Field Observations of Wind Waves in Upper Delaware Bay with Living Shorelines

Ling Zhu1, Qin Chen2, Hongqing Wang3, William D. Capurso4, Lukasz M. Niemoczynski5, Kelin Hu6, Gregg A. Snedden3
1Department of Civil and Environmental Engineering, Northeastern University, Boston, USA
2Department of Civil and Environmental Engineering, Northeastern University, Boston, MA 02115, USA
3U.S. Geological Survey, Wetland and Aquatic Research Center, Baton Rouge, USA
4New York Water Science Center, U.S. Geological Survey, Coram, USA
5New Jersey Water Science Center, U.S. Geological Survey, Lawrenceville, USA
6Department of River-Coastal Science and Engineering, Tulane University, New Orleans, USA

Tóm tắt

Từ khóa


Tài liệu tham khảo

Aijaz, S., W.E. Rogers, and A.V. Babanin. 2016. Wave spectral response to sudden changes in wind direction in finite-depth waters. Ocean Modelling 103: 98 Waves and coastal, regional and global processes.

Bai, Y., and W.-L. Jin. 2016. Chapter 6 - wind loads for offshore structures. In Marine structural design, ed. Y. Bai and W.-L. Jin, 2nd ed., 95. Oxford: Butterworth-Heinemann.

Bradley, K., and C. Houser. 2009. Relative velocity of seagrass blades: implications for wave attenuation in low-energy environments. Journal of Geophysical Research - Earth Surface 114 (F1).

Chen, Q., P.A. Madsen, and D.R. Basco. 1999. Current effects on nonlinear interactions of shallow water waves. Journal of Waterway, Port, Coastal, and Ocean Engineering 125 (4): 176.

Conrad, K. 2015. Final environmental assessment for the Gandy’s Beach/Money Island Living shoreline project. Pleasantville: United States Fish and Wildlife Service New Jersey Field Office.

Dean, R.G., and R.A. Dalrymple. 1991. Water wave mechanics for engineers and scientists. Singapore: World Scientific.

Everett, T., Q. Chen, A. Karimpour, and R. Twilley. 2019. Quantification of swell energy and its impact on wetlands in a deltaic estuary. Estuaries and Coasts 42 (1): 68.

Freilich, M.H., R.T. Guza, and G.B. Whitham. 1984. Nonlinear effects on shoaling surface gravity waves. Philosophical Transactions of the Royal Society of London. Series A, Mathematical and Physical Sciences 311 (1515): 1.

Hu, K., and Q. Chen. 2011. Directional spectra of hurricane-generated waves in the Gulf of Mexico. Geophysical Research Letters 38 (19): L19608.

Hwang, P.A., F.J. Ocampo-Torres, and H. Garcia-Nava. 2012. Wind sea and swell separation of 1d wave spectrum by a spectrum integration method. Journal of Atmospheric and Oceanic Technology 29 (1): 116.

Jadhav, R., Q. Chen, and J.M. Smith. 2013. Spectral distribution of wave energy dissipation by salt marsh vegetation. Coastal Engineering 77: 99–107.

Jones, N.L., and S.G. Monismith. 2007. Measuring short-period wind waves in a tidally forced environment with a subsurface pressure gauge. Limnology and Oceanography: Methods 5. https://doi.org/10.4319/lom.2007.5.317.

Kamphuis, J.W. 2010. Introduction to coastal engineering and management. 2nd ed. Singapore: World Scientific.

Kaplan, D.A., M. Olabarrieta, P. Frederick, and A. Valle-Levinson. 2016. Freshwater detention by oyster reefs: quantifying a keystone ecosystem service. PLoS One 11 (12): e0167694.

Karimpour, A., and Q. Chen. 2017. Wind wave analysis in depth limited water using oceanlyz, a matlab toolbox. Computers and Geosciences 106: 181.

Karimpour, A., Q. Chen, and R.R. Twilley. 2017. Wind wave behavior in fetch and depth limited estuaries. Scientific Reports 7 (40654).

Kukulka, T., R.L. Jenkins III, J.T. Kirby, F. Shi, and R.W. Scarborough. 2017. Surface wave dynamics in Delaware Bay and its adjacent coastal shelf. Journal of Geophysical Research, Oceans 122 (11): 8683.

La Peyre, M.K., A.T. Humphries, S.M. Casas, and J.F. La Peyre. 2014. Temporal variation in development of ecosystem services from oyster reef restoration. Ecological Engineering 63: 34–44.

Leonardi, N., N.K. Ganju, and S. Fagherazzi. 2016. A linear relationship between wave power and erosion determines salt-marsh resilience to violent storms and hurricanes. Proceedings of the National Academy of Sciences 113 (1): 64–68.

Lowe, R.J., J.L. Falter, J.R. Koseff, S.G. Monismith, and M.J. Atkinson. 2007. Spectral wave flow attenuation within submerged canopies: implications for wave energy dissipation. Journal of Geophysical Research 112: C05018.

Munk, W.H., G.R. Miller, F.E. Snodgrass, N.F. Barber, and G.E.R. Deacon. 1963. Directional recording of swell from distant storms. Philosophical Transactions of the Royal Society of London. Series A, Mathematical and Physical Sciences 255 (1062): 505.

Oke, T.R. 1987. Boundary layer climates. 2nd ed. London: Routledge.

Seabrook, S., and K. Hall. 1998. Wave transmission at submerged rubblemound breakwaters. Coastal Engineering Proceedings 1 (26).

Seers, B. 2018. fetchR: calculate wind fetch. R package version 2.1-1. https://cran.r-project.org/package=fetchR.

Shi, F., J.T. Kirby, J.C. Harris, J.D. Geiman, and S.T. Grilli. 2012. A high-order adaptive time-stepping TVD solver for boussinesq modeling of breaking waves and coastal inundation. Ocean Modelling 43-44: 36.

Thornton, E.B., and R.T. Guza. 1983. Transformation of wave height distribution. Journal of Geophysical Research, Oceans 88 (C10): 5925.

US Fish and Wildlife Service. 2016. Hurricane Sandy recovery: Gandy’s Beach shoreline protection. https://www.fws.gov/hurricane/sandy/projects/GandysBeach.html. Accessed 29 Aug 2019.

van der Meer, J.W., R. Briganti, B. Zanuttigh, and B. Wang. 2005. Wave transmission and reflection at low-crested structures: design formulae, oblique wave attack and spectral change. Coastal Engineering 52 (10): 915 Low Crested Structures and the Environment.

Wiberg, P.L., S.R. Taube, A.E. Ferguson, M.R. Kremer, and M.A. Reidenbach. 2019. Wave attenuation by oyster reefs in shallow coastal bays. Estuaries and Coasts 42: 331.

Yang, Y., and J.L. Irish. 2018. Evolution of wave spectra in mound-channel wetland systems. Estuarine, Coastal and Shelf Science 207: 444.

Zhu, L., and Q. Chen. 2017. Effects of triad interactions on wave attenuation by vegetation. Journal of Engineering Mechanics 143 (9): 04017100.