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Direct Observation of Radiative Flux in the Southern Yellow Sea  

Lu, Lian-Gang (Laboratory of Marine Science and Numerical Modeling, the First Institute of Oceanography, State Oceanic Administration)
Yu, Fei (Laboratory of Marine Science and Numerical Modeling, the First Institute of Oceanography, State Oceanic Administration)
Diao, Xinyuan (Laboratory of Marine Science and Numerical Modeling, the First Institute of Oceanography, State Oceanic Administration)
Guo, Jingsong (Laboratory of Marine Science and Numerical Modeling, the First Institute of Oceanography, State Oceanic Administration)
Wang, Huiwu (Laboratory of Marine Science and Numerical Modeling, the First Institute of Oceanography, State Oceanic Administration)
Wei, Chuanjie (Laboratory of Marine Science and Numerical Modeling, the First Institute of Oceanography, State Oceanic Administration)
Publication Information
Ocean Science Journal / v.43, no.2, 2008 , pp. 115-126 More about this Journal
Abstract
Direct measurements of four radiative components at air-sea boundary layer were conducted in the southern Yellow Sea during three cruises (seasons) in 2007. Simultaneous observations of meteorological (cloud cover, air temperature and humidity) and oceanographic (sea surface temperature) parameters were carried out. Observational results of radiative fluxes and meteorological and oceanographic parameters are presented. Mean diurnal cycles of four radiative components, net radiation, and sea surface albedo are calculated to achieve averages in different seasons. Net radiative fluxes in three seasons (winter, spring, autumn) are 8, 146, $60\;W/m^2$, respectively. Comparisons between the observed radiative fluxes and those estimated with formulas are taken.
Keywords
radiative flux; net radiation; air-sea boundary layer; Yellow Sea;
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1 Dobson, F.W. and S.D. Smith. 1988. Bulk models of solar radiation at sea. Quart. J. R. Met. Soc., 114, 165-182   DOI
2 Kantha, L.H. and C.A. Clayson. 2000. Small-scale processes in geophysical fluid flows. Academic Press, New York. 888 p
3 Peixoto, J.P. and A.H. Oort. 1992. Physics of climate. Springer- Verlag, New York. 520 p
4 Reed, R.K. 1977. On estimating insolation over the ocean. J. Phys. Oceanogr., 7, 482-485   DOI
5 Reed, R.K. and D. Halpern. 1975. Insolation and net longwave radiation off the Oregon Coast. J. Geophys. Res., 80, 839-844   DOI
6 Spencer, J.W. 1971. Fourier series representation of the position of the Sun. Search, 2(5), 172
7 Simpson, J.J. and C.A. Paulson. 1979. Mid-ocean observations of atmospheric radiation. Quart. J. R. Met. Soc., 105, 487- 502   DOI
8 Fairall, C.W., P.O.G. Persson, E.F. Bradley, R.E. Payne, and S.P. Anderson. 1998. A new look at calibration and use of Eppley precision infrared radiometers Part I: theory and application. J. Atmos. Ocean. Tech., 15, 1230-1243
9 Payne, R.E. 1972. Albedo of the sea surface. J. Atmos. Sci., 29, 959-970   DOI
10 Jiang, G., W. Sha, J. Yan, X. Li, Y. Xiao, H. Yao, J. Li, and Z. Lu. 2002. The analysis of the radiation features before and after South China Sea monsoon onset. J. Tropi. Mete., 18, 29-37
11 Chu, P., Y. Chen, and A. Kuninaka. 2005. Seasonal variability of the Yellow Sea/East China Sea surface fluxes and thermohaline structure. Adv. Atmos. Sci., 22(1), 1-20   DOI   ScienceOn
12 Schiano, M.E., R. Santoleri, F. Bignami, R.M. Leonardi, S. Marullo, and E. Bohm. 1993. Air-sea interaction measurements in the west Mediterranean Sea during the Thyrrhenian Eddy Multi-Platform observations experiment. J. Geophys. Res., 98, 2461-2474   DOI
13 Shine, K.P. 1984. Parameterization of the shortwave flux over high albedo surfaces as a function of cloud thickness and surface albedo. Quart. J. R. Met. Soc., 110, 747-764   DOI
14 Lumb, F.E. 1964. The influence of cloud on hourly amounts of total solar radiation at the sea surface. Quart. J. R. Met. Soc., 90, 43-56   DOI
15 Byun, D.-S. and Y.-K. Cho. 2006. Estimation of the PAR irradiance ratio and its variability under clear-sky conditions at Ieodo in the East China Sea. Ocean Sci. J., 41(4), 235-244   과학기술학회마을   DOI
16 Josey, S. A., R.W. Pascal, P.K. Taylor, and M.J. Yelland. 2003. A new formula for determining the atmospheric longwave flux at the ocean surface at mid-high latitudes. J. Geophys. Res., 108, DOI 10.1029/2002JC001418
17 osey, S.A., D. Oakley, and R.W. Pascal. 1997. On estimating the atmospheric longwave flux at the ocean surface from ship meteorological reports. J. Geophys. Res., 102, 27961-27972   DOI
18 Zhang, D. and R.A. Anthes. 1982. A high-resolution model of the planetary boundary layer-sensitivity tests and comparisons with SESAME-79 data. J. Appl. Meteor., 21, 1594-1609   DOI
19 Byun, D.-S. and N. Pinardi. 2007. Comparison of marine insolation estimating methods in the Adriatic Sea. Ocean Sci. J., 42(4), 211-222   과학기술학회마을   DOI
20 Bignami, F., S. Marullo, R. Santoleri, and M.E. Schiano. 1995. Longwave radiation budget in the Mediterranean Sea. J. Geophys. Res., 100, 2501-2514   DOI   ScienceOn
21 Bunker, A.F. 1976. Computations of surface energy flux and annual air-sea interaction cycles of the North Atlantic Ocean. Mon. Wea. Rev., 104(9), 1122-1140   DOI
22 Hirose, N., H.-C. Lee, and J.-H. Yoon. 1999. Surface heat flux in the East China Sea and the Yellow Sea. J. Phys. Oceanogr., 29(3), 401-417   DOI   ScienceOn
23 Pascal, R.W. and S.A. Josey. 2000. Accurate radiometric measurement of the atmospheric longwave flux at the sea surface, J. Atmos. Ocean. Tech., 17, 1271-1282   DOI   ScienceOn
24 Clark, N.E., L. Eber, R.M. Laurs, J.A. Renner, and J.F.T. Saur. 1974. Heat exchange between ocean and atmosphere in the eastern North Pacific for 1961-71. NOAA Tech. Rep. NMFS SSRF-682, U.S. Dep. Commer., Washington, D.C