Under the sea: Pulsing corals in ambient flow

Nicholas A. Battista, J. Samson, S. Khatri, L. Miller
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引用次数: 2

Abstract

While many organisms filter feed and exchange heat or nutrients in flow, few benthic organisms also actively pulse to enhance feeding and exchange. One example is the pulsing soft coral (Heteroxenia fuscescens). Pulsing corals live in colonies, where each polyp actively pulses through contraction and relaxation of their tentacles. The pulses are typically out of phase and without a clear pattern. These corals live in lagoons and bays found in the Red Sea and Indian Ocean where they at times experience strong ambient flows. In this paper, $3D$ fluid-structure interaction simulations are used to quantify the effects of ambient flow on the exchange currents produced by the active contraction of pulsing corals. We find a complex interaction between the flows produced by the coral and the background flow. The dynamics can either enhance or reduce the upward jet generated in a quiescent medium. The pulsing behavior also slows the average horizontal flow near the polyp when there is a strong background flow. The dynamics of these flows have implications for particle capture and nutrient exchange.
海底:周围水流中的脉动珊瑚
虽然许多生物过滤饲料并在流动中交换热量或营养物质,但很少有底栖生物也积极地脉动以加强摄食和交换。脉冲软珊瑚(Heteroxenia fuscescens)就是一个例子。脉冲珊瑚生活在群体中,每个珊瑚虫通过收缩和放松它们的触角来积极地脉冲。脉冲通常是相异的,没有清晰的模式。这些珊瑚生活在红海和印度洋的泻湖和海湾中,在那里它们有时会经历强烈的环境流。本文采用三维流固相互作用模拟来量化环境流对脉动珊瑚主动收缩产生的交换电流的影响。我们发现珊瑚产生的水流和背景水流之间存在复杂的相互作用。在静止介质中,动力学可以增强或减少向上的射流。当有强背景流时,脉冲行为也减慢了息肉附近的平均水平流。这些流动的动力学对颗粒捕获和养分交换有影响。
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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