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Assessment of State Transition Dynamics of Coastal Wetlands in Northern Venice Lagoon, Italy

机译:意大利北部威尼斯沿海湿地国家过渡动力学评估

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摘要

Coastal wetlands represent particularly valuable natural resources, characterized by the interaction between their geomorphological and biological components. Their adaptation to the changing conditions depends on the rate and extent of spatial and temporal processes and their response is still not fully understood. This work aims at detecting and improving the understanding of the transition dynamics on eco-geomorphological structures in a coastal wetland ecosystem. The approach could support sustainable habitat management improving the detection and optimizing the offer of Earth Observation (EO) products for coastal system monitoring. Such course of action will strengthen evidence-based policy making, surface biophysical data sovereignty and the Space Data downstream sector through remote sensing techniques thanks to the capability of investigating larger scale and short-to-long-term dynamics. The selected case study is the Lido basin (Venice Lagoon, Italy). Our methodology offers a support in the framework of nature-based solutions, allowing the identification of ecosystem-level indicators of the surface biophysical properties influencing stability and evolution of intertidal flats on which a conceptual model is implemented. Landsat satellite imagery is used to delineate the spatial and temporal variability of the main vegetation and sediment typologies in 1990–2011. Within this period, specific anthropic activities were carried out for morphological restoration and flood protection interventions. Specifically, the lower saltmarsh shows its more fragmented part in the Baccan islet, a residual sandy spit in front of the Lido inlet. The area covered by Sarcocornia-Limonium, that triggers sediment deposition, has fluctuated yearly, from a minimum coverage of 13% to a maximum of 50%. The second decade (2001–2009) is identified as the period with major changes of halophytic and Algae-Biofilm cover typologies distribution. The power law and related thresholds, representing the patch size frequency distribution, is an indicator of the ecosystem state transition dynamics. The approach, based on multi-temporal and spatial EO analysis, is scalable elsewhere, from regional to local-to-global scale, considering the variability of climate data and anthropogenic activities. The present research also supports sustainable habitat management, improving the detection, and optimizing the offer of EO products for coastal system monitoring.
机译:沿海湿地代表了特别有价值的自然资源,其特征在于它们的地貌和生物组分之间的相互作用。它们对变化条件的适应取决于空间和时间过程的速率和程度,并且它们的反应仍未完全理解。这项工作旨在检测和改善对沿海湿地生态系统中生态地貌结构的过渡动力学的理解。该方法可以支持可持续栖息地管理,改善沿海系统监测的地球观测(EO)产品的检测和优化。由于调查了较大规模和短期动态的能力,这些行动方案将加强基于证据的政策制定,表面生物物理数据主权和空间数据下游扇区通过遥感技术。所选案例研究是Lido盆地(威尼斯泻湖,意大利)。我们的方法在基于自然的解决方案框架中提供了支持,允许识别表面生物物理的生态系统级指标,影响其实施概念模型的界面平面的稳定性和演化。 Landsat卫星图像用于描绘1990 - 2011年主要植被和沉积物类型的空间和时间变异性。在此期间内,针对形态恢复和防洪干预进行了特定的人类活动。具体地,下盐雾显示其在百万胰岛上的更碎裂的部分,在LIDO入口前的残留的砂质唾液中。 Sarcocornia-Limonium覆盖的区域,抗沉积物沉积,每年波动波动,从最小覆盖率为13%至最高50%。第二十年(2001-2009)被鉴定为嗜睡和藻类覆盖类型分布的主要变化的时期。代表补丁尺寸频率分布的权力法和相关阈值是生态系统状态转换动态的指标。该方法的基础上,多时空EO分析,是可扩展的其他地方,从地方到地方到全球范围内,考虑到气候数据和人为活动的变化。目前的研究还支持可持续栖息地管理,改善检测,优化沿海系统监测的EO产品的优惠。

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