To improve the understandings on regional climatic effects of past human-induced land cover changes, the surface albedo changes caused by conversions from natural vegetation to cropland were estimated across northeastern China over the last 300 years, and its climatic effects were simulated by using the Weather Research and Forecasting (WRF) model. Essential natural vegetation records compiled from historical documents and regional optimal surface albedo dataset were used. The results show that the surface albedo decreased by 0.01-0.03 due to conversions from grassland to cropland in the Northeast China Plain and it increased by 0.005-0.015 due to conversions from forests to cropland in the surrounding mountains. As a consequence, in the No...
Sensible heat flux (H), latent heat flux (LE), and net radiation (NR) are important surface energy c...
Albedo is a characterization of the Earth’s surface ability to reflect solar radiation, and control ...
We estimate the heat flux changes caused by the projected land transformation over the next 40 years...
Abstract Land surface albedo is a critical parameter of the Earth's energy budget and has been great...
China has experienced intense land use and land cover changes during the past several decades, which...
Land cover change affects surface radiation budget and energy balance by changing surface albedo and...
© 2021, The Author(s), under exclusive licence to Springer-Verlag GmbH Germany, part of Springer Nat...
A large decrease in the land surface albedo of the Loess Plateau was observed from 2000 to 2010, as ...
A large decrease in the land surface albedo of the Loess Plateau was observed from 2000 to 2010, as ...
A large decrease in the land surface albedo of the Loess Plateau was observed from 2000 to 2010, as ...
There will be substantial cultivated land change in China as the society strives to meet the growing...
This study first tested and verified the ability of the Weather Research and Forecasting (WRF) model...
Land surface albedo is a critical parameter of the Earth’s energy budget, and has been greatly alter...
Land surface albedo is a critical parameter of the Earth’s energy budget, and has been greatly alter...
A series of simulations was conducted using a regional climate model with a domain covering mainland...
Sensible heat flux (H), latent heat flux (LE), and net radiation (NR) are important surface energy c...
Albedo is a characterization of the Earth’s surface ability to reflect solar radiation, and control ...
We estimate the heat flux changes caused by the projected land transformation over the next 40 years...
Abstract Land surface albedo is a critical parameter of the Earth's energy budget and has been great...
China has experienced intense land use and land cover changes during the past several decades, which...
Land cover change affects surface radiation budget and energy balance by changing surface albedo and...
© 2021, The Author(s), under exclusive licence to Springer-Verlag GmbH Germany, part of Springer Nat...
A large decrease in the land surface albedo of the Loess Plateau was observed from 2000 to 2010, as ...
A large decrease in the land surface albedo of the Loess Plateau was observed from 2000 to 2010, as ...
A large decrease in the land surface albedo of the Loess Plateau was observed from 2000 to 2010, as ...
There will be substantial cultivated land change in China as the society strives to meet the growing...
This study first tested and verified the ability of the Weather Research and Forecasting (WRF) model...
Land surface albedo is a critical parameter of the Earth’s energy budget, and has been greatly alter...
Land surface albedo is a critical parameter of the Earth’s energy budget, and has been greatly alter...
A series of simulations was conducted using a regional climate model with a domain covering mainland...
Sensible heat flux (H), latent heat flux (LE), and net radiation (NR) are important surface energy c...
Albedo is a characterization of the Earth’s surface ability to reflect solar radiation, and control ...
We estimate the heat flux changes caused by the projected land transformation over the next 40 years...