Remotely sensed rivers in the Anthropocene: state of the art and prospects
Реки, дистанционно зондируемые в антропоцене: современное состояние и перспективы
2019-12-12
SCID: 54.1/93mm7w8v
Discuss with AI
Anthropocene riverschannel pattern identificationfluvial remote sensingriver corridor monitoringsediment transfer modeling
Figures from the paper
Abstract (AI)
ABSTRACT The rivers of the world are undergoing accelerated change in the Anthropocene, and need to be managed at much broader spatial and temporal scales than before. Fluvial remote sensing now offers a technical and methodological framework that can be deployed to monitor the processes at work and to assess the trajectories of rivers in the Anthropocene. In this paper, we review research investigating past, present and future fluvial corridor conditions and processes using remote sensing and we consider emerging challenges facing fluvial and riparian research. We introduce a suite of remote sensing methods designed to diagnose river changes at reach to regional scales. We then focus on identification of channel patterns and acting processes from satellite, airborne or ground acquisitions. These techniques range from grain scales to landform scales, and from real time scales to inter‐annual scales. We discuss how remote sensing data can now be coupled to catchment scale models that simulate sediment transfer within connected river networks. We also consider future opportunities in terms of datasets and other resources which are likely to impact river management and monitoring at the global scale. We conclude with a summary of challenges and prospects for remotely sensed rivers in the Anthropocene. © 2019 John Wiley & Sons, Ltd.
Key Findings
1
Emerging datasets and resources offer opportunities for global-scale river management and monitoring, while significant challenges remain for remotely sensed river research in the Anthropocene.
2
Fluvial remote sensing provides a framework for monitoring accelerated river changes and assessing river trajectories across broader spatial and temporal scales.
3
Remote-sensing data can be coupled with catchment-scale models to simulate sediment transfer through connected river networks.
4
Remote-sensing techniques identify channel patterns and active processes across spatial scales ranging from individual grains to landforms and temporal scales from real time to interannual.
5
The review presents remote-sensing methods for diagnosing river changes from reach to regional scales, using satellite, airborne, and ground-based acquisitions.
Research Object
Rivers and fluvial corridors in the Anthropocene
Research Subject
Their past, present, and future conditions, changes, and governing processes assessed through remote sensing across spatial and temporal scales
Publication Details
Publication Date
2019-12-12
Journal
Publisher
ISSN
Open access PDF
Access Type
Author Information
Download PDF
Subscribe to digest