Skip to main content

Fluvial and marine controls on combined subaerial and subaqueous delta progradation: Morphodynamic modeling of compound-clinoform development

Publication ,  Journal Article
Swenson, JB; Paola, C; Pratson, L; Voller, VR; Murray, AB
Published in: Journal of Geophysical Research Earth Surface
June 1, 2005

Fluviodeltaic systems commonly display a compound-clinoform geometry that consists of a subaerial/subaqueous delta couplet. The extent of subaqueous delta development varies significantly and, in modern systems, is a function of fluvial input and basin hydrodynamics. We present a model of fluviodeltaic progradation in which the repeated occurrence of characteristic terrestrial floods and large coastal storms drives fluvial and shallow marine morphodynamics, respectively. We couple fluvial and shallow marine sediment dynamics via the surf zone, which we collapse to a shock condition and treat as a moving boundary. With steady sediment supply and sea level and simple basin geometry, our model naturally develops prograding deltas with compound-clinoform geometries. The subaerial delta grows via fluvial aggradation and shoreface progradation, whereas the subaqueous delta expands through foreset progradation, with only minor topset aggradation. The interplay of fluvial input with the wave/current field controls the basic partitioning of sediment between subaerial and subaqueous deltas and, by extension, the compound-clinoform geometry. Increasing the frequency or magnitude of coastal storms, decreasing flood frequency or discharge, and reducing grain size all increase the fraction of sediment delivered to the shallow marine environment and the extent of subaqueous delta progradation relative to subaerial delta development. Our model, which emphasizes the intrinsic coupling of fluvial and shallow marine sediment dynamics and downplays the importance of allogenic fluctuations, can explain many of the first-order morphologic features of natural delta systems, including significant lateral separation of the shoreline and clinoform rollover and differing rates of subaerial and subaqueous delta progradation. Copyright 2005 by the American Geophysical Union.

Duke Scholars

Published In

Journal of Geophysical Research Earth Surface

DOI

EISSN

2169-9011

Publication Date

June 1, 2005

Volume

110

Issue

2

Related Subject Headings

  • 41 Environmental sciences
  • 37 Earth sciences
  • 04 Earth Sciences
 

Citation

APA
Chicago
ICMJE
MLA
NLM
Swenson, J. B., Paola, C., Pratson, L., Voller, V. R., & Murray, A. B. (2005). Fluvial and marine controls on combined subaerial and subaqueous delta progradation: Morphodynamic modeling of compound-clinoform development. Journal of Geophysical Research Earth Surface, 110(2). https://doi.org/10.1029/2004JF000265
Swenson, J. B., C. Paola, L. Pratson, V. R. Voller, and A. B. Murray. “Fluvial and marine controls on combined subaerial and subaqueous delta progradation: Morphodynamic modeling of compound-clinoform development.” Journal of Geophysical Research Earth Surface 110, no. 2 (June 1, 2005). https://doi.org/10.1029/2004JF000265.
Swenson JB, Paola C, Pratson L, Voller VR, Murray AB. Fluvial and marine controls on combined subaerial and subaqueous delta progradation: Morphodynamic modeling of compound-clinoform development. Journal of Geophysical Research Earth Surface. 2005 Jun 1;110(2).
Swenson, J. B., et al. “Fluvial and marine controls on combined subaerial and subaqueous delta progradation: Morphodynamic modeling of compound-clinoform development.” Journal of Geophysical Research Earth Surface, vol. 110, no. 2, June 2005. Scopus, doi:10.1029/2004JF000265.
Swenson JB, Paola C, Pratson L, Voller VR, Murray AB. Fluvial and marine controls on combined subaerial and subaqueous delta progradation: Morphodynamic modeling of compound-clinoform development. Journal of Geophysical Research Earth Surface. 2005 Jun 1;110(2).

Published In

Journal of Geophysical Research Earth Surface

DOI

EISSN

2169-9011

Publication Date

June 1, 2005

Volume

110

Issue

2

Related Subject Headings

  • 41 Environmental sciences
  • 37 Earth sciences
  • 04 Earth Sciences