Page 247 - 《高原气象》2025年第5期
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5 期                   林赵钰等:基于BCC_AVIM陆面潜热通量参数化方案敏感性研究                                      1365


































                                                 图11 潜热通量分量时间序列对比
                        (a)四峨山站植被蒸发潜热, (b)四峨山站植被蒸腾潜热, (c)四峨山站土壤蒸发潜热, (d)玛曲站植被蒸发潜热,
                                             (e)玛曲站植被蒸腾潜热, (f)玛曲站土壤蒸发潜热
                  Fig. 11 Comparison of time series of latent heat fluxes components.(a) latent heat of canopy evaporation at Si'e Mountain
                    station, (b) latent heat of canopy transpiration at Si'e Mountain station, (c) latent heat of ground evaporation at Si'e
                      Mountain station, (d) latent heat of canopy evaporation at Maqu station, (e) latent heat of canopy transpiration
                                     at Maqu station, (f) latent heat of ground evaporation at Maqu station


























                                                 图12 感热通量分量时间序列对比
                                (a)四峨山站植被感热, (b)四峨山站土壤感热, (c)玛曲站植被感热, (d)玛曲站土壤感热
                   Fig. 12 Comparison of time series of sensible heat fluxes components.(a) sensible heat of vegetation at Si'e Mountain
                       station, (b) sensible heat of ground at Si'e Mountain station, (c) sensible heat of vegetation at Maqu station,
                                              (d) sensible heat of ground at Maqu station

               思考。最后本文只选取了森林和高寒草甸两种下                             参考文献(References):
               垫面来进行模拟设计, 后续应将工作应用到更多类
                                                                 Bonan G B, Patton E G, Harman I N, et al, 2018. Modeling canopy-
               型下垫面。                                                induced turbulence in the Earth system: A unified parameteriza‐
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