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Cryosphere melt over the Third Pole

<p>This repository includes the dataset&nbsp;associated to the following paper submitted&nbsp;to&nbsp;Nature 2020: Tandong Yao, Lonnie Thompson, Wusheng Yu, et al., Cryosphere melt and its role to water balance over the Third Pole.</p> <p>Figure 1. The GMWE variations based on the in-situ measurements in the endorheic and exorheic zones over the TP during 2000&ndash;2018<br> Figure 2. The PMWE variations based on the in-situ measurements in the endorheic and exorheic zones over the TP during 2000&ndash;2018<br> Figure 3. The SMWE variations based on the in-situ measurements in the endorheic and exorheic zones over the TP during 2000&ndash;2018<br> Figure 4. Spatiotemporal variations of cryosphere melt and its linkage with water storage in the endorheic and exorheic zones over the TP during 2000&ndash;2018<br> Figure S7. Temporal changes of glacier melt water equivalent (GMWE)<br> Figure S8. Annual glacier melt water equivalent (GMWE) from 2000 to 2018 over the TP<br> Figure S9. Temporal changes of Permafrost melt water equivalent (PMWE) in the endorheic and exorheic zones<br> Figure S10. PMWE changes in different time spans over the TP<br> Figure S11. Temporal changes of snow melt water equivalent (SMWE)<br> Figure S12. Annual snow melt water equivalent (SMWE) from 2000 to 2018 in the TP<br> Figure S13.The average GMWE, PMWE and SMWE in each basin over the TP<br> Figure S14. Annual variations of cryosphere melt in the endorheic and exorheic zones over the TP</p>

ShareScore

12/100

Overall dataset sharing score

Score breakdown

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

Stewardship
8
Harmonization
4
Access
0
Reuse readiness
0
Engagement
0

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