Vertical alignment of the Gulf Stream

ABSTRACT A historical set of expendable bathythermograph (XBT) and Pegasus sections across the Gulf Stream in natural coordinates is examined to investigate the isopycnic structure of the current off Cape Hatteras. In isopycnic‐natural coordinates, the axis of the Stream remains vertically aligned,...

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Published inTellus. Series A, Dynamic meteorology and oceanography Vol. 57; no. 4; pp. 691 - 700
Main Authors RATSIMANDRESY, A. W., PELEGRÍ, J. L.
Format Journal Article
LanguageEnglish
Published 9600 Garsington Road , Oxford OX4 2DQ , UK , USA Munksgaard International Publishers 01.08.2005
Blackwell
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Abstract ABSTRACT A historical set of expendable bathythermograph (XBT) and Pegasus sections across the Gulf Stream in natural coordinates is examined to investigate the isopycnic structure of the current off Cape Hatteras. In isopycnic‐natural coordinates, the axis of the Stream remains vertically aligned, in contrast to its well‐known offshore tilting when plotted as a function of depth. These results are confirmed using the geostrophic velocities obtained from a synthetic temperature field for the Gulf Stream. We prove that a baroclinic current aligned with density cannot be aligned with depth, and vice versa, and we show that the density alignment of the Gulf Stream results from the distortion of the density field and has negligible dependence on the choice of reference level. The invariable character of intense geophysical jets is supported through analogous representations for the upper level atmospheric jet stream in isentropic coordinates. These show that the atmospheric jet, when plotted on to a section normal to the direction of its maximum velocity core, is vertically aligned with potential temperature.
AbstractList A historical set of expendable bathythermograph (XBT) and Pegasus sections across the Gulf Stream in natural coordinates is examined to investigate the isopycnic structure of the current off Cape Hatteras. In isopycnic-natural coordinates, the axis of the Stream remains vertically aligned, in contrast to its well-known offshore tilting when plotted as a function of depth. These results are confirmed using the geostrophic velocities obtained from a synthetic temperature field for the Gulf Stream. We prove that a baroclinic current aligned with density cannot be aligned with depth, and vice versa, and we show that the density alignment of the Gulf Stream results from the distortion of the density field and has negligible dependence on the choice of reference level. The invariable character of intense geophysical jets is supported through analogous representations for the upper level atmospheric jet stream in isentropic coordinates. These show that the atmospheric jet, when plotted on to a section normal to the direction of its maximum velocity core, is vertically aligned with potential temperature.
ABSTRACT A historical set of expendable bathythermograph (XBT) and Pegasus sections across the Gulf Stream in natural coordinates is examined to investigate the isopycnic structure of the current off Cape Hatteras. In isopycnic‐natural coordinates, the axis of the Stream remains vertically aligned, in contrast to its well‐known offshore tilting when plotted as a function of depth. These results are confirmed using the geostrophic velocities obtained from a synthetic temperature field for the Gulf Stream. We prove that a baroclinic current aligned with density cannot be aligned with depth, and vice versa, and we show that the density alignment of the Gulf Stream results from the distortion of the density field and has negligible dependence on the choice of reference level. The invariable character of intense geophysical jets is supported through analogous representations for the upper level atmospheric jet stream in isentropic coordinates. These show that the atmospheric jet, when plotted on to a section normal to the direction of its maximum velocity core, is vertically aligned with potential temperature.
Author RATSIMANDRESY, A. W.
PELEGRÍ, J. L.
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Cites_doi 10.1029/94JC02497
10.1029/JC094iC04p04879
10.1016/0198-0149(81)90097-2
10.1175/1520-0434(1996)011<0188:JSWCOA>2.0.CO;2
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10.1175/1520-0485(1994)024<2278:STGSTS>2.0.CO;2
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10.1175/1520-0485(1989)019<1669:PVBAHD>2.0.CO;2
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10.1175/1520-0485(1990)020<0907:CSOATL>2.0.CO;2
10.1175/1520-0493(1998)126<1528:PFAUTF>2.0.CO;2
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Issue 4
Keywords ocean currents
Adjustment(atmosphere, ocean)
Alignment
density
Atlantic Ocean
Depth profile
Isentropic surface
Jet(atmosphere, ocean)
Bathythermograph
Velocity distribution
Western boundary current
ocean circulation
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Snippet ABSTRACT A historical set of expendable bathythermograph (XBT) and Pegasus sections across the Gulf Stream in natural coordinates is examined to investigate...
A historical set of expendable bathythermograph (XBT) and Pegasus sections across the Gulf Stream in natural coordinates is examined to investigate the...
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SubjectTerms Earth, ocean, space
Exact sciences and technology
External geophysics
Marine
Physics of the oceans
Thermohaline structure and circulation. Turbulence and diffusion
Title Vertical alignment of the Gulf Stream
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Volume 57
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