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基于Noah-MP陆面模式的青藏高原地表感热和潜热通量分布及变化特征 被引量:2
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作者 王树舟 马耀明 吴文玉 《高原气象》 CSCD 北大核心 2023年第1期25-34,共10页
利用中国区域高分辨率数据集作为大气强迫场,驱动修改了热力学粗糙度参数化方案后的NoahMP陆面模式进行了2000-2018年青藏高原地区陆面过程模拟。用野外观测资料校验模拟结果后,分析了地表感热通量(SH)、潜热通量(LH)的分布及变化特征... 利用中国区域高分辨率数据集作为大气强迫场,驱动修改了热力学粗糙度参数化方案后的NoahMP陆面模式进行了2000-2018年青藏高原地区陆面过程模拟。用野外观测资料校验模拟结果后,分析了地表感热通量(SH)、潜热通量(LH)的分布及变化特征。结果表明,模式能较合理模拟高原地表感热和潜热通量。高原的中、西部为地表感热和潜热通量的年际变率较大区域。模拟的高原中、西部地区感热通量强于东部地区,且绝大部分区域的感热通量是有增强趋势的。对于整个高原,感热通量从2002年前后呈较明显的增强趋势。总体上,四个季节的平均感热都有较明显的增强,特别是在2010年以后。潜热通量在高原东部地区强于中、西部地区。潜热通量的年际变率相对于感热通量的变率要小。中部地区潜热呈减弱趋势,西部和东部都有弱的增强。对于整个高原,潜热通量在2000-2018年呈弱的增强趋势。其中,2000-2003年潜热通量是增强的,2003-2015年呈减弱趋势,主要因素为在夏季潜热通量的减弱。 展开更多
关键词 青藏高原 感热通量(sh) 潜热通量(LH) 数值模拟
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Assessing the Influence of Aerosol on Radiation and Its Roles in Planetary Boundary Layer Development
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作者 Zhigang CHENG Yubing PAN +7 位作者 Ju LI Xingcan JIA Xinyu ZHANG Pengkun MA Qianqian WANG Junxia DOU Jingjiang ZHANG Jiannong QUAN 《Journal of Meteorological Research》 SCIE CSCD 2021年第2期384-392,共9页
A comprehensive measurement of planetary boundary layer(PBL)meteorology was conducted at 140 and 280 m on a meteorological tower in Beijing,China,to quantify the effect of aerosols on radiation and its role in PBL dev... A comprehensive measurement of planetary boundary layer(PBL)meteorology was conducted at 140 and 280 m on a meteorological tower in Beijing,China,to quantify the effect of aerosols on radiation and its role in PBL development.The measured variables included four-component radiation,temperature,sensible heat flux(SH),and turbulent kinetic energy(TKE)at 140 and 280 m,as well as PBL height(PBLH).In this work,a method was developed to quantitatively estimate the effect of aerosols on radiation based on the PBLH and radiation at the two heights(140 and 280 m).The results confirmed that the weakened downward shortwave radiation(DSR)on hazy days could be attributed predominantly to increased aerosols,while for longwave radiation,aerosols only accounted for around onethird of the enhanced downward longwave radiation.The DSR decreased by 55.2 W m^(-2) on hazy days during noontime(1100–1400 local time).The weakened solar radiation decreased SH and TKE by enhancing atmospheric stability,and hence suppressed PBL development.Compared with clean days,the decreasing rates of DSR,SH,TKE,and PBLH were 11.4%,33.6%,73.8%,and 53.4%,respectively.These observations collectively suggest that aerosol radiative forcing on the PBL is exaggerated by a complex chain of interactions among thermodynamic,dynamic,and radiative processes.These findings shed new light on our understanding of the complex relationship between aerosol and the PBL. 展开更多
关键词 planetary boundary layer(PBL) AEROSOL RADIATION sensible heat flux(sh) TURBULENCE
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