Growing Forced Bars Determine Nonideal Estuary Planform

Publication date

2018-11-20

Authors

Leuven, J. R.F.W.ISNI 0000000476416010
Braat, LisanneISNI 0000000493299370
van Dijk, W.M.ORCID 0000-0002-7276-1824ISNI 0000000397190623
de Haas, TjallingISNI 0000000492491491
van Onselen, E. P.
Ruessink, GerbenORCID 0000-0001-9526-6087ISNI 0000000117053107
Kleinhans, MaartenORCID 0000-0002-9484-1673ISNI 0000000114640007

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Document Type

Article
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cc_by_nc_nd

Abstract

The planform of estuaries is often described with an ideal shape, which exponentially converges in landward direction. We show how growing topographically forced nonmigratory (i.e., anchored) bars determine the large-scale estuary planform, which explains the deviations observed in the planform of natural estuaries filled with bars compared to the ideal planform. Experiments were conducted in a 20-m long, 3-m-wide tilting flume, the Metronome. From a narrow, converging channel a self-formed estuary developed characterized by multiple channels, braided bars, a meandering ebb channel, and an ebb delta. Bars hardly migrated due to the alternating current, but the bar width increased with increasing estuary width. At locations where the estuary width was narrow, major channel confluences were present, while the zones between the confluences were characterized by a higher braiding index, periodically migrating channels, and a relatively large estuary width. At the seaward boundary, confluences were forced in place by the presence of the ebb tidal delta. Between confluences, bars were topographically forced to be nonmigratory. Diversion of flow around forced midchannel bars caused bank erosion. This resulted in a planform shape with a quasiperiodic widening and narrowing at the scale of forced bars. Observations in natural systems show that major confluence locations can also be caused by inherited geology and human engineering, but otherwise the estuary outline is similarly affected by tidal bars. These observations provide a framework for understanding the evolution of tidal bar patterns and the planform shape of the estuary, which has wide implications for navigation, dredging, and ecology.

Keywords

bar pattern, channel configuration, channel dynamics, estuaries, long-term evolution, scale experiment, Geophysics, Forestry, Oceanography, Aquatic Science, Ecology, Water Science and Technology, Soil Science, Geochemistry and Petrology, Earth-Surface Processes, Atmospheric Science, Space and Planetary Science, Earth and Planetary Sciences (miscellaneous), Palaeontology

Citation

Leuven, J R F W, Braat, L, van Dijk, W M, de Haas, T, van Onselen, E P, Ruessink, B G & Kleinhans, M G 2018, 'Growing Forced Bars Determine Nonideal Estuary Planform', Journal of Geophysical Research: Earth Surface, vol. 123, no. 11, pp. 2971-2992. https://doi.org/10.1029/2018JF004718