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黄瑞新教授 * Q0 c r5 ~2 R( M$ q5 \
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7 \% ~2 i& }" d% ]Rui Xin Huang
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3 j( @, C' @. k lSenior Scientist
6 L! h! h. Q. v6 x. d }! xW. Van Alan Clark, Jr., Chair for Excellence in Oceanography, 2002-;
% u; J; S* U; X' WWoods Hole Oceanographic Institution
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Phone: (o) 508-289-2532;
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e-mail address: rhuang@whoi.edu
+ v7 ^% y2 {7 _Date of Birth: Sep. 15, 1942
+ g: X1 ?" q8 I" N+ D- u& ^Citizenship: U.S.A.
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Education7 ]: |8 |2 D) Z
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The University of Science and Technology of China, 1960-65; B.S. in
7 D) ^ F! a' H, u9 I% H& D+ l0 uThermo-physical Fluid Dynamics of Jet Propulsion, 1965.
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Graduate School, University of Science and Technology of China, Meteorology, 1978-80.+ Q# G1 D ]! S2 u9 c
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The Johns Hopkins University, Geophysical Fluid Dynamics, Sep. 1980-Feb. 1981. - n1 |4 f& }# V5 c2 p( B, o
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Massachusetts Institute of Technology/Woods Hole Oceanographic Institution, 1981-1984; Ph.D. in Physical Oceanography 1984. " p, q, S' x6 k6 ?: ]
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Experience
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Research Associate, Institution of Mechanics, Beijing, China,2 }: ^" x5 e' }' a0 i% G
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1965--1978. Self-study of English and mathematics during the
! ^3 n4 ~7 d9 f7 f- H6 eCultural Revolution in China; aerodynamics of wings; transonic flow in
/ n6 G3 c0 {& Y1 C# }Turbo-machine; design of transonic turbo-machine; design and build the first transonic cascade tunnel in China; translation of a large five-language dictionary in physics.
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Postdoctoral, M.I.T., 1984. ) y/ p* ?3 r# b1 \$ @; v4 g5 Y
Visiting Scientist, Geophysical Fluid Dynamics Laboratory (NOAA), Princeton University, 1984--1986, March--June 1992.2 m2 W( X% {- _) s+ P% {7 `- y
, Y! l/ ~& {! ^4 {Assistant Scientist, 1986--1990; Associate Scientist, 1990-1998; tenure awarded, 1993, Senior Scientist, 1998-, Woods Hole Oceanographic Institution; ' k3 N2 Q8 {% }8 V# D2 m" a$ q9 y
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Visiting Associate Professor, University of Hawaii, Jan.-June, 1994.
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0 o4 R: e0 B6 DVisiting Scientist, Cooperative Institute for Marine and Atmospheric Studies,) ?6 h" j% m" g9 e; |. }1 p* @3 L
University of Miami, Feb., 1999.! h `; {- i$ i6 i- B2 k$ |1 F) ?. S
( t) [; p, k. {! k4 m QVisiting Professor, Lamont-Doherty Earth Observatory, Columbia University, March-May., 1999.
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Corresponding Member, U.S. WOCE Working Group on Numerical Modeling, 1989-1992.
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5 {- D( d5 n) I; ~" l6 |( r: fJoint Committee of Physical Oceanography, MIT/WHOI Joint Program, 1990-93.
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1 `! a# t: A% I8 x2 tMember, Working Group on Oceanic Thermohaline Circulation and Variability,
, E. Q) e/ y' sClimate System Modeling Project, USA, 1993-96.
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% v( {7 G/ ]$ j1 NMember, Climate Change Committee, WHOI, 1995-1999.
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Member, Advisory Committee, Ocean and Climate Change Institute, 2001-2005.5 M$ ]: {$ |, }
- B$ ?% q. s9 @0 i0 Y8 n$ `Guest Professor, Ocean University of Qingdao, China, 1996--./ c% n9 F x" o3 {6 H$ R$ M( i
$ t; s4 }0 i" z2 n" _# KChairman, Academic Committee for the national Key Laboratory of Physical Oceanography, Ocean University of China, 1999-2005. \( E, K' Y! I. J4 `' Q+ h; x
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Member, Advisory Academic Committee of the National Key Laborotory of numerical Modeling for Atmospheric Sciences and Geophysical Fluid Dynamics (LASG), Institute of Atmospheric Physics, Chinese Academy of Sciences, 2001- 2005.0 w4 q+ O3 p: S2 G
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Guest professor, South China Institute of Oceanology, Chinese Academy of Sciences, 2002-.
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& c# d$ {* u1 ^4 FTeaching
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Steady Circulation in the Oceans and Atmosphere, MIT/WHOI Joint Program, 1988-1991.
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Recent Advances in Large-Scale Ocean Circulation Theory, Second Institute of Oceanography, Hangzhou, China, October 7-17, 1992.
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$ @/ W; w' x3 d% p5 _* XTheories of the Oceanic General Circulation, University of Hawaii, Spring, 1994.
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Advances in Theories of Wind-Driven and Thermohaline Circulation, International; d ?7 X9 X+ X# ?. F
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Summer School on Ocean-Atmosphere Interaction, July 25-August 4, 1994, Qingdao, China.$ X" R( w; S$ C, D) R8 D4 s
) n+ z9 s( H$ a# X5 w4 ?Theories of the Oceanic General Circulation, MIT/WHOI Joint Program,
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3 V0 H3 B l& ?5 A- H* PSpring 1995, Fall, 1998, Fall, 2001, Spring, 2004.' g" N: g7 X4 j8 b% E1 i5 y$ |
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Supervision
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4 P: L2 V$ x; ?$ }Served as a mentor for Dr. Krupitsky (Institution Postdoctoral Fellow), Dr. Mahdi Ben Jelloul (Institutional Postdoctorial Fellow), Dr. Jiayan Yang (when he was an Assistant Scientist).
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Mr. James McLaren, 1987-89; Mr. Li Ping Wang, 1989-93 (Ph.D.); 2 Q: k$ `* [* q1 P9 }# q) H9 I9 b
+ p$ Q v/ ?- J* ]5 R6 jOn thesis committee of other six students, chairman of thesis defense committee for Mr. Hui Ming Zhang and Ms. Sarah Gille.8 V; w" h0 ]0 j
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Michael Masterson, Summer Student Fellow, 1987; Marcel Lieberman, Summer Student, G9 K- s1 [, B; ^3 b
Fellow, 1989; Sarah Russell, Summer Student Fellow, 1993.
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Sea Cruises( T: ]8 V) ]1 M% ^0 T
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RV OCEANUS, Seasor test cruise, July, 1989. q% h/ @6 q, I; X+ i
Oceanus, Immerges Sea Cruise, August, 2003.
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Honor
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- K* s4 E( s& O, G) \1 R9 uNominee of President Young Investigator Award, 1989.
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0 y& D0 t# [/ C+ y, i0 oResearch Interest:
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) j# Q2 t; M X% {; CTheoretical and numerical studies of the wind-driven and thermohaline circulation in the oceans, dynamics of western boundary currents, flow over topography, climate and paleoclimate dynamics.
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Author or co-author of 70 refereed scientific publications.
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Refereed Publications) s5 b% @! S5 `' T* g6 v4 o- T4 @
9 v/ I- ^# [& G8 @; CHuang, R. X. and J. P. Chao, 1980. A linear theory of spiral cloud bands of typhoon. Scientia Atmospherica Sinica, 4, No. 2. (in Chinese with English Abstract).0 W9 y! a, X& A& I
4 C' V% D$ T5 ]3 c @- i% K5 FChao, J. P. and R. X. Huang, 1980. The cnoidal waves of a rotating barotropic atmosphere. Scientia Sinica, XXIII , No. 10, 1266--1277.5 J/ |% }/ [3 c* M; ^) \
, P" `) p! X% r, {Huang, R. X., 1986. Solutions of the ideal fluid thermocline with continuous stratification. J. Phys. Oceanogr., 16, 39--59.( Y# L) v7 f9 A8 @+ C, @
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Bogue, N. M., R. X. Huang, and K. Bryan, 1986. Verification experiments with an isopycnal coordinate ocean model. J. Phys. Oceanogr., 16, 985--990.
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Huang, R. X., 1986. Numerical simulation of wind-driven circulation in a subtropical-subpolar basin. J. Phys. Oceanogr., 16, 1636--1650.# E( F0 {/ \% X2 k Z9 q
+ R7 x( P& Q: V, ~( _Huang, R. X., 1987. A three-layer model for wind-driven circulation in a subtropical-subpolar basin. Part I: Model formulation and the Sub-critical state. J. Phys. Oceanogr., 17, 664--678.
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/ s4 F& g4 @% e& n* jHuang, R. X., 1987. A three-layer model for wind-driven circulation in a subtropical-subpolar basin. Part II: The supercritical and hypercritical states. J. Phys. Oceanogr., 17, 679--697.
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N3 b: K/ t" o8 f9 u0 FHuang, R. X. and G. R. Flierl, 1987. Two-layer models for the thermocline and current structure in subtropical/subpolar gyres. J. Phys. Oceanogr., 17, 872--884.5 f$ L1 a7 m7 X& ^6 `+ A) F
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Huang, R. X. and K. Bryan, 1987. A multi-layer model of the thermohaline and wind-driven ocean circulation. J. Phys. Oceanogr., 17, 1909--1924.
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0 W8 S) b9 N1 i8 t+ q5 ]! mHuang, R. X., 1988. On boundary value problems of the ideal-fluid thermocline. J. Phys. Oceanogr., 18, 619--641.7 x( g4 W/ E, F. V3 {& M
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Huang, R. X., 1988. Ideal-fluid thermocline with weakly convective adjustment in a subpolar basin. J. Phys. Oceanogr., 18, 642--651.4 D+ L: U" _$ ^( P8 g2 o% K
* E) [/ e A$ t! e! A" FHuang, R. X., 1988. A three-layer model for wind-driven circulation in a subtropical-subpolar basin. Part III. Potential vorticity analysis. J. Phys. Oceanogr., 18, 739--752.
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Huang, R. X., 1989. The generalized eastern boundary conditions and the three-dimensional structure of the ideal fluid thermocline. J. Geophs. Res., 94(C4), 4855--4865.( W; c3 A' \$ s8 o0 e( `- g# v
, b* [5 o j9 q3 M ^Huang, R. X., 1989. Simulating the main thermocline in the North Atlantic with an ideal-fluid model. J. Phys. Oceanogr., 19, 543--547.
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Huang, R. X., 1989. Sensitivity of a multi-layered oceanic general circulation model to the sea surface thermal boundary condition. J. Geophs. Res., 94(C12), 18,011--18,021.0 F( A4 h6 P- q* c
6 _. F5 |) y+ P( I% d! QHuang, R. X., 1990. Does atmospheric cooling drive the Gulf Stream recirculation? J. Phys. Oceanogr., 20, 750--757.9 j* n$ _6 e& Q: h, k0 h
% h0 `5 q* `: p3 `) ?- c: `Huang, R. X., 1990. On the three-dimensional structure of the wind-driven circulation in the North Atlantic. Dynamics of Atmospheres and Oceans, 15, 117--159.
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* k/ T" I. W# j7 k; C- d3 H! x1 cHuang, R. X., 1990. On the structure of inertial western boundary currents with two moving layers. Tellus, 42A, 594--604.
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Huang, R. X. and H. M. Stommel, 1990. Cross-sections of two-layer inertial Gulf Stream. J. Phys. Oceanogr., 20, 907--911.) |7 j, `+ f0 r+ o
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Huang, R. X., 1990. Matching a ventilated thermocline model with inertial western boundary currents. J. Phys. Oceanogr., 20, 1599--1607. + x; i+ @4 ?& d5 s V2 w$ N
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Huang, R. X., 1991. A note on combining wind and buoyancy forcing in a simple one-layer ocean model. Dynamics of Atmospheres and Oceans, 15, 535--540.
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+ P! e; b/ |: r$ O0 L. LHuang, R. X., 1991. The three-dimensional structure of wind-driven gyres: ventilation and subduction. U.S. National Report to International Union of Geodesy and Geophysics 1987--1990, Supplement to Reviews of Geophysics, 590--609.
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' E7 _# `( | N J% OHuang, R. X., J. Luyten, and H. M. Stommel, 1992. Multiple equilibrium states in combined thermal and saline circulation. J. Phys. Oceanogr., 22, 231--246.
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2 Y! d$ D2 i$ Q; y0 d3 s: ?Huang, R. X. and H. M. Stommel, 1992. Convective flow patterns in a eight-box cube driven by combined wind stress, thermal, and saline forcing. J. Geophs. Res., 97(C2), 2347--2364.5 l" K6 _, v) J* _/ o6 B3 F
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Lin, R. Q., R. X. Huang, and J. R. Apel, 1992. A study of the astronomical theory of ice ages in a two-dimensional nonlinear climate model. J. Geophs. Res., 97(D9), 10,029--10,036.; C5 W0 g0 T' f6 @! k- }, Q# C. i
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Huang, R. X., 1993. A two-layer model for the wind and buoyancy forced circulation. J. Phys. Oceanogr., 23, 104--115.
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Huang, R. X. and R. W. Schmitt, 1993. The Goldsbrough—Stommel circulation of the world oceans. J. Phys. Oceanogr., 23, 1277--1284." s' u1 Z/ d1 m" t% J7 n
' @* ^' Q3 n$ Y. |! D0 hHuang, R. X., 1993. Real freshwater flux as a natural boundary condition for the salinity balance and thermohaline circulation forced by evaporation and precipitation. J. Phys. Oceanogr., 23, 2428--2446.
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Huang, R. X. and H. Stommel, 1993. The globe on a heart-shaped map. In "New equal area world map projections to better display polar regions," by Athelstan Spilhaus, Proceedings of the American Philosophical Society, 137, (2), 181-184.
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Huang, R. X. and R. L. Chou, 1994. Parameter sensitivity study of the saline circulation. Climate Dynamics, 9, 391-409.; Y' D# m2 r/ T4 [) \- ^
! v0 U3 D* p7 f8 l2 mHuang, R. X., 1994. Thermohaline circulation: Energetics and variability in a single-hemisphere basin model. J. Geophs. Res., 99, (C6), 12,471-12,485.
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Huang, R. X. and B. Qiu, 1994. Three-dimensional structure of the wind-driven circulation in the subtropical North Pacific. J. Phys. Oceanogr., 24, 1608-1622.5 s" G- ]( f6 { G9 {
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Wang, L. P. and R. X. Huang, 1994. A simple model of abyssal circulation in a circumpolar ocean. J. Phys. Oceanogr., 24, 1040-1058.
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Huang, R. X. and S. Russell, 1994. Ventilation of the subtropical North Pacific. J. Phys. Oceanogr., 24, 2589-2605.
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Wang, L. P. and R. X. Huang, 1995. A linear homogeneous model of wind-driven circulation in a -plane channel. J. Phys. Oceanogr., 25, 587-603./ z4 D. V+ i/ K9 X/ ]& ?: }
4 Z4 `4 x& N+ H& x5 j5 GDewar, W. K. and R. X. Huang, 1995. Fluid flow in loops driven by freshwater and heat fluxes. Journal of Fluid Mechanics, 297, 153-191.0 V8 h6 t& s5 W7 o8 R
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Pickart, R. and R. X. Huang, 1995. Structure of an inertial deep western boundary current. Journal of Marine Research, 53, 739-770., E% B9 T! Q& o; ^1 L& U' V( b
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Qiu, B. and R. X. Huang, 1995. Ventilation of the North Atlantic and North Pacific: Subduction vs. Obduction. J. Phys. Oceanogr., 25, 2374-2390.! |$ O+ G4 F! A, M
( K- p# Y0 t; Z; l; N; MHuang, R. X. and J. R. Luyten, 1996. Reply. J. Phys. Oceanogr., 26, 286.
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2 f" ? x5 u# eDewar, W. K. and R. X. Huang, 1996. On the forced flow of salty water in a loop. Physics of Fluids, 8, 954-970./ }5 E# `" \5 x, a; v5 ~& P" [6 c' R
' Z4 e' [3 x% I; LYang, J. and R. X. Huang, 1996. Decadal oscillations driven by the annual cycle in a zonally-averaged coupled ocean-ice model. Geophysical Research Letters, 23, 269-272.
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Huang, R. X. and W. K. Dewar, 1996. Haline circulation in a loop model: bifurcation and chaos. J. Phys. Oceanogr., 26, 2093-2106.
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# x3 V, a$ k. G! y' b0 M; J4 ~9 pHuang, R. X. and J. Yang, 1996. Deep-water upwelling in the frictional western boundary layer. J. Phys. Oceanogr., 26, 2243-2250.
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Huang, R. X., 1998. Available potential energy in a Boussinesq ocean, J. Phys. Oceanogr., 28, 669-678.
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8 l0 T4 E* H& i. oHuang, R. X., 1998. On the energy balance of the oceanic general circulation. Chinese Journal of Atmospheric Science, 22, 452-467./ q9 F( K5 Q' q; I! j3 |8 b" x
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Huang, R. X. and Bo Qiu, 1998. The structure of the wind-driven circulation in the Subtropical South Pacific Ocean, J. Phys. Oceanogr., 28, 1173-1186.5 L; ?$ R- y8 H( A
8 _( }( T q ]2 h- N0 ?Wang, L. and R. X. Huang, 1998. A homogeneous model of the Decon cell in a circumpolar ocean. Dyn. Atmos. Oceans, 28, 157-177.) z9 _/ S0 t& J( [3 F
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Zhang, J., R. Schmitt, and R. X. Huang, 1998. Sensitivity of the GFDL Modular $ U/ t9 q+ Z) D c
Ocean Model to parameterization of double-diffusive processes, J. Phys. Oceanogr., 28, 589-605. 5 M2 c7 A& [) ]+ g) r& F* O
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Kelly, K. A., S. Singh, and R. X. Huang, 1999. Seasonal variations of sea surface height in the Gulf Stream region. J. Phys. Oceanogr., 29, 313-327.
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Huang, R. X., 1999. Mixing and energetics of the thermohaline circulation. J. Phys. Oceanogr., 28, 727-746., o+ J9 P; ~, z5 o, `# J3 Z
. q1 w4 t. ^5 r+ R; j0 c6 GZhang, J., R. Schmitt, and R. X. Huang, 1999. The relative influence of diapycnal mixing and hydrologic forcing on the stability of thermohaline circulation, J. Phys. Oceanogr., 29, 1096-1108.
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, S) R7 D6 Q4 PJin, X.-Z., R. X. Huang, and J.-Y. Yang, 1999. Centennial oscillations in an ocean-ice coupled model. Adv. Atmos. Sci., 16(3), 323-342.0 r4 |( J# ^+ _4 X$ Q9 T3 }6 M
+ ]5 g" w6 Y2 ~8 I kHuang, R. X. and J. Pedlosky, 1999. Climate variability inferred from a layered model of the ventilated thermocline, J. Phys. Oceanogr., 29, 779-790.1 X0 R6 b6 m$ g" c
5 D5 k: x( Z( J! |3 `* wHuang, R. X., 2000. Climate variability inferred from a continuously stratified model of the ideal-fluid thermocline, J. Phys. Oceanogr., 30, 389-1406.
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$ K& c+ S- Q* F7 y% r) UHuang, R. X., 2000. Parameter study of a continuously stratified model of the ideal-fluid thermocline, J. Phys. Oceanogr., 30, 1372-1388. ! c4 G$ g6 Z! ~: H
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Huang, R. X. and J. Pedlosky, 2000. Climate variability of the equatorial thermocline inferred from a two-moving-layer model of the ventilated thermocline, J. Phys. Oceanogr., 30, 2611-2626.
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+ \+ d& N% E' hHuang, R. X., and J. Pedlosky, 2000b: Climate variability induced by anomalous forcing in a multi-layer model of the ventilated thermocline. J. Phys. Oceanogr., 30, 3009-3021.
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3 v. ^" f3 }9 V9 Q o+ }5 {7 |Huang, R. X., M. A. Cane, N. Maik, and P. Goodman, 2000. Global adjustment of the thermocline in response to deepwater formation. Geophysical Research Letter, 27, 759-762.$ \# j$ g. i8 G" O0 e- M
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Huang, R. X., X.-Z. Jin, and X.-H. Zhang, 2001. An ocean general circulation model in pressure coordinates. Advances in Atmospheric Science, 18, 1-22.
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, o! X0 X5 N. h. E4 t1 q4 B" jHuang, Rui Xin, 2001. An analytical solution of the ideal-fluid thermocline. J. Phys. Oceanogr., 31(8), Part 2, 2441-2457.1 m2 A g. \6 P$ m: T% ]
, t, V0 C2 i* E: \' H& Y& {Dewar, W. K, and R. X. Huang, 2001. Adjustment of the ventilated thermocline. J. Phys. Oceanogr., 31, 1676-1697.
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Huang, R. X., and Q. Wang, 2001: Interior communication from the subtropical to the tropical oceans. J. Phys. Oceanogr., 31, 3538-3550. t: u& ]5 b6 M
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Huang, R. X., 2001. The available potential energy in a compressible ocean. In P.F. Hodnett (Ed.) IUTAM Symposium on Advances in Mathematical Modeling of Atmosphere and Ocean dynamics, Pp167-172.
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7 ^# _/ k% _. d Q' nHuang, R. X. and J. Pedlosky, 2002. On aliasing Rossby waves induced by asynchronous time stepping. Ocean Modelling, 5, 65-76.
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Huang, R. X. and X.-Z. Jin, 2002. Deep circulation in the South Atlantic induced by bottom-intensified mixing over the mid-ocean ridge. J. Phys. Oceanogr., 32, 1150-1164. $ w$ M, i' Y8 d u1 T. _
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Huang, R. X., and X.-Z. Jin, 2002. Sea surface elevation and bottom pressure anomalies due to thermohaline forcing: Part I: isolated perturbations. J. Phys. Oceanogr., 32, 2131-2150.
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Zhang, X.-H., W. Li, X.-Z. Jin, and R. X. Huang, 2002. The development of an oceanic general circulation model based on the pressure coordinates and its application. Advances in Natural Science, 12, 1015-1020. (in Chinese).
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Huang, R. X. and F. F. Jin, 2003. The asymmetric nature of the equatorial undercurrent in the Pacific and Atlantic. J. Phys. Oceanogr., 33, 1083-1094.9 T$ Y& B t. ~% z1 e8 \
% Y( X$ k! P5 k: \. b1 bWang, W. and R. X. Huang, 2004. Wind energy input to the Ekman Layer. J. Phys. Oceanogr., 34, 1267-1275.* s9 s" z ]3 ~; e( x" k
, P9 |/ I- O3 O4 H1 ]8 O {) K6 a8 CWang, W. and R. X. Huang, 2004. Wind energy input to the surface waves. J. Phys. Oceanogr., 34, 1276-1280.5 _4 \; N9 J6 U" F
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Huang, R. X., 2004. Ocean, energy flow in. C. J. Cleveland (Ed.) Encyclopedia of Energy, Elsevier, Vol. 4, pp 497-509.
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% K( E0 ]* f6 P5 HHuang, R. X., 2005: Available Potential Energy in the World Oceans, J. Mar. Res., in press.& d9 p5 Z2 a: {" _9 k _. y
( t& s- m ~( Z/ L- B$ T6 sWang, Q. and Rui Xin Huang, 2005: Decadal Variability of Pycnocline Flows from the Subtropical to the Equatorial Pacific, J. Phys.Ocanogr., in press.
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! E" G+ L' V6 M( z% E. T+ ~. O2 VWang W. and R. X. Huang, 2005: An experimental study on thermal circulation driven by horizontal differential heating, Journal of Fluid Mechanics, in press.
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9 R# \ C/ [/ n* j! THuang R. X. and X.-Z. Jin, Gravitational potential energy balance for the thermal circulation in a model ocean, manuscript submitted to J. Phys.Ocanogr.; k3 l5 B- r) x% @2 m
) k8 ?+ Y/ H, [" ~$ G. y" _Huang, R. X., W. Wang, L. L. Liu, decadal variability of wind energy input to the world ocean, manuscript, submitted to Deep Sea Research II./ k p F) J& k& h' `* g4 [/ [; R
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Non-Refereed Publications
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' K- o3 e- B QHuang, R. X., 1976. Some problems in the supersonic stream—surface theory. Information of Mechanics, No. 2 (in Chinese).. Z& j/ a. W. T; B) J! k9 k9 y
" W# {$ `5 R' _7 AHuang, R. X., 1977. On the stream--surface theory. Information of Mechanics, No. 1 (in Chinese).
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Huang, R. X. and J. A. Wang, 1977. The Earth's mantle convection, a problem in geophysical fluid dynamics. Information of Mechanics, No. 3 (in Chinese).- l2 L* Q9 U8 d y( |" h
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Huang, R. X., 1980. On the one--dimensional approximation of viscous fluid flow. Progress in Mechanics, No. 3 (in Chinese).
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Huang, R. X., 1992. Deep western boundary currents. Oceanus, 35, (2), 26-27.+ S* Y7 X* F( I1 ^* c3 L
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Huang, R. X., 1992. Freshwater driving forces---A new look at an old theory. Oceanus, 35, (2), 36-37.
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Huang, R. X., 1992. A trip to the MBL Library with Hank. Oceanus, 35, (Special Issue: A Tribute to Henry Stommel), p. 126.; L& J/ g5 e+ v
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Hogg, N. G. and R. X. Huang (editors), 1996. Collected Works of Henry M. Stommel (3 volumes, 1943 pp), American Meteorological Society., N7 a$ T: g, F: W* @9 m
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Huang, R. X. and J. Yang, 1996. Oceanic Aspects of the Climate Modeling, Oceanus, 39, (2), 36-38.
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3 \& m* g1 _) K. oHuang, R. X., 1998. The future of physical oceanography, a personal view. A speech at the NSF-sponsored Physical Oceanography Workshop.
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* x* }* u& X4 [# n# }Huang, R. X. and W. Wang, 2003. Gravitational potential energy sinks in the oceans. Near-boundary processes and their parameterization, Proceedings, Hawaii winter workshop, pp239-247.
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& [* A6 e% X6 E, ~W. Wang and R. X. Huang, 2004: Wind energy input to the surface waves and Ekman layer, Bull. Amer. Meteo. Soc., 85, 818-819.
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& v+ f7 i* d6 X3 x- vTechnical Report
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6 N: d5 B6 ~" D2 ?- JHuang, R. X., 1983. A two--layer model of the subpolar gyre and subtropical gyre. In: Summer Study Program in Geophysical Fluid Dynamics, Woods Hole Oceanographic Institution
4 P) d3 {7 Y: `& ~4 O: bTechnical Report WHOI--83--41, 106.! o$ r3 a" u: Q9 J3 S/ O
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Contributor to Chapter 5: Climate Models-Evaluation in "Climate Change 1995", The Intergovernmental Panel on Climate Change, World Meteorological Organization / United Nations Environment Program, 1996.+ {& d7 X0 m6 L
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Book Reviews
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Huang, R. X., 1987. Advanced Physical Oceanographic Numerical Modelling, James J. O'Brien, editor, D. Reidel Publishing Company, Dordrecht, 1986, 608 pp. Bulletin American Meteorological Society, 68, (8), 1032--1033.
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Huang, R. X., 1988. Numerical Modelling: Application to Marine Systems, J. Noye, editor, Elsevier Science Publishers B.V., Amsterdam, 1987, 295 pp. Bulletin American Meteorological Society, 69, (7), 775.# `' I Z' y: u
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Huang, R. X., 1997. Review of Introduction to Physical Oceanography by George Mellor. American Journal of Physics.( z0 ~% ?/ x ]/ k1 ^
5 D+ K/ ^- t+ N1 F+ Z' }6 P$ vThesis/ |# R% l" s, k- y# X. e
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Huang, R. X., 1984. The thermocline and current structure in subtropical/ subpolar basins. Ph.D. Thesis, Massachusetts Institute of Technology/Woods Hole Oceanographic Institution, 218 p.
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: F0 v- G1 Z/ c& _Lecture Notes- X# W2 e- A9 M: a0 A5 N2 c
$ l( }7 f) ]: E) VHuang, R. X., 1988. Steady Circulation of the Oceans and Atmosphere. Lecture notes for M.I.T./W.H.O.I. Joint Program Course, 215 pp. d- K( B" f. H9 c
5 B& v+ `5 e6 fHuang, R. X., 1992. Recent Advances in Large-Scale Ocean Circulation Theory. Notes for lectures presented at the Second Institute of Oceanography, Hangzhou, China, October 7--17, 1992, 237 pp., published in China.
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4 C3 F/ F; F: ]Huang, R. X., 1995. Advances in Theories of Wind-Driven and Thermohaline Circulation, Tech. Rept, JIMAR-95-1, Joint Institute of Marine and Atmospheric Research, Honolulu, Hawaii, 211 pp.
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Huang, R. X., 2004. Theories of the general circulation in the oceans. Lecture Notes for M.I.T./W.H.O.I. Joint Program Course, 600 pp. 1 I9 I, y7 g: |- [+ |
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Reference Book( M( r# P# {; Z" K" z- P% q3 S
7 ]% e/ B; q! s6 t# TWang, T. Y. (Chief Editor), R. X. Huang, et al., 1980. English--German--French--Russian--Chinese Dictionary in Physics, Atomic Energy Press, Beijing, China, 2012 pp. |
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