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Secondary dispersal driven by overland flow in drylands: Review and mechanistic model development

机译:旱地陆流驱动的二次扩散:综述与机理模型开发

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摘要

Seed dispersal alters gene flow, reproduction, migration and ultimately spatial organization of dryland ecosystems. Because many seeds in drylands lack adaptations for long-distance dispersal, seed transport by secondary processes such as tumbling in the wind or mobilization in overland flow plays a dominant role in determining where seeds ultimately germinate. Here, recent developments in modeling runoff generation in spatially complex dryland ecosystems are reviewed with the aim of proposing improvements to mechanistic modeling of seed dispersal processes. The objective is to develop a physically-based yet operational framework for determining seed dispersal due to surface runoff, a process that has gained recent experimental attention. A Buoyant OBject Coupled Eulerian – Lagrangian Closure model (BOB-CELC) is proposed to represent seed movement in shallow surface flows. The BOB-CELC is then employed to investigate the sensitivity of seed transport to landscape and storm properties and to the spatial configuration of vegetation patches interspersed within bare earth. The potential to simplify seed transport outcomes by considering the limiting behavior of multiple runoff events is briefly considered, as is the potential for developing highly mechanistic, spatially explicit models that link seed transport, vegetation structure and water movement across multiple generations of dryland plants.
机译:种子传播改变了旱地生态系统的基因流动,繁殖,迁移和最终的空间组织。由于干旱地区的许多种子缺乏长距离散播的适应性,因此通过次要过程(如在风中翻滚或在陆上流动中动员)的种子运输在确定种子最终发芽的地方起着主导作用。在此,对在空间上复杂的旱地生态系统中径流产生建模的最新进展进行了综述,目的是提出对种子传播过程的机械模型进行改进的建议。目的是开发一种基于物理的但可操作的框架,用于确定由于表面径流引起的种子扩散,这一过程最近受到了实验的关注。提出了一个浮力对象耦合的欧拉-拉格朗日封闭模型(BOB-CELC)来表示种子在浅层表面流中的运动。然后,将BOB-CELC用于研究种子运输对景观和风暴特性以及散布在裸露土壤中的植被斑块的空间配置的敏感性。简要考虑了通过考虑多种径流事件的局限性来简化种子运输结果的潜力,以及开发将种子运输,植被结构和水分移动跨多代旱地植物联系起来的高度机械化,空间明确模型的潜力。

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