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Technical note

Depth-averaged momentum equation for gravity currents with varying density: coefficient in pressure term

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Pages 424-430 | Received 11 Jul 2016, Accepted 23 May 2017, Published online: 31 Jul 2017
 

ABSTRACT

Gravity currents are often modelled by means of shallow water equations (SWEs). In these models, simplifications such as the consideration of a constant layer-averaged density are common. This note presents the complete and general derivation of a 2D depth-averaged momentum equation for gravity currents with density and velocity varying in the bed-normal direction. Special attention is given to the pressure term which is evaluated for constant, linear and exponential density profile. The shape of the density profile has implications for the momentum balance: the assumption of constant density leads to an overestimation of the driving force due to pressure gradient by a factor of 33% for linear density profile and up to 50% for an exponential profile. It also leads to an overestimation of celerity in numerical models based on traditional SWEs by factor of 22% and around 40% for linear end exponential density profiles respectively.

Additional information

Funding

The second author is funded by the Swiss National Science Foundation [grant number 200021_159249].

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