Observations of nonlinear internal waves at a persistent coastal upwelling front
نویسندگان
چکیده
We collected high resolution observations of nonlinear internal waves (NLIWs) at a persistent upwelling front in the shallow coastal environment ( ~ 20m) of northern Monterey Bay, CA. The coastal upwelling front forms between recently upwelled waters and warmer stratified waters that are trapped in the bay (upwelling shadow). The front propagates up and down the coast in the along shore direction as a buoyant plume front due to modulation by strong diurnal wind forcing. The evolution of the coastal upwelling front, and the subsequent modulation of background environmental conditions, is examined using both individual events and composite day averages. We demonstrate that regional scale upwelling and local diurnal wind forcing are key components controlling local stratification and the formation of internal wave guides that allow for high frequency internal wave activity. Finally, we discuss the ability of theoretical models to describe particularly large amplitude internal waves that exist in the presence of a strong background shear and test a fully nonlinear model (i .e., the Dubreil jacotin Long equation).
منابع مشابه
Numerical Simulation of Internal Kelvin Waves and Coastal Upwelling Fronts*
Two three-dimensional primitive equation numerical ocean models are applied to the problem of internal Kelvin waves and coastal upwelling in the Great Lakes. One is the Princeton Ocean Model (POM) with a terrain-following (sigma) vertical coordinate, and the other is the Dietrich/Center for Air Sea Technology (DIECAST) model with constant z-level coordinates. The sigma coordinate system is part...
متن کاملObservations of mixed layer restratification by onshore surface transport following wind reversal in a coastal upwelling region
[1] Observations, from the Oregon continental shelf, describe the slumping of a coastal upwelling front in response to a reversal of winds from upwellingto downwellingfavorable. Initially, the front outcropped in a surface mixed layer of depth 10–20 m with a pronounced cross-shelf density gradient. Following wind reversal, both the unbalanced cross-shelf pressure gradient and wind-driven Ekman ...
متن کاملDynamic characteristics and horizontal transports of internal solitons generated at the Columbia River plume front
River plume front-generated internal solitons play an important role in the interaction between the plume and coastal waters. The internal solitons drive a non-harmonic velocity field, resulting in a horizontal transport that carries plume water seaward and redistributes nutrients and sediments. In this study, we present observations of internal solitons generated at the Columbia River plume fr...
متن کاملSimulating the time - variable coastal upwelling during CODE 2
The time-variable coastal upwelling during CODE 2 is simulated using a mixing-advection coupled model. The agreement between model results and observations is generally good. During periods of strong equatorward wind stress, shelf water is cold and weakly stratified, and a front moves offshore; during periods of wind relaxation, surface temperature rises markedly, but the subsurface front usual...
متن کاملUpwelling relaxation and estuarine plumes
[1] After coastal upwelling, the water properties in the nearshore coastal region close to estuaries is determined by the race between the new estuarine plume traveling along the coast and the upwelled front (a marker for the old upwelled plume and the coastal pycnocline) returning to the coast under downwelling winds. Away from an estuary, downwelling winds can return the upwelled front to the...
متن کامل