首页> 外文期刊>Continental Shelf Research: A Companion Journal to Deep-Sea Research and Progress in Oceanography >Interactions and feedbacks among phytobenthos, hydrodynamics, nutrient cycling and sediment transport in estuarine ecosystems
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Interactions and feedbacks among phytobenthos, hydrodynamics, nutrient cycling and sediment transport in estuarine ecosystems

机译:河口生态系统中植物底栖动物,水动力,养分循环和沉积物迁移之间的相互作用和反馈

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Phytobenthic communities can play an active role in modifying the environmental characteristics of the ecosystem in which they live so mediating the human impact on Coastal Zone habitats. Complicated feedbacks couple the establishment of phytobenthic communities with water quality and physical parameters in estuaries. Direct and indirect interactions between physical and biological attributes need to be considered in order to improve the management of these ecosystems to guarantee a sustainable use of coastal resources. Within the project F-ECTS ("Feedbacks of Estuarine Circulation and Transport of Sediments on phytobenthos") this issue was approached through a three-step strategy: (i) Monitoring: detailed fieldwork activities focusing on the measurement and evaluation of the main processes involving hydrodynamics, sediments, nutrients, light and phytobenthic biomass; (ii) Modeling: joint modeling of the suspended particulate matter erosion/transport/deposition and biological mediation of the hydrodynamics and (iii) GIS: development of GIS-based practical tools able to manage and exploit measured and modeled data on the basis of scientific investigation guidelines and procedures. The overall strategy is described by illustrating results of field measurements, providing details of model implementation and demonstrating the GIS-based tools. (C) 2003 Elsevier Ltd. All rights reserved. [References: 43]
机译:植物底栖动物群落可以在改变其所居住的生态系统的环境特征方面发挥积极作用,从而调解人类对沿海地带栖息地的影响。复杂的反馈将河床的水质和物理参数与植物底栖动物群落建立起来。为了改善对这些生态系统的管理,以确保沿海资源的可持续利用,必须考虑物理和生物属性之间的直接和间接相互作用。在项目F-ECTS(“河床底栖动物的河口循环和沉积物的反馈”)中,通过三步策略解决了这个问题:(i)监测:详细的实地调查活动,重点是对涉及以下方面的主要过程的测量和评估流体动力学,沉积物,养分,光和植物底栖生物量; (ii)建模:流体动力学的悬浮颗粒物侵蚀/迁移/沉积和生物介导的联合建模;以及(iii)GIS:开发基于GIS的实用工具,能够在科学的基础上管理和利用测量和建模数据调查指南和程序。通过说明现场测量结果,提供模型实现的详细信息并演示基于GIS的工具来描述总体策略。 (C)2003 Elsevier Ltd.保留所有权利。 [参考:43]

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