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UAV-imaging to model growth response of marram grass to sand burial: Implications for coastal dune development

机译:无人机成像与沙埋在沙埋的模型生长响应:沿海沙丘开发的影响

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摘要

Vegetated coastal dunes have the capacity to keep up with sea-level rise by accumulating and stabilizing windblown sand. In Europe, this is attributed to marram grass (Ammophila arenaria), a coastal grass species that combines two unique advantages for dune-building: (1) a very high tolerance to burial by wind-blown sand, and (2) more vigorous growth due to positive feedback to sand burial. However, while these vegetation characteristics have been demonstrated, observational data has not been used to model a function to describe the growth response of Ammophila to sand burial. Studies that model coastal dune development by incorporating positive feedback, as a result, may be hampered by growth functions that are unvalidated against field data. Therefore, this study aims to parameterize an empirical relationship to model the growth response of Ammophila to burial by wind-blown sand.
机译:植被沿海沙丘的能力通过积累和稳定风砖砂来跟上海平面。 在欧洲,这归因于Marram Grass(Ammophila arenaria),沿海草地,结合了沙丘建筑的两个独特优势:(1)对风吹沙的埋葬具有非常高的耐受性,(2)更加剧烈的生长 由于积极的反馈来砂埋葬。 然而,虽然已经证明了这些植被特征,但是未使用观察数据来模拟用于描述Ammophila的生长响应到砂埋的功能。 通过将正反馈纳入沿海沙丘开发的研究可能因对现场数据而未经验证的增长功能而受到阻碍。 因此,本研究旨在将实证关系参数化以模拟氨毛毛拉的生长响应,通过风吹砂埋葬。

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