Analysis and comparison of heat flux of landfast ice during 2016 in the Prydz Bay, Antarctica

被引:0
作者
Guanghua Hao
Jie Su
Qinghua Yang
Long Lin
Shutao Cao
机构
[1] Ministry of Natural Resources,Key Laboratory of Marine Hazards Forecasting, National Marine Environmental Forecasting Center
[2] Ocean University of China,Physical Oceanography Laboratory
[3] Pilot National Laboratory for Marine Science and Technology (Qingdao),School of Atmospheric Sciences
[4] Sun Yat-sen University,Second Institute of Oceanography
[5] Southern Marine Science and Engineering Guangdong Laboratory (Zhuhai),undefined
[6] Ministry of Natural Resources,undefined
来源
Acta Oceanologica Sinica | 2021年 / 40卷
关键词
energy flux; observation; evaluation; CICE 6; reanalysis data;
D O I
暂无
中图分类号
学科分类号
摘要
Long term in situ atmospheric observation of the landfast ice nearby Zhongshan Station in the Prydz Bay was performed from April to November 2016. The in situ observation, including the conventional meteorological elements and turbulent flux, enabled this study to evaluate the sea ice surface energy budget process. Using in situ observations, three different reanalysis datasets from the European Centre for Medium-Range Weather Forecasts Interim Re-analysis (ERA-Interim), National Centers for Environmental Prediction Reanalysis2 (NCEP R2), and Japanese 55-year Reanalysis (JRA55), and the Los Alamos sea ice model, CICE, output for surface fluxes were evaluated. The observed sensible heat flux (SH) and net longwave radiation showed seasonal variation with increasing temperature. Air temperature rose from the middle of October as the solar elevation angle increased. The ice surface lost more energy by outgoing longwave radiation as temperature increased, while the shortwave radiation showed obvious increases from the middle of October. The oceanic heat flux demonstrated seasonal variation and decreased with time, where the average values were 21 W/m2 and 11 W/m2, before and after August, respectively. The comparisons with in situ observations show that, SH and LE (latent heat flux) of JRA55 dataset had the smallest bias and mean absolute error (MAE), and those of NCEP R2 data show the largest differences. The ERA-Interim dataset had the highest spatial resolution, but performance was modest with bias and MAE between JRA55 and NCEP R2 compare with in situ observation. The CICE results (SH and LE) were consistent with the observed data but did not demonstrate the amplitude of inner seasonal variation. The comparison revealed better shortwave and longwave radiation stimulation based on the ERA-Interim forcing in CICE than the radiation of ERA-Interim. The average sea ice temperature decreased in June and July and increased after September, which was similar to the temperature measured by buoys, with a bias and MAE of 0.9°C and 1.0°C, respectively.
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页码:71 / 79
页数:8
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共 86 条
  • [21] Pirazzini R(2014)Surface energy budget on Larsen and Wilkins ice shelves in the Antarctic Peninsula: results based on reanalyses in 1989–2010 The Cryosphere 8 1519-139
  • [22] Yang Q(2008)Mesoscale modeling of the atmosphere over Antarctic sea ice: a late-autumn case study Monthly Weather Review 136 1457-8446
  • [23] Kanamitsu M(2005)Seasonal cycles of Antarctic surface energy balance from automatic weather stations Annals of Glaciology 41 131-130
  • [24] Ebisuzaki W(2009)Radiative and turbulent surface heat fluxes over sea ice in the western Weddell Sea in early summer Journal of Geophysical Research: Oceans 114 C04019-279
  • [25] Woollen J(2017)Atmospheric components of the surface energy budget over young sea ice: Results from the N-ICE2015 campaign Journal of Geophysical Research: Atmospheres 122 8427-543
  • [26] King J C(1997)On the surface energy budget of sea ice Journal of Glaciology 43 122-877
  • [27] Connolley W M(2001)The surface energy budget in the Antarctic summer sea-ice pack Annals of Glaciology 33 275-61
  • [28] Derbyshire S H(2016)Albedo of coastal landfast sea ice in Prydz Bay, Antarctica: Observations and parameterization Advances in Atmospheric Sciences 33 535-1582
  • [29] King J C(2017)The variability of surface radiation fluxes over landfast sea ice near Zhongshan station, east Antarctica during austral spring International Journal of Digital Earth 12 860-undefined
  • [30] Gadian A(2019)Spatial and temporal evolution of landfast ice near Zhongshan Station, East Antarctica, over an annual cycle in 2011/2012 Acta Oceanologica Sinica 38 51-undefined