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The Prediction of Wind-Driven Coastal Circulation

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Release : 2000
Genre : Meteorology
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Book Synopsis The Prediction of Wind-Driven Coastal Circulation by : J. S. Allen

Download or read book The Prediction of Wind-Driven Coastal Circulation written by J. S. Allen. This book was released on 2000. Available in PDF, EPUB and Kindle. Book excerpt: The objectives of this project are to understand the dynamics of, and to build a predictive capability for, wind-driven mesoscale oceanographic processes (2-50 km horizontal space scales, 2-10 day time scales) over the continental shelf. The project combines modeling, data assimilation and an observational program off Oregon. The observation program took place in summer 1999. It included surface current measurements from the OSU Coastal Radar System and sub-surface current measurements from three moorings deployed off Newport. Measurements 9f temperature, salinity, and other variables were obtained using a small, towed undulating vehicle on over 20 across-shelf sections during the summer. In addition, hydrographic, bio-optical, velocity and microstructure measurements were made throughout the water column over the shelf during a three week cruise. These hydrographic measurements give new information on the complex three-dimensional structure of the shelf circulation that results from interactions of the flow with Heceta Bank. High-resolution, three-dimensional coastal ocean circulation models were forced by buoy observed winds and heat flux and also by fluxes from a high resolution coastal atmospheric model, nested in an operational large-scale weather prediction model. New techniques to assimilate surface current measurements from land-based radars in the coastal ocean models have been developed and applied.

The Prediction of Wind Driven Coastal Circulation

Download The Prediction of Wind Driven Coastal Circulation PDF Online Free

Author :
Release : 2000
Genre : Meteorology
Kind : eBook
Book Rating : /5 ( reviews)

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Book Synopsis The Prediction of Wind Driven Coastal Circulation by : J. S. Allen

Download or read book The Prediction of Wind Driven Coastal Circulation written by J. S. Allen. This book was released on 2000. Available in PDF, EPUB and Kindle. Book excerpt:

Ensemble-Based Estimates of the Predictability of Wind-Driven Coastal Ocean Flow Over Topography

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Author :
Release : 2008
Genre :
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Book Synopsis Ensemble-Based Estimates of the Predictability of Wind-Driven Coastal Ocean Flow Over Topography by :

Download or read book Ensemble-Based Estimates of the Predictability of Wind-Driven Coastal Ocean Flow Over Topography written by . This book was released on 2008. Available in PDF, EPUB and Kindle. Book excerpt: The predictability of coastal ocean circulation over the central Oregon shelf, a region of strong wind-driven currents and variable topography, is studied using ensembles of 50-day primitive-equation ocean model simulations with realistic topography, simplified lateral boundary conditions, and forcing from both idealized and observed wind time-series representative of the summer upwelling season. The main focus is on the balance, relevant to practical predictability, between deterministic response to known or well-predicted forcing, uncertainty in initial conditions, and sensitivity to instabilities and topographic interactions. Large ensemble and single-simulation variances are found downstream of topographic features, associated with transitions between along-isobath and cross-isobath flow, which are in turn related both to the time-integrated amplitude of upwelling-favorable wind-forcing and to the formation of small-scale eddies. Simulated predictability experiments are conducted and model forecasts are verified by standard statistics including anomaly correlation coefficient, and root mean squared error. A new variant of relative entropy, the forecast relative entropy, is introduced to quantify the predictive information content in the forecast ensemble, relative to the initial ensemble. The results suggest that, even under conditions of relatively weak wind forcing, the deterministic response is stronger than instability growth over the 3-7 day forecast intervals considered here. Consequently, important elements of the coastal circulation should be accessible to predictive, dynamical forecasts on the nominal 7-day predictability timescale of the atmospheric forcing, provided that sufficiently accurate initializations area available. These results on predictability are consistent with inferences drawn from recent modeling studies of coastal ocean circulation along the central Oregon shelf, and should have general validity for other, similar regions.

The Role of the Pressure Field in Wind Driven Coastal Circulation

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Author :
Release : 2005
Genre :
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Book Synopsis The Role of the Pressure Field in Wind Driven Coastal Circulation by : Chad Allan English

Download or read book The Role of the Pressure Field in Wind Driven Coastal Circulation written by Chad Allan English. This book was released on 2005. Available in PDF, EPUB and Kindle. Book excerpt:

Numerical Models for the Prediction of Wind and Tide Driven Coastal Circulation and Water Level

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Author :
Release : 1982
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Book Synopsis Numerical Models for the Prediction of Wind and Tide Driven Coastal Circulation and Water Level by : Jon M. Hubertz

Download or read book Numerical Models for the Prediction of Wind and Tide Driven Coastal Circulation and Water Level written by Jon M. Hubertz. This book was released on 1982. Available in PDF, EPUB and Kindle. Book excerpt: This paper discusses two Inland Flooding Models which have features applicable to the study of river flow and flooding. The models are presently being used to address field needs in the area of storm surge studies. They provide a tool to predict water level and currents where these variables are needed in the design of coastal protection projects. They are also being used to study the changes in water level or current patterns which a coastal project might cause. These could be changes in the daily tidal circulation as well as changes related to storm events.

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