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强烈推荐!中国海洋大学考研参考手册【20110331更新】专业课书籍低价促销海大人论坛考研交流QQ群
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师资介绍 黄瑞新教授

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发表于 2006-6-23 09:36:49 | 显示全部楼层 |阅读模式
黄瑞新教授 g9 e' b2 d; z0 |$ \ * a) e5 z/ F3 Q* q! O5 d O# x/ ?6 [: ]- g8 S: t9 q Rui Xin Huang. ?. x* V- u* x4 z" _& x ! ?0 e* T) R) O# F/ M Senior Scientist" X1 u/ V; f# T( }. [9 F) ^) b W. Van Alan Clark, Jr., Chair for Excellence in Oceanography, 2002-; . z# f. w* u5 B% k5 P5 JWoods Hole Oceanographic Institution : \/ a$ H; u, x6 M X) c# j: G# }( X' E' k& S: I Phone: (o) 508-289-2532; 1 i) _4 x; _! O5 t: p* L FAX: 508-457-2181; 2 S# X" r9 f* E/ c5 D0 S7 }) de-mail address: rhuang@whoi.edu ! Q/ y3 e* ]( t- c" i, cDate of Birth: Sep. 15, 1942$ R- f% E/ } W Citizenship: U.S.A.4 ^ O& [: x( ]6 J) n5 C6 Q # T6 s: S4 B( pEducation * y9 @# E( r3 [3 W2 H' P2 g! n( c+ `& \6 u+ W0 G& J% |9 H$ F The University of Science and Technology of China, 1960-65; B.S. in + _3 f* h7 G( E* _. {2 c& A. }Thermo-physical Fluid Dynamics of Jet Propulsion, 1965. 2 ` {' w3 u, Q8 E* m# H G0 K! w3 D: I/ X Graduate School, University of Science and Technology of China, Meteorology, 1978-80. ; R) |% k. `6 I. d+ h+ \+ r- j% L, u 1 j# J, p: L! `* yThe Johns Hopkins University, Geophysical Fluid Dynamics, Sep. 1980-Feb. 1981. + \" T+ U o1 p4 g. x# Q ~ 5 g0 r+ |6 k4 |0 U4 s, ^Massachusetts Institute of Technology/Woods Hole Oceanographic Institution, 1981-1984; Ph.D. in Physical Oceanography 1984. ( D; Y% E7 Y. ^$ j ! M0 c" M9 g& }3 K9 G- GExperience* a6 V- |: T& F9 K3 ^ # y8 w, G, z& c; _Research Associate, Institution of Mechanics, Beijing, China, . m: R M: T. E ] 6 ~) I( u b$ P M0 P3 l1965--1978. Self-study of English and mathematics during the ; O* [) m* x b9 b# I Cultural Revolution in China; aerodynamics of wings; transonic flow in / h8 z! Q4 g+ {6 r% E6 @8 x1 { 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.( C: w" D5 o" M( Z i & c; Z* X' T, r, b, w$ {! E- H6 @Postdoctoral, M.I.T., 1984. o! ^: m0 G! GVisiting Scientist, Geophysical Fluid Dynamics Laboratory (NOAA), Princeton University, 1984--1986, March--June 1992.9 L* J# l7 e2 f; N! C& j1 ]6 J ! @5 ?3 a+ {. x* e Assistant Scientist, 1986--1990; Associate Scientist, 1990-1998; tenure awarded, 1993, Senior Scientist, 1998-, Woods Hole Oceanographic Institution; " {7 Z& Y. @4 A4 b2 S - t% V) [% t e7 o, U! a7 m# l6 }Visiting Associate Professor, University of Hawaii, Jan.-June, 1994. ' X O& Q4 @8 d& k. |, q# |5 v$ e2 P/ {6 n, h2 o2 X$ s- |- n Visiting Scientist, Cooperative Institute for Marine and Atmospheric Studies,/ o. ]9 U H1 P, _ University of Miami, Feb., 1999. . |% G. S/ G% e& s2 g" ` E5 X! S# H% \( Z5 _- }. V4 ` Visiting Professor, Lamont-Doherty Earth Observatory, Columbia University, March-May., 1999.* J; A* G+ H8 k& N9 t5 Z $ H, g" V4 t% x% W( M# |% O Corresponding Member, U.S. WOCE Working Group on Numerical Modeling, 1989-1992.6 n+ X/ c; b' O w! x / h/ e# x. i1 K3 N" j+ uJoint Committee of Physical Oceanography, MIT/WHOI Joint Program, 1990-93.9 P7 d6 s4 p- V 5 D) m. w' R" r8 o7 VMember, Working Group on Oceanic Thermohaline Circulation and Variability," i1 b' }$ P# | Climate System Modeling Project, USA, 1993-96.0 [" l7 k! V! C ' z) p0 o2 H7 {2 K3 Z, y Member, Climate Change Committee, WHOI, 1995-1999. : Q i( J {7 S4 v+ L6 i # u4 e5 C3 c$ j6 B5 cMember, Advisory Committee, Ocean and Climate Change Institute, 2001-2005. ) k0 N/ Y) b* G) Z, E# Y ) \& Z" D1 T; x$ \. m! L: lGuest Professor, Ocean University of Qingdao, China, 1996--. # t3 b, C: p7 M : [3 A* x7 T# G% @4 vChairman, Academic Committee for the national Key Laboratory of Physical Oceanography, Ocean University of China, 1999-2005. # p, r# i* d% ]9 Y5 G% r: |* B $ Y& T l- b2 Q4 ~. N0 KMember, 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. 8 B5 h6 ^+ i( |+ d( a) |% b! t * C. ]$ q. J" x$ n: \/ `# x. }' z. i1 bGuest professor, South China Institute of Oceanology, Chinese Academy of Sciences, 2002-. ! B' ]. t+ u3 x* [ 4 N p0 a9 @( t5 ?1 h6 H% U. X+ I, Y$ Z& f4 m- J2 g- A4 F) J Teaching 0 ^' I9 \0 q5 X {8 b1 H2 f( a3 ]6 y( a- J( L/ P% u5 d Steady Circulation in the Oceans and Atmosphere, MIT/WHOI Joint Program, 1988-1991. 3 n% x5 |' Q. J e- }8 V2 g3 q' w8 n5 ]1 R Recent Advances in Large-Scale Ocean Circulation Theory, Second Institute of Oceanography, Hangzhou, China, October 7-17, 1992.. k: I0 R4 g2 O) B 3 p5 o) a. @ f. `5 V9 pTheories of the Oceanic General Circulation, University of Hawaii, Spring, 1994.; m: K2 g3 m. ~$ R% ~9 E9 o : [7 C1 ~8 G5 ~, l4 K* lAdvances in Theories of Wind-Driven and Thermohaline Circulation, International: g# b! F( z% a; [8 q1 K3 d ( h# X; u$ f; u6 x* E8 V Summer School on Ocean-Atmosphere Interaction, July 25-August 4, 1994, Qingdao, China. * x% ]/ m& L- ^" X# Y5 J ^; C; k Theories of the Oceanic General Circulation, MIT/WHOI Joint Program,$ V j# R" O" z: l3 g- x % s) T" b% }2 q: `+ @+ c' `7 n Spring 1995, Fall, 1998, Fall, 2001, Spring, 2004.( o! {4 W3 o J9 N * Z$ O) G5 `8 ~Supervision" `, Q9 X% v, l! ^7 H # n r4 j- |% ?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).7 ^% b) r {; F" L5 n : ^, `4 A- W/ H( Z" Y Mr. James McLaren, 1987-89; Mr. Li Ping Wang, 1989-93 (Ph.D.); 9 j" ]% {+ ?, {6 A2 ] : k# u' v p0 A; FOn thesis committee of other six students, chairman of thesis defense committee for Mr. Hui Ming Zhang and Ms. Sarah Gille. & X+ w/ u3 U8 B" l4 n0 A& [# V : h; g+ V5 Z* zMichael Masterson, Summer Student Fellow, 1987; Marcel Lieberman, Summer Student / i! `, O& G% j" E: ~7 I- [' LFellow, 1989; Sarah Russell, Summer Student Fellow, 1993.6 P7 O. e% L ^; s; ?" E2 ^ 7 `& O/ Y* W8 c* G: U: ]3 A7 j Sea Cruises 5 _5 M. a" Q2 J* T 2 g- U. ]' w, r/ g8 \RV OCEANUS, Seasor test cruise, July, 1989. - B! c, S0 ?: g7 V C9 WOceanus, Immerges Sea Cruise, August, 2003. ; Z/ J, C# ^9 C3 K1 J* J/ p3 ~ * ?9 x+ W: K. j3 G3 P+ S" GHonor1 c9 `/ T& t P3 Y" E$ p* A ) a/ _& f& |/ d1 G; qNominee of President Young Investigator Award, 1989.# {) R x; I# K & E) }, g/ R- W, |# v Research Interest:0 w( Z1 ]/ U7 P* m, P/ F/ y9 c f . I" y# }* o' R. l4 ?1 C& d0 ZTheoretical 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.% _8 T B% L/ _) Z& } ' F1 w1 W8 t& X3 M8 V' i% t/ z- b j Author or co-author of 70 refereed scientific publications. $ R3 t S- S* _5 e+ [ d& ^5 s m% S+ V! `- F Refereed Publications/ h0 q% I' o/ v- v Y, }. `% k5 w# m. B ( p% T n3 h/ l4 D5 \5 B Huang, 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). @& D5 Z2 O8 V5 V1 z( ?$ K D. O1 G: n4 C Chao, J. P. and R. X. Huang, 1980. The cnoidal waves of a rotating barotropic atmosphere.   Scientia Sinica, XXIII , No. 10, 1266--1277.( i3 D3 X% v$ |( _ 2 b8 v$ w5 J. a+ d& g) _Huang, R. X., 1986. Solutions of the ideal fluid thermocline with continuous stratification.   J. Phys. Oceanogr., 16, 39--59. : ?- k1 Q0 \7 ~* p# u, A7 g2 O8 _# t, A: Q9 ]# z$ ?, H Bogue, N. M., R. X. Huang, and K. Bryan, 1986. Verification experiments with an isopycnal coordinate ocean model. J. Phys. Oceanogr., 16, 985--990.2 p G2 [- x9 |$ S4 ~$ S * T% H: L, u. U% s6 EHuang, R. X., 1986. Numerical simulation of wind-driven circulation in a subtropical-subpolar basin. J. Phys. Oceanogr., 16, 1636--1650.5 w6 ^" D' E6 _: ]7 k' ?8 K5 S! J 4 j$ S+ d$ O- \- A, s% o% fHuang, 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--678.9 N V w2 d/ i$ ?7 O# @ 5 {3 y+ T5 ~. Z* M Huang, 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--697.1 Y" |+ w0 A8 O, K3 o # u! R7 U* w' o! o) S7 ?* g Huang, 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--884.9 h; J; G9 ]. s4 `- b( ~ : \; a6 c Y, l; P+ m4 hHuang, R. X. and K. Bryan, 1987. A multi-layer model of the thermohaline and wind-driven ocean circulation. J. Phys. Oceanogr., 17, 1909--1924.6 Z# ]' z e) } ; e9 k, V% ]2 k+ ?% KHuang, R. X., 1988. On boundary value problems of the ideal-fluid thermocline.   J. Phys. Oceanogr., 18, 619--641. 4 e% |6 X2 B/ \ }0 F5 I ( D5 J( b+ }" e) K) s+ kHuang, R. X., 1988. Ideal-fluid thermocline with weakly convective adjustment in a subpolar basin. J. Phys. Oceanogr., 18, 642--651. , {6 X! Z7 A" S$ D4 W A& B3 q( ]/ B" J8 j9 S Huang, 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. % A& k4 K6 }+ {. G, i! { $ ~- P3 ^9 i; i- Z# T' C% dHuang, 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. 7 V! I7 z* x+ @6 K: f 5 M9 Q% g9 {7 p" e; oHuang, R. X., 1989. Simulating the main thermocline in the North Atlantic with an ideal-fluid model.   J. Phys. Oceanogr., 19, 543--547. , y% n; g% m) H8 w4 L: v' R, L: l3 l1 d- J0 |. d' D 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." ^3 H7 `" F' c' U1 D 1 E- r9 }$ d. l0 x$ y Huang, R. X., 1990. Does atmospheric cooling drive the Gulf Stream recirculation?   J. Phys. Oceanogr., 20, 750--757. ; G5 l; A$ Z8 s& y0 D% R 8 X; b/ v3 z0 \3 L* |3 UHuang, 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.( A5 @4 J" c2 m8 c3 |. H% A . n, v( n1 @# m" B/ y! `% a5 u5 ~Huang, R. X., 1990. On the structure of inertial western boundary currents with two moving layers.   Tellus, 42A, 594--604. , z( H4 y7 G) J. b6 I' s ; K. P( J# P c4 l3 L& U0 S. x" oHuang, R. X. and H. M. Stommel, 1990. Cross-sections of two-layer inertial Gulf Stream.   J. Phys. Oceanogr., 20, 907--911." W, W# N# z1 O( v9 }! H , t2 K* X) M% v; B" E5 ?% l Huang, R. X., 1990. Matching a ventilated thermocline model with inertial western boundary currents.   J. Phys. Oceanogr., 20, 1599--1607. % z) q! I$ Y/ ?, q ; [7 ?. W8 X0 E/ R! lHuang, 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--540.2 W; F2 v5 ^/ |4 l : H+ p: B! @2 p& o Huang, 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. 1 j2 h5 s1 t/ j / h) F# M1 N: ]& 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. 5 \2 E! `4 j* k1 i0 ?+ ^ \6 R/ c" W3 A) w6 G. k5 c- |6 {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. 2 B# y4 ^1 g4 o0 }8 C8 b 2 E& g2 K: s2 E$ _( o4 ~6 ULin, 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. ! V4 V8 \" a& x6 w0 g9 d$ _ . F/ {* z& A6 H$ B* sHuang, R. X., 1993. A two-layer model for the wind and buoyancy forced circulation. J. Phys. Oceanogr., 23, 104--115.8 x1 {; A- T# ] * g$ F n$ n* A% X' o% q: j0 |- S7 UHuang, R. X. and R. W. Schmitt, 1993. The Goldsbrough—Stommel circulation of the world oceans.   J. Phys. Oceanogr., 23, 1277--1284.2 Y; ]+ E1 t- @, Y# S; n& S 0 B: b/ W# T! ? c, z Huang, 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--2446.6 X; }. Q; V+ y+ J$ V" | " Y: k7 w" C8 q- K& e7 B' h3 i 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. ( a b; K3 Y$ v/ q% [ % z8 |* Y% e' M5 l' [Huang, R. X. and R. L. Chou, 1994. Parameter sensitivity study of the saline circulation. Climate Dynamics, 9, 391-409.' N/ F& [* {- d0 c1 \ 1 I1 ]2 l+ d5 U& ^7 D* a0 v' E Huang, R. X., 1994. Thermohaline circulation: Energetics and variability in a single-hemisphere basin model. J. Geophs. Res., 99, (C6), 12,471-12,485.! O* _7 Z& h! Z, P2 S% g' Y ! N, }" k* l3 ^- |3 ? 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. % k! H7 `; ]( z: t) p, r3 D ' l$ J, y# ^* d' A1 C( r# pWang, L. P. and R. X. Huang, 1994. A simple model of abyssal circulation in a circumpolar ocean. J. Phys. Oceanogr., 24, 1040-1058. + p& a5 E6 M% ~ % W- G+ E/ \/ t9 C0 T2 @/ x6 P" UHuang, R. X. and S. Russell, 1994. Ventilation of the subtropical North Pacific. J. Phys. Oceanogr., 24, 2589-2605., W- k4 W9 b* T6 Z% ^ @" a O% M! @4 z! O' v 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.) j9 Y/ {( R' Z. p7 _ ; ^6 x* C( O) O7 I4 R* q Dewar, W. K. and R. X. Huang, 1995. Fluid flow in loops driven by freshwater and heat fluxes.   Journal of Fluid Mechanics, 297, 153-191.9 h" P4 K- B5 ]1 }8 V& d+ [ 6 m7 ~) n1 W; UPickart, R. and R. X. Huang, 1995. Structure of an inertial deep western boundary current. Journal of Marine Research, 53, 739-770. 5 V* K6 X( Q' m : z6 b/ Q& d' Q2 qQiu, B. and R. X. Huang, 1995. Ventilation of the North Atlantic and North Pacific: Subduction vs. Obduction. J. Phys. Oceanogr., 25, 2374-2390. 7 ^. Z3 q* ] j# N/ n+ E+ B% U' ]7 D, [ Huang, R. X. and J. R. Luyten, 1996. Reply. J. Phys. Oceanogr., 26, 286. ( X9 W3 x; {8 W' J! u; `* k% e s6 M- F & v+ j1 C- S% ~" W* d5 RDewar, W. K. and R. X. Huang, 1996. On the forced flow of salty water in a loop. Physics of Fluids, 8, 954-970.: Q# o6 F' Z$ U" H/ q3 q L/ z* |9 o4 ]# s- m Yang, 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. 3 m D3 N% P: ~5 U, H; L& [2 i/ y 0 [3 K: n' c0 l- M4 THuang, R. X. and W. K. Dewar, 1996. Haline circulation in a loop model: bifurcation and chaos.   J. Phys. Oceanogr., 26, 2093-2106., O M9 g8 y; u+ N6 L; e . V: n0 Z# H$ F# }2 {7 IHuang, R. X. and J. Yang, 1996. Deep-water upwelling in the frictional western boundary layer. J. Phys. Oceanogr., 26, 2243-2250. ; o9 u2 V6 X; `# P t6 E4 g2 ^0 Z5 Z, ?4 ?- j, mHuang, R. X., 1998. Available potential energy in a Boussinesq ocean, J. Phys. Oceanogr., 28, 669-678., f0 _8 B* [9 V6 d 9 q# E; g5 B8 [; a$ eHuang, R. X., 1998. On the energy balance of the oceanic general circulation.   Chinese Journal of Atmospheric Science, 22, 452-467. $ @/ S% \; {4 t9 E+ e7 l 6 S4 \# r+ r3 g4 k/ VHuang, 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. : U6 X6 X. F+ | 4 \: Y+ n+ x$ b& s0 D% NWang, L. and R. X. Huang, 1998. A homogeneous model of the Decon cell in a circumpolar ocean. Dyn. Atmos. Oceans, 28, 157-177.0 N' ]. T. A6 R% c/ c 7 y, ~* T. M# [) r: T; x( zZhang, J., R. Schmitt, and R. X. Huang, 1998. Sensitivity of the GFDL Modular 1 \3 A+ y: }4 B2 l$ @ Ocean Model to parameterization of double-diffusive processes, J. Phys. Oceanogr., 28, 589-605. 6 `3 Z! j: R( d, m; g 1 \2 X0 K/ x1 C4 v5 e O4 m 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." a0 d+ z9 ^4 h" U 6 G( k' u! c4 n1 H5 p3 ?1 }Huang, R. X., 1999. Mixing and energetics of the thermohaline circulation.   J. Phys. Oceanogr., 28, 727-746.) B2 q; g4 S/ v 1 f/ l5 q- g* T- a. X7 I5 q; @3 SZhang, 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. 5 a6 T* s5 \3 I, j5 ]. ^ N4 ?4 V * o6 y/ i) N; e' |! B3 r* iJin, 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.) n# Z8 q+ e% A( J " P, ~* w) h% D/ f4 u Huang, R. X. and J. Pedlosky, 1999. Climate variability inferred from a layered model of the ventilated thermocline, J. Phys. Oceanogr., 29, 779-790. . ^0 f. x0 v, ]; G z1 r* H: D ( p3 Q; i) k1 r9 n eHuang, R. X., 2000. Climate variability inferred from a continuously stratified model of the ideal-fluid thermocline, J. Phys. Oceanogr., 30, 389-1406. 0 Z) I# C7 d9 }. V# I" w4 ^4 v3 y+ r! v Huang, R. X., 2000. Parameter study of a continuously stratified model of the ideal-fluid thermocline, J. Phys. Oceanogr., 30, 1372-1388. & H& h/ q/ n5 L& N; p. H2 c: t5 W( o" J# o 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. 1 K; _7 y1 ~( T! a% s" H6 Q& j6 `3 g+ b5 I6 t; N Huang, 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.! B& _* I, K2 w" r0 ? + n7 X$ ]( O' J5 |) Q( n& K# RHuang, 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, 759-762.9 `. G2 G5 O& F) w' _# D 5 C, \8 a* A- s0 u W9 O5 T; e1 e9 u 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. 4 v5 d# Z* ^% k* X( B& l0 b4 e4 P1 B) w) z2 D( r8 `5 v& B9 h Huang, Rui Xin, 2001. An analytical solution of the ideal-fluid thermocline. J. Phys. Oceanogr., 31(8), Part 2, 2441-2457.! x$ D- u) f0 V 4 f$ r3 Y8 n5 { Dewar, W. K, and R. X. Huang, 2001. Adjustment of the ventilated thermocline. J. Phys. Oceanogr., 31, 1676-1697.0 ^5 w( Q3 p6 c( t8 C8 y. S+ J) K ' K& r# s& @" Y2 S( } Huang, R. X., and Q. Wang, 2001: Interior communication from the subtropical to the tropical oceans. J. Phys. Oceanogr., 31, 3538-3550. % u- } [+ J+ Y L 2 e' [5 H5 c0 u- n, EHuang, 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. ; V8 W/ ]5 x5 D9 u 8 Z/ O, E+ L5 hHuang, R. X. and J. Pedlosky, 2002. On aliasing Rossby waves induced by asynchronous time stepping. Ocean Modelling, 5, 65-76.; y% g" q3 L% H) n4 X' F& ? 5 Y) d6 a; g/ r$ F: G 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. % q' }% k$ }. \9 h& V# x) y - |' d! K$ b& P. I2 `2 Z) H7 pHuang, 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. 9 E- S3 B7 b3 I: r: f# R! m1 b; {) t- m; k, o 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). 6 b7 f; w g1 r% L0 @4 B3 g T7 L1 ~2 h: ]1 }: u6 M0 N5 I# ~6 X! J 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.; q0 F: E+ W! Y6 N8 d8 g2 Y) ^ 8 d& f0 F C0 g0 u: v! P& F* ?Wang, W. and R. X. Huang, 2004. Wind energy input to the Ekman Layer. J. Phys. Oceanogr., 34, 1267-1275. 4 o+ U y, v4 p2 W , h" m$ h9 I5 o$ cWang, W. and R. X. Huang, 2004. Wind energy input to the surface waves. J. Phys. Oceanogr., 34, 1276-1280.# W$ _0 u/ m1 A8 M & q! h: w) J9 [+ a5 ? Huang, R. X., 2004. Ocean, energy flow in. C. J. Cleveland (Ed.) Encyclopedia of Energy, Elsevier, Vol. 4, pp 497-509. ' N( {9 i( b6 G3 t5 _: \. k3 k" y5 ?8 @* n- t4 q Huang, R. X., 2005: Available Potential Energy in the World Oceans, J. Mar. Res., in press.* n6 v6 r7 E! u% E8 j8 w # @& r5 J$ W! L F' z Wang, Q. and Rui Xin Huang, 2005: Decadal Variability of Pycnocline Flows from the Subtropical to the Equatorial Pacific, J. Phys.Ocanogr., in press. 3 a& C9 B) O' Q t+ T8 e, J' O8 j, u2 U+ ^' ^3 g, a4 E g Wang W. and R. X. Huang, 2005: An experimental study on thermal circulation driven by horizontal differential heating, Journal of Fluid Mechanics, in press. " e6 d- W5 i; ~6 e" e8 H# n* U( h7 H! p& ~$ Z4 [ Huang R. X. and X.-Z. Jin, Gravitational potential energy balance for the thermal circulation in a model ocean, manuscript submitted to J. Phys.Ocanogr. . u! _3 l a0 K, Z2 ~# q+ y& |& F0 V9 B D 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.- M) z5 F7 l' x8 x" q2 O4 w6 o " i, C0 c& D9 k# J+ F ; U; w; c7 H+ T8 J3 `7 V$ y a9 FNon-Refereed Publications $ P- _8 h' s8 x+ W * p! o% I3 }; \1 V5 eHuang, R. X., 1976. Some problems in the supersonic stream—surface theory.   Information of Mechanics, No. 2 (in Chinese). 0 h# [$ o8 Z. O. a0 k/ Y0 c* b ( u. i. n. p* k, SHuang, R. X., 1977. On the stream--surface theory. Information of Mechanics, No. 1 (in Chinese).- G ~) s% @2 i! b: a5 b2 B 5 x6 a J- h0 K" B' M5 g 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). " z& Y" V3 m7 V: f* b9 F8 s$ Q( E8 l Huang, R. X., 1980. On the one--dimensional approximation of viscous fluid flow. Progress in Mechanics, No. 3 (in Chinese).$ K% j4 r' \7 g& I! u; E8 I# j 1 k( J, \3 Z$ p9 ~7 K: wHuang, R. X., 1992. Deep western boundary currents. Oceanus, 35, (2), 26-27.. N2 ?" P u+ m! v* m* p 3 A" Y/ W* ~( n' ^ Huang, R. X., 1992. Freshwater driving forces---A new look at an old theory.   Oceanus, 35, (2), 36-37., @0 q+ w; N; z$ T: t 0 P7 b. x9 H& f) r; |6 Q Huang, R. X., 1992. A trip to the MBL Library with Hank. Oceanus, 35, (Special Issue: A Tribute to Henry Stommel), p. 126. \$ s2 g5 r$ S( J ; T. d/ i2 p$ n0 MHogg, N. G. and R. X. Huang (editors), 1996. Collected Works of Henry M. Stommel (3 volumes, 1943 pp), American Meteorological Society.! A! J2 S: N1 E/ B3 r$ D& O# g & ^' G! S/ g& |+ k1 z5 wHuang, R. X. and J. Yang, 1996. Oceanic Aspects of the Climate Modeling, Oceanus, 39, (2), 36-38.5 L+ s. t' v9 B' [; w( w0 k 3 i# n. [% u; x9 ]Huang, R. X., 1998. The future of physical oceanography, a personal view. A speech at the NSF-sponsored Physical Oceanography Workshop.2 U2 p" l! y" h: I: A 3 `9 q# g k1 @% l- @- \/ f 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." L. U) W1 r& \7 W% A # {1 i% w! t; L7 iW. Wang and R. X. Huang, 2004: Wind energy input to the surface waves and Ekman layer, Bull. Amer. Meteo. Soc., 85, 818-819. , F4 `7 W/ T* c, R9 @5 M; y' } . t8 ~; Z* D; m2 \/ g Technical Report4 N5 z$ Q2 @8 \9 A* V7 J " u6 [: {; y2 y0 K) \2 {5 IHuang, 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 % k! u8 x, q) G8 |0 eTechnical Report WHOI--83--41, 106. / B1 i) h4 |) m7 C o & T' j2 d1 q2 u6 E6 b! sContributor to Chapter 5: Climate Models-Evaluation in "Climate Change 1995", The Intergovernmental Panel on Climate Change, World Meteorological Organization / United Nations Environment Program, 1996. 6 r2 w# N# m% T( a4 M' d, T) l9 w! X 3 M5 r9 {0 c, Q, ~% p; ~Book Reviews ( P& |# R% R0 ]! {) q8 S! q0 T7 [: T0 L$ J! H) Y 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. $ H1 a' x" v( j& g: t1 Q7 ?9 R$ x' a- C2 y 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), 775.5 p8 k, `: h6 S, c% n . i" u7 I8 K0 @" L Huang, R. X., 1997. Review of Introduction to Physical Oceanography by George Mellor. American Journal of Physics. + W6 e# f9 z2 r& ~0 a: V' [/ T! d. N0 R2 z& f. A Thesis 3 o& G$ ^% h: C+ J & u) U5 C' ~/ w: ~0 b4 gHuang, 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. ; O- z8 }% Y$ m " B t* k) P# J4 q! jLecture Notes; {/ N% n% t3 Y s3 S. I. v5 h Huang, 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.5 D% \: D1 ?- k5 p9 j/ }* K0 L + z& E) n9 @) ]/ W) Z Y- d: rHuang, 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." m1 i5 S2 M2 i5 T I2 R 9 B( `! V9 s+ u8 T, S- h6 m 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. / e3 q0 a* Z7 t 3 h4 D3 k* S2 V, A; n3 U/ s5 O8 {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. 3 @% V& L: ~9 f 7 n) O) K# c9 \2 Z* V. L Reference Book$ L0 k. I) L$ B% \% m9 J2 j ' W3 x$ ]! O3 i {- G Wang, 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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