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Increased precipitation over land due to climate feedback of large-scale bioenergy cultivation

<p>Biophysical effects of different bioenergy crop cultivation scenarios on global water cycles simulated by coupled IPSL-CM model, with ORCHIDEE-MICT-BIOENERGY as the land component and LMDz as the atmosphere component. The spatial resolution of the coupled model was 1.26&deg; latitude &times; 2.5&deg; longitude (i.e., 143*144 grid cells globally).</p> <p>Datasets includes:</p> <p>1. Source data and plotting code for Figure 1, the global precipitation changes induced by bioenergy cultivation.</p> <p>2. Source data and plotting code for Figure 2, the diagnostic precipitation changes for global land area, in and outside of the bioenergy cultivation area.</p> <p>3. Source data plotting code for Figure 3, the changes in water balance for global land area, in and outside of bioenergy cultivation area, monsoon regions and four different humidity zones.</p>

ShareScore

40/100

Overall dataset sharing score

Score breakdown

These five areas show where the dataset supports — or may limit — practical reuse.

Stewardship
8
Harmonization
4
Access
16
Reuse readiness
8
Engagement
4

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