4.5 Article

Impact of Channel Deepening on Tidal and Gravitational Circulation in a Highly Engineered Estuarine Basin

期刊

ESTUARIES AND COASTS
卷 41, 期 6, 页码 1587-1600

出版社

SPRINGER
DOI: 10.1007/s12237-018-0379-6

关键词

Estuarine exchange flow; Channel deepening; Estuarine salt intrusion

资金

  1. Hudson River Foundation [HRF008/07A]
  2. National Science Foundation Coastal SEES grant [1325258]
  3. National Science Foundation [OCE-1325102]
  4. U.S. Army Corps of Engineers [W1927N-14-2-0015]
  5. US National Science Foundation [1455350]
  6. Directorate For Geosciences
  7. Division Of Ocean Sciences [1455350] Funding Source: National Science Foundation
  8. Division Of Ocean Sciences
  9. Directorate For Geosciences [1325258] Funding Source: National Science Foundation

向作者/读者索取更多资源

Deepening of estuarine channels is a common practice to ensure navigation. Here, we investigate whether such deepening impacts physical processes such as the strength of the estuarine exchange flow, the horizontal salinity gradient, and tidal dynamics. We analyze recent and historical hydrodynamic observations in Newark Bay, New Jersey, to assess the effect of channel deepening on tides, circulation, and salinity. The Bay's navigational channel has undergone significant deepening, from 3 to 10 m in the nineteenth century to similar to 16 m today. Observations presented here include sea-level data from the nineteenth, twentieth, and twenty-first century, and moored Doppler current data and bottom salinity measurements made over the past 20 years. Results show a doubling of the estuarine exchange flow, a slight increase in salinity and in the horizontal salinity gradient, a decrease in tidal current amplitude, and a spatially variable change in the tidal range. The doubling of the exchange flow is consistent with the Hansen and Rattray scaling provided that the horizontal salinity gradient is unable to fully adjust landward because the dredging is limited to a short reach of the estuary. However, uncertainty in channel depth leaves open the possibility that the exchange flow is also augmented by an increase in the horizontal salinity gradient and/or a reduction in vertical mixing. Nevertheless, results demonstrate that a relatively small (15%) increase in depth appears to have doubled the exchange flow. We believe that this result is relevant to other systems where dredging is limited to a short reach of an estuary.

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