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  4. Tracking the Nearfield Evolution of an Initially Shallow, Neutrally Buoyant Plane Jet Over a Sloping Bottom Boundary
 
research article

Tracking the Nearfield Evolution of an Initially Shallow, Neutrally Buoyant Plane Jet Over a Sloping Bottom Boundary

Shi, H.  
•
Negretti, M. E.
•
Chauchat, J.
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April 1, 2024
Water Resources Research

Understanding coastal plane jets which occur when a body of water discharges into an ocean or a lake through a channel or outlet is important, since they play a significant role in sediment, nutrient, and pollutant exchange. This study investigates the nearfield of initially shallow, neutrally buoyant plane jets, bounded by a free surface and a sloping bottom (Sloping Bottom Jet; SBJ) that issue into a laterally unconfined quiescent ambient both experimentally and numerically, and compares them with a plane jet flowing over a horizontal bottom (Horizontal Bottom Jet; HBJ). Results revealed that, different from the HBJ, the width and centerline velocity of SBJ decrease near the mouth. The SBJ width gradually increases after that as the transverse longitudinal velocity profile progressively transforms from a "top-hat" into a Gaussian distribution. Once the Gaussian distribution is established, both jets diverge and centerline velocity decreases. Shear layers are generated on the sides of both jets with Kelvin Helmholtz-type Coherent Structures (KHCS) developing inside. KHCS produce periodic velocity fluctuations with a Strouhal number of similar to 0.079 and contribute significantly to momentum exchange and turbulent kinetic energy production. Since the thickness of the SBJ increases longitudinally, the vertical extent of KHCS also increases. When the two shear layers meet and merge at the centerline, they cause a flapping motion of the jet. This location is closer to the jet mouth for SBJs than for the HBJ. These findings demonstrate that a sloping bottom modifies the flow field from quasi-2D for the HBJ to strongly 3D for SBJs.|Combined physical/numerical experiments allowed the first characterization of a neutrally buoyant plane jet over a sloping bottom Sloping bottom jets converge laterally near the mouth and have narrower, shorter flow establishment zones than horizontal bottom jets Coherent structures developing in the shear layers contribute significantly to turbulent kinetic energy production and momentum exchange

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Type
research article
DOI
10.1029/2023WR034826
Web of Science ID

WOS:001207782900001

Author(s)
Shi, H.  
Negretti, M. E.
Chauchat, J.
Blanckaert, K.
Lemmin, U  
Barry, D A  
Date Issued

2024-04-01

Publisher

Amer Geophysical Union

Published in
Water Resources Research
Volume

60

Issue

4

Article Number

e2023WR034826

Subjects

Life Sciences & Biomedicine

•

Physical Sciences

•

Sloping Bottom Jet

•

Shear Layers

•

Kelvin Helmholtz Coherent Structures

•

Jet Flapping

•

Turbulent Kinetic Energy Budget

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
ECOL  
Available on Infoscience
May 1, 2024
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/207767
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