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Data Article

Long-term daily dataset of surface sensible heat flux and latent heat release over the Tibetan Plateau based on routine meteorological observations

ORCID Icon, ORCID Icon, ORCID Icon, ORCID Icon & ORCID Icon
Pages 480-491 | Received 05 Dec 2021, Accepted 21 Jan 2022, Published online: 17 Feb 2022

References

  • Boos, W. R., & Kuang, Z. M. (2010). Dominant control of the South Asian monsoon by orographic insulation versus plateau heating. Nature, 463, 218–222.
  • Chen, L., Pryor, S. C., Wang, H., & Zhang, R. (2019). Distribution and variation of the surface sensible heat flux over the Central and Eastern Tibetan Plateau: Comparison of station observations and multireanalysis products. Journal of Geophysical Research: Atmospheres, 124, 6191–6206.
  • Chen, L., Reiter, E. R., & Feng, Z. (1985). The atmospheric heat source over the Tibetan Plateau: May-August 1979. Monthly Weather Review, 113, 1771–1790.
  • Duan, A., Li, F., Wang, M., & Wu, G. (2011). Persistent weakening trend in the spring sensible heat source over the Tibetan Plateau and its impact on the Asian summer monsoon. Journal of Climate, 24(21), 5671–5682.
  • Duan, A., Liu, S., Zhao, Y., Gao, K., & Hu, W. (2018). Atmospheric heat source/sink dataset over the Tibetan Plateau based on satellite and routine meteorological observations. Big Earth Data, 2(2), 179–189.
  • Duan, A. M., & Wu, G. X. (2008). Weakening trend in the atmospheric heat source over the Tibetan Plateau during recent decades. Part I: Observations. Journal of Climate, 21, 3149–3164.
  • Feng, Z., Reiter, R. E., & Chen, L. (1985). The atmospheric heat budget over the western part of the Tibetan Plateau during MONEX. Advances in Atmospheric Sciences, 2, 454–468.
  • GMAO, 2015: MERRA-2 tavgM_2d_flx_Nx: 2D, monthly mean, time-averaged, single-level surface flux diagnostics, version 5.12.4. Goddard Earth Sciences Data and Information Services Center, accessed 3 February 2017, 10.5067/0JRLVL8YV2Y4.
  • Guo, X., Yang, K., & Chen, Y. (2011). Weakening sensible heat source over the Tibetan Plateau revisited: Effects of the land–atmosphere thermal coupling. Theoretical and Applied Climatology, 104, 1–12.
  • Han, C., Ma, Y., Chen, X., & Su, Z. (2017). Trends of land surface heat fluxes on the Tibetan Plateau from 2001 to 2012. International Journal of Climatology, 37, 4757–4767.
  • Harada, Y., Kamahori, H., Kobayashi, C., Endo, H., Kobayashi, S., Ota, Y., … Takahashi, K. (2016). The JRA-55 reanalysis: Representation of atmospheric circulation and climate variability, J. Meteorological Society of Japan, 94, 269–302.
  • He, C., Wang, Z., Zhou, T., & Li, T. (2019). Enhanced latent heating over the Tibetan Plateau as a key to the enhanced East Asian summer monsoon circulation under a warming climate. Journal of Climate, 32(11), 3373–3374.
  • Hersbach, H., Bell, B., Berrisford, P., Hirahara, S., Horányi, A., Muñoz‐Sabater, J., … Thépaut, J. N. (2020). The ERA5 global reanalysis. Quarterly Journal of the Royal Meteorological Society, 146, 1999–2049.
  • Kanamitsu, M., Ebisuzaki, W., Woollen, J., Yang, S. K., Hnilo, J. J., Fiorino, M., & Potter, G. L. (2002). NCEP-DOE AMIP-II reanalysis (R-2). Bulletin of the American Meteorological Society, 83, 1631–1643.
  • Ma, Y., Zhong, L., Su, Z., Ishikawa, H., Menenti, M., & Koike, T. (2006). Determination of regional distributions and seasonal variations of land surface heat fluxes from Landsat-7 enhanced thematic mapper data over the central Tibetan Plateau area. Journal of Geophysics ResearchAtmospheres, 111, D10305.
  • Ma, Y., Zhong, L., Wang, B., Ma, W., Chen, X., & Li, M. (2011). Determination of land surface heat fluxes over heterogeneous landscape of the Tibetan Plateau by using the MODIS and in-situ data. Atmospheric Chemistry and Physics, 11, 10461–10469.
  • Monin, A. S., & Obukhov, A. M. (1954). Basic laws of turbulent mixing in the atmosphere near the ground. Tr Akad Nauk SSSR Geofiz Institute, 24, 163–187.
  • Wang, M., Zhou, S., & Duan, A. (2011). Trend in the atmospheric heat source over the central and eastern Tibetan Plateau during recent decades: Comparison of observations and reanalysis data. Chinese Science Bulletin, 57, 548–557.
  • Wang, M., Zhou, S., & Duan, A. (2012). Trend in the atmospheric heat source over the central and eastern Tibetan Plateau during recent decades: Comparison of observations and reanalysis data. Chinese Science Bulletin, 57, 548–5573–183.
  • Wu, G. X., Duan, A. M., Liu, Y. M., Mao, J. Y., Ren, R. C., Bao, Q., … Hu, W. T. (2015). Tibetan Plateau climate dynamics: Recent research progress and outlook. National Science Review, 2, 100–116.
  • Xie, Z., & Wang, B. (2019). Summer atmospheric heat sources over the Western–Central Tibetan Plateau: An integrated analysis of multiple reanalysis and satellite datasets. Journal of Climate, 32, 1181–1202.
  • Xie, J., Yu, Y., Li, J. L., Ge, J., & Liu, C. (2018). Comparison of surface sensible and latent heat fluxes over the Tibetan Plateau from reanalysis and observations. Meteorology and Atmospheric Physics, 131, 567–584.
  • Yang, K., Qin, J., Guo, X., Zhou, D., & Ma, Y. (2009). Method development for estimating sensible heat flux over the Tibetan Plateau from CMA data. Journal of Applied Meteorology and Climatology, 48, 2474–2486.
  • Yang, K., Wu, H., Qin, J., Lin, C., Tang, W., & Chen, Y. (2014). Recent climate changes over the Tibetan Plateau and their impacts on energy and water cycle: A review. Global and Planetary Change, 112, 79–91.
  • Ye, D., & Gao, Y. (1979). The meteorology of the Qinghai-Xizang (Tibet) Plateau (in Chinese) (pp. 278). Beijing: Science Press.
  • Yeh, T.-C. (1950). The circulation of high troposphere over China in winter of 1945–1946. Tellus, 2, 17.
  • Zhao, P., & Chen, L. (2000). Study on climatic features of surface turbulent heat exchange coefficients and surface thermal forces over the Qinghai-Xizang Plateau. Acta Mechanica Sinica, 14, 13–29.
  • Zhao, P., & Chen, L. X. (2001). Climatic features of atmospheric heat source/sink over the QinghaiXizang Plateau in 35 years and its relation to rainfall in China. Science in China Series D. Earth Sciences, 44, 858–864.
  • Zhu, X., Liu, Y., & Wu, G. (2012). An assessment of summer sensible heat flux on the Tibetan Plateau from eight data sets. Science China Earth Sciences, 55, 779–786.