森林砍伐(计算机科学)
天气研究与预报模式
植被(病理学)
土地覆盖
降水
环境科学
蒸散量
气候模式
气候学
网格
气候变化
土地利用
气象学
地理
地质学
计算机科学
医学
生态学
海洋学
土木工程
大地测量学
病理
工程类
生物
程序设计语言
作者
Yingzuo Qin,Dashan Wang,Yong Cao,Xitian Cai,Shijing Liang,Hylke E. Beck,Zhenzhong Zeng
摘要
Abstract Understanding the regional climate response to land cover change requires a realistic sub‐grid representation of vegetation cover in the land surface scheme (LSS) of climate models. The Community Land Model (CLM) is considered one of the most advanced LSSs; however, when coupled with the Weather Research and Forecasting (WRF) model, the tiling vegetation cover approach was deactivated. Here, we reactivated the theoretical sub‐grid vegetation cover representation in WRF‐CLM and applied it to assess the impacts of deforestation on regional climate in the Southeast Asian Massif region. We found that CLM‐tiling performs more accurate simulations of surface air temperature and precipitation compared to other LSSs using the in situ observations. Importantly, CLM‐tiling successfully captures the theoretical sensitivity of evapotranspiration (ET) and temperature to sub‐grid deforestation, aligning with Noah‐mosaic, and it substantially improves the spatial pattern responses of simulated ET and temperature to regional deforestation.
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