【2h】

Entropy and optimality in river deltas

机译:三角洲地区的熵与最优性

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摘要

The form and function of river deltas is intricately linked to the evolving structure of their channel networks, which controls how effectively deltas are nourished with sediments and nutrients. Understanding the coevolution of deltaic channels and their flux organization is crucial for guiding maintenance strategies of these highly stressed systems from a range of anthropogenic activities. To date, however, a unified theory explaining how deltas self-organize to distribute water and sediment up to the shoreline remains elusive. Here, we provide evidence for an optimality principle underlying the self-organized partition of fluxes in delta channel networks. By introducing a suitable nonlocal entropy rate (nER) and by analyzing field and simulated deltas, we suggest that delta networks achieve configurations that maximize the diversity of water and sediment flux delivery to the shoreline. We thus suggest that prograding deltas attain dynamically accessible optima of flux distributions on their channel network topologies, thus effectively decoupling evolutionary time scales of geomorphology and hydrology. When interpreted in terms of delta resilience, high nER configurations reflect an increased ability to withstand perturbations. However, the distributive mechanism responsible for both diversifying flux delivery to the shoreline and dampening possible perturbations might lead to catastrophic events when those perturbations exceed certain intensity thresholds.
机译:河流三角洲的形式和功能与河网的不断演变的结构有着复杂的联系,而河网的演变控制着三角洲如何有效利用沉积物和养分来营养。了解三角洲渠道及其通量结构的共同演化对于从一系列人为活动中指导这些高度压力的系统的维护策略至关重要。但是,迄今为止,仍然没有一个统一的理论来解释三角洲如何自组织以将水和沉积物分配到海岸线。在这里,我们为在三角通道网络中通量的自组织划分基础的最优性原则提供了证据。通过引入合适的非局部熵率( n < / mi> E R ),并通过分析田间和模拟三角洲,我们建议三角洲网络实现了最大限度地利用水和水的多样性的配置。泥沙通量输送到海岸线。因此,我们建议升级三角洲在其通道网络拓扑结构上实现通量分布的动态可访问性最佳,从而有效地将地貌学和水文学的演化时间尺度解耦。当用δ弹性来解释时,高nER构型反映出增加的抵抗干扰的能力。然而,当扰动超过一定强度阈值时,负责将通量输送到海岸线的方式多样化和减弱可能的扰动的分配机制可能会导致灾难性事件。

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