Javascript must be enabled to continue!
Rate of Sea‐Level Rise and Sediment Characteristics Modulate Deltaic River‐Tide Interactions
View through CrossRef
AbstractDue to sea‐level rise, small river‐dominated deltas (<100 km2) are expected to become more exposed to tidal influences in the future. However, there remains a knowledge gap in the impending hydrodynamics of such deltas, particularly with the interactions between river and tidal flows. In addition to sea‐level rise, river‐tide interactions in these deltas depend on their morphology, which is influenced by the sand proportion in the particulate matter delivered by rivers. This study investigates river‐tide interactions predicted for small deltas formed by different sand‐to‐mud ratios under various sea‐level rise scenarios. Delta morphologies were generated using reduced‐order complexity model (DeltaRCM), and hydrodynamic simulations were performed using advanced circulation (ADCIRC) modeling. The findings indicate that sea‐level rise promotes deeper tidal penetration into deltas. Deltas formed by finer sediments exhibit deeper channels flanked by large natural levees, whereas those formed by coarser sands are characterized by shallow channels with smaller levees. Consequently, tides primarily propagate along the channels of deltas formed by finer material, while deltas formed by coarser material experience greater tidal inundation. The findings are meaningful toward the adaptive management of deltas.
American Geophysical Union (AGU)
Title: Rate of Sea‐Level Rise and Sediment Characteristics Modulate Deltaic River‐Tide Interactions
Description:
AbstractDue to sea‐level rise, small river‐dominated deltas (<100 km2) are expected to become more exposed to tidal influences in the future.
However, there remains a knowledge gap in the impending hydrodynamics of such deltas, particularly with the interactions between river and tidal flows.
In addition to sea‐level rise, river‐tide interactions in these deltas depend on their morphology, which is influenced by the sand proportion in the particulate matter delivered by rivers.
This study investigates river‐tide interactions predicted for small deltas formed by different sand‐to‐mud ratios under various sea‐level rise scenarios.
Delta morphologies were generated using reduced‐order complexity model (DeltaRCM), and hydrodynamic simulations were performed using advanced circulation (ADCIRC) modeling.
The findings indicate that sea‐level rise promotes deeper tidal penetration into deltas.
Deltas formed by finer sediments exhibit deeper channels flanked by large natural levees, whereas those formed by coarser sands are characterized by shallow channels with smaller levees.
Consequently, tides primarily propagate along the channels of deltas formed by finer material, while deltas formed by coarser material experience greater tidal inundation.
The findings are meaningful toward the adaptive management of deltas.
Related Results
Sediment Transport On The River Bandon, Co. Cork, Ireland
Sediment Transport On The River Bandon, Co. Cork, Ireland
This thesis analyses sediment transport on the River Bandon, Co. Cork, Ireland. Bedload transport and suspended sediment transport were monitored on the River Bandon over an extend...
The Change Law and Formation Cause of Sediment Erosion and Deposition in the Three Gorges Reservoir in the Past 20 Years
The Change Law and Formation Cause of Sediment Erosion and Deposition in the Three Gorges Reservoir in the Past 20 Years
During the past 20 years of the Three Gorges Reservoir impoundment , the incoming water and sediment conditions have changed constantly in the upper reaches of the Three Gorges, re...
Estimation of Sediment Load in Arun River Basin
Estimation of Sediment Load in Arun River Basin
The single sediment rating equation is often used to estimate the suspended load in river, The sediment concentration is assumed as a function of mean daily discharge using a power...
Diffused and localized sediment production processes in a distributed transport model
Diffused and localized sediment production processes in a distributed transport model
<p>The identification of preferential sediment production areas within a river basin is essential to improve predictions of sediment load and its sources, and to iden...
Macroeconomic and Social Precursors of Suicide Rates in the Philippines: A Quantitative Analysis (Preprint)
Macroeconomic and Social Precursors of Suicide Rates in the Philippines: A Quantitative Analysis (Preprint)
BACKGROUND
Suicide is a complex, serious and multifaceted public health issue that poses significant challenges to societies worldwide. In fact, it represen...
Flodfund - Bronzealderdeponeringer fra Gudenåen
Flodfund - Bronzealderdeponeringer fra Gudenåen
River findsBronze Age metalwork from the river GudenåBronze Age metalwork (primarily swords and other weapons) found in European rivers has aroused interest for many years, but lit...
Trends in suspended sediment fluxes and sediment budgets across the river Rhine basin (1990-present)
Trends in suspended sediment fluxes and sediment budgets across the river Rhine basin (1990-present)
<p>Suspended sediment transport is a vital process in healthy river systems as it provides a source of nutrients in the soils of riverbanks and floodplains that event...
Secular Sediment Waves, Channel Bed Waves, and Legacy Sediment
Secular Sediment Waves, Channel Bed Waves, and Legacy Sediment
Abstract
The concept of sediment waves is reviewed and clarifications are proposed for nomenclature concerning vertical channel responses to large fluvial sedimen...

