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Object-oriented simulation of coral competition in a coral reef community

机译:面向对象的珊瑚礁社区中珊瑚竞争的模拟

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摘要

A 3-dimensional individual-based model, the ReefModel, was developed to simulate the dynamical structure of coral reef community using object-oriented techniques and Smalltalk/V language. Interactions among six functional groups of reef organisms: tabular coral, foliaceous coral, massive coral, macroalga, corallivorous gastropod and herbivorous fish were examined. Results from the simulation of interaction among the three coral groups are presented here. The behaviours of the coral groups were described with simple mechanistic rules that were derived from their general behaviours (e.g. growing habits, competitive mechanisms) observed in natural coral reef communities. All corals were allowed to grow in a 3-dimensional spatial environment. The model was implemented to explore the competitive mechanisms governing coral community structure. Simulation results suggest that a fast-growing habit with overtopping competitive mechanism is probably the most effective strategy for corals to gain spatial dominance in a coral community under stable environmental conditions. In addition, multimodality exists in the final states of individual coral group as a result of small random spatial events that occurred during the early stages of interactions among the corals in the community. This suggests that alternative stable states may exist in a coral community as a result of inter-specific coral competition.
机译:使用面向对象的技术和Smalltalk / V语言,开发了一个基于个人的3维模型ReefModel,以模拟珊瑚礁群落的动态结构。检验了六个功能性礁生物体之间的相互作用:板状珊瑚,叶珊瑚,块状珊瑚,大型藻类,食食性腹足动物和食草鱼类。这里介绍了三个珊瑚群之间相互作用的模拟结果。用简单的机械规则描述了珊瑚群的行为,这些规则是从在天然珊瑚礁群落中观察到的一般行为(例如生长习惯,竞争机制)得出的。允许所有珊瑚在3维空间环境中生长。实施该模型以探索控制珊瑚群落结构的竞争机制。仿真结果表明,具有超速竞争机制的快速养成习惯可能是在稳定的环境条件下,珊瑚在珊瑚群落中获得空间优势的最有效策略。另外,由于在社区中的珊瑚之间相互作用的早期阶段发生了一些小的随机空间事件,因此在单个珊瑚群的最终状态中存在多种形态。这表明由于种间珊瑚竞争,珊瑚群落中可能存在其他稳定状态。

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