Published February 21, 2018 | Version 1.0

Biophysical effects of vegetation cover change from satellite and models

Description

Vegetation cover changes associated with land use and land cover change (LULCC) can perturb the local surface energy balance, which in turn can affect the local climate. Land surface models (LSMs) can be used to simulate such land-climate interactions, but their capacity to model these biophysical effects accurately across the globe remain unclear due to the complexity of the phenomena. This dataset provides idealized simulations from four LSMs (JULES, ORCHIDEE, JSBACH and CLM) that are harmonized with estimations obtained from satellite observations, enabling the inter-comparison and benchmarking of LSM performances and which can serve to identify model limitations and prioritize efforts in model development. The dataset provides the change in latent heat flux, in combined sensible and ground heat flux and in net radiation caused by 15 specific vegetation cover transitions on a 1° by 1° grid at monthly time scale for a synthetic year based on data from 2008 until 2012. The dataset was generated from a collaborative effort lead by JRC within the FP7 LUC4C project (luc4c.eu).

Files

README_codes4vegTransitions.txt

Files (699.8 MB)

Name Size
md5:767448dc2075d4d4f8bb5caff561a7ed
699.8 MB Download
md5:f112fb18a8db9f7b70ad287d4f6e4fd6
671 Bytes Preview Download

Additional details

Funding

European Commission
LUC4C - Land use change: assessing the net climate forcing, and options for climate change mitigation and adaptation 603542