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The Estuarine Richardson Number and the NeapSpring

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Title: The Estuarine Richardson Number and the NeapSpring


1
The Estuarine Richardson Number and the
Neap/Spring Transition. Bob Chant Rocky
Geyer IMCS Rutgers University
Collaborators Bob Houghton Jim Lerczak
2
Estuarine Conference Schedule
  • 2006 PECS (Submit an abstract See David
    Jay)
  • John Simpson Retirement Symposium
  • PECS
  • John Simpson Retirement Symposium
  • PECS
  • John Simpson Retirement Symposium
  • PECS
  • John Simpson Retirement Symposium
  • PECS
  • John Simpson Retirement Symposium
  • PECS
  • John Simpson Retirement Symposium
  • PECS
  • John Simpson Retirement Symposium
  • PECS
  • John Simpson Retirement Symposium
  • PECS
  • John Simpson Retirement Symposium
  • PECS

3
Estuarine Conference Schedule
  • PECS
  • John Simpson Retirement Symposium
  • 2030 PECS
  • 2031 John Simpson Retirement Symposium
  • 2032 PECS
  • 2033 John Simpson Retirement Symposium
  • 2034 PECS
  • 2035 John Simpson Retirement Symposium
  • 2036 PECS
  • 2037 John Simpson Retirement Symposium
  • 2038 PECS
  • 2039 John Simpson Retirement Symposium
  • 2040 PECS
  • 2041 John Simpson Retirement Symposium
  • 2042 PECS
  • 2043 Rocky Geyer Retirement Symposium
  • 2044 PECS
  • 2045 Rocky Geyer Retirement Symposium
  • 2046 PECS

4
Channel Cross-section at mooring array
Hudson River
1
2
3
4
New York
3
1
New Jersey
Atlantic Ocean
2
4
GWB
5
Thanks to Paul Linden.
6
Near Zero River Flow
7
Along channel salt sections
Spring
Q800 m3/s
Neap
8
Tidal Range(black) and Stratification (Blue)
Lower layer flow
Up River
9
Spring neap cycle involves movement primarily
though Estuarine (or Horizontal) Richardson
Number space.
10
Along Channel salt/dye sections
May 4th
May 6th
May 7th
Dye Conc 10-11
May 8th
km north of the Battery
11
(No Transcript)
12
River
Ocean
u1
u2
(Eulerian lower salt Equation rbS)
Neap/Spring transition occurs when V0
13
Following Geyer et al. 2000 for u2
u1
RCdU
u2
h1
Neglect time dependent term
h2
14
Critical condition occurs (Vs0) when.
From salt equation
u2 from momentum eqn.

15
5B
P
a0.5, Rif.15
16
Ucrit58 cm/s
A
B
17
Conclusions
  • Neap-tide increase in stratification is
    characterized by baroclinic
  • adjustment and landward advance of isohalines in
    bottom boundary layer.
  • 2) Landward advance of isohaline in BBL is
    slowed by vertical mixing
  • and reversed approaching spring tides.
  • 3) With a salt and momentum equation and a
    turbulence scaling the dynamics
  • of the neap/spring can be distilled into the
    horizontal Richardson Number.
  • 4) The critical value of Rix 1. For Rix gt 1 the
    estuary is stratified , for
  • Rix lt 1 the estuary is mixed.
  • 5) S/N transition in Hudson occurs at Ri1.
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