship between wave attenuation (E%) and four direct control factors, i.e. wave period (T), water depth (h), bed roughness factor (f) and plant density (N), using an empirical model. The model developed was evaluated using the methodology of variance analysis (ANOVA) and analyzed for the key and interaction effects of the parameters studied. The findings showed that both individually and in combination, all the parameters considered are significantly successful on E%. All model-based findings were compared with a new collection of experimental data, and validation tests were carried out.
机译:了解波和水生植被之间的相互作用正变得越来越重要,因为植物诱导的波浪衰减对可持续沿海管理系统的发展的现象。许多波植被相互作用研究专注于单型沿海植物草甸虽然沿海植物草甸通常本质上是异常的,但异质植物草甸的工作仍然非常有限。因此,该研究旨在使用受控实验室波水槽条件使用三级四因素表面响应方法(RSM)来解释异相植被波相互作用。异常特异性的海草物种,Cymodocea Serrulata使用合成植物模拟物理模拟,在波衰减(E%)和四个直接控制因子之间建立关系,即波周期(T),水深(H),床粗糙度因子(F)和植物密度(n),使用实证模型。使用方差分析(ANOVA)的方法进行评估模型,并分析所研究参数的关键和交互效应。研究结果表明,两者均和组合,所有参数所考虑的所有参数在e%方面都显着成功。将所有基于模型的调查结果与新的实验数据集进行进行比较,并进行验证测试。

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  • 来源
    《Oceanographic Literature Review》 |2021年第6期|1322-1322|共1页
  • 作者

    S. Hemavathi; R. Manjula;

  • 作者单位

    Department of Civil Engineering National Institute of Technology Tiruchirappalli (NITT) Tamil Nadu 620 015 India;

    Department of Civil Engineering National Institute of Technology Tiruchirappalli (NITT) Tamil Nadu 620 015 India;

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