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Surface energy balance on the Antarctic plateau as measured with an automatic weather station during 2014

         

摘要

AWS data during 2014 collected at PANDA-N station, on the East Antarctic Plateau, are analysed. Net Short Wave Radiation(QSWR), net Long Wave Radiation(QLWR), sensible(QH), latent(QL) and subsurface or ground(QG) heat fluxes are computed. Annual averages for QSWR, QLWR, QH, QL and QG of 19.65,-49.16, 26.40,-0.77 and 3.86 W·m-2 were derived based on an albedo value of 0.8. QSWR and QH are the major sources of heat gain to the surface and QLWR is the major component of heat loss from the surface. An i terative method is used to estimate surface temperature in this paper;surface temperature of snow/ice is gradually increased or decreased, thereby changing longwave radiation, sensible, latent and subsurface heat fluxes, so that the net energy balance becomes zero. Mass loss due to sublimation at PANDA-N station for 2014 is estimated to be 12.18 mm w.e.·a-1;and mass gain due to water vapour deposition is estimated to be 3.58 mm w.e.·a-1. Thus the net mass loss due to sublimation/deposition is 8.6 mm w.e.·a-1. This study computes surface energy fluxes using a model, instead of direct measurements. Also there are missing data especially for wind speed, though 2 m air temperature data is almost continuously available throughout the year. The uncertainties of albedo, wind speed and turbulent fluxes cause the most probable error in monthly values of QLWR, QH, QL, QG and surface temperature of about ±4%, ±20%, ±50%, ±11% and ±0.74 K respectively.

著录项

  • 来源
    《极地科学进展:英文版》 |2019年第2期|P.93-105|共13页
  • 作者单位

    [1]State Key Laboratory of Severe Weather and Institute of Polar Meteorology;

    Chinese Academy of Meteorological Sciences;

    Beijing 100081;

    China;

    [1]State Key Laboratory of Severe Weather and Institute of Polar Meteorology;

    Chinese Academy of Meteorological Sciences;

    Beijing 100081;

    China;

    [2]Antarctic Climate & Ecosystems Cooperative Research Centre;

    Hobart;

    Tasmania;

    Australia;

    [1]State Key Laboratory of Severe Weather and Institute of Polar Meteorology;

    Chinese Academy of Meteorological Sciences;

    Beijing 100081;

    China;

  • 原文格式 PDF
  • 正文语种 CHI
  • 中图分类 天文学、地球科学;
  • 关键词

    energy balance; Antarctica; surface mass loss; CHINARE;

    机译:能量平衡;南极洲;表面质量损失;CHINARE;
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