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Effect of roughness lengths on surface energy and the planetary boundary layer height over high-altitude Ngoring Lake

Authors :
Shihua Lyu
Xianhong Meng
Lin Zhao
Yinhuan Ao
Zhaoguo Li
Lijuan Wen
Source :
Theoretical and Applied Climatology. 133:1191-1205
Publication Year :
2017
Publisher :
Springer Science and Business Media LLC, 2017.

Abstract

The special climate environment creates a distinctive air-lake interaction characteristic in the Tibetan Plateau (TP) lakes, where the variations of surface roughness lengths also differ somewhat from those of other regions. However, how different categories of roughness lengths affect the lake surface energy exchange and the planetary boundary layer height (PBLH) remains unclear in the TP lakes. In this study, we used a tuned Weather Research and Forecasting (WRF) model version 3.6.1 to investigate the responses of the freeze-up date, turbulent fluxes, meteorological variables, and PBLH to surface roughness length variations in Ngoring Lake. Of all meteorological variables, the lake surface temperature responded to roughness length variations most sensitively; increasing roughness lengths can put the lake freeze-up date forward. The effect of momentum roughness length on wind speed was significantly affected by the fetch length. The increase in the roughness length for heat can induce the increment of the nightly PBLH in most months, especially for the central lake area in autumn. The primary factors that contribute to sensible heat flux (H) and latent heat flux (LE) were the roughness lengths for heat and momentum during the ice-free period, respectively. Increasing roughness length for heat can increase the nightly PBLH, and decreasing roughness length for moisture can also promote growth of the PBLH, but there was no obvious correlation between the momentum roughness length and the PBLH.

Details

ISSN :
14344483 and 0177798X
Volume :
133
Database :
OpenAIRE
Journal :
Theoretical and Applied Climatology
Accession number :
edsair.doi...........88e967966c0fbf1dcda4a6aef61ab4b9
Full Text :
https://doi.org/10.1007/s00704-017-2258-7