首页> 外文期刊>The Journal of Experimental Biology >WAVE-INDUCED FORCES ON THE GIANT KELP MACROCYSTIS PYRIFERA (AGARDH): FIELD TEST OF A COMPUTATIONAL MODEL
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WAVE-INDUCED FORCES ON THE GIANT KELP MACROCYSTIS PYRIFERA (AGARDH): FIELD TEST OF A COMPUTATIONAL MODEL

机译:巨型海带巨噬细胞(AGARDH)的波诱导力:一种计算模型的现场测试

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摘要

We propose a hydro-mechanical numerical model that predicts the maximal tension to which stipes of the giant kelp Macrocystis pyrifera will be subjected when exposed to ocean waves. Predicted maximal tensions are close to those measured in'the field.The strength of Macrocystis pyrifera stipes was measured, allowing our prediction of forces to be translated into a prediction of the fraction of stipes broken. Predicted breakage is low even for extreme storm waves, a testament to the mechanical designof individual kelp fronds. However, empirically measured rates of kelp mortality can be high, considerably higher than those predicted on the basis of hydrodynamic forces acting alone. This indicates that factors not taken into account in our model (suchas holdfast dislodgment, entanglement of stipes, damage from herbivory and wave breaking) contribute substantially to mortality in Macrocystis pyrifera.
机译:我们提出了一种水力力学数值模型,该模型预测了当暴露于海浪中时,巨大的海带巨孢海藻(Macrocystis pyrifera)的叶柄受到的最大张力。预测的最大张力接近现场测得的最大张力。测量了Macrocystis pyrifera stipes的强度,使我们对力的预测可以转化为对stisti断裂比例的预测。即使对于极端风暴波,预测的破损率也很低,这证明了单个海带叶的机械设计。但是,根据经验测得的海带死亡率可能很高,比基于单独作用的流体动力预测的海藻死亡率要高得多。这表明在我们的模型中未考虑的因素(例如,持久流离失所,针刺缠结,食草动物造成的损害和海浪破坏)在很大程度上导致了拟南芥的死亡率。

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