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Upstream Internal Jumps in Stratified Sill Flow: Observations of Formation, Evolution, and Release
Author(s) -
Patrick F. Cummins,
Laurence Armi
Publication year - 2010
Publication title -
journal of physical oceanography
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.706
H-Index - 143
eISSN - 1520-0485
pISSN - 0022-3670
DOI - 10.1175/2010jpo4435.1
Subject(s) - sill , hydraulic jump , geology , froude number , crest , stratified flow , stratification (seeds) , flow (mathematics) , amplitude , stratified flows , jump , internal tide , mechanics , internal wave , geomorphology , oceanography , petrology , physics , turbulence , seed dormancy , germination , botany , quantum mechanics , dormancy , biology
The time-dependent response of upstream undular bores and internal hydraulic jumps from initial formation to eventual release is documented. Two events, characterized by qualitatively different responses, are discussed. In the first case, an undular bore develops upstream of the sill crest. This disturbance remains upstream through the ebb tidal flow but is transformed to a hydraulic jump as its amplitude increases. Toward the end of ebb tide, it is released and subsequently disperses into a group of solitary-like waves. During the second event, an upstream jump also develops at an early stage of the tide. However, it is subsequently swept downstream by the tidal flow such that the upstream region then appears featureless. Approaching slack tide, as an exchange flow becomes established, a large bore or gravity current is emitted. The different responses seen in these two events are interpreted in terms of the Froude number associated with the near-surface stratification.

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