cimp5_sdtoe_constant: Model-average Constant Time of Emergence based on variability

cimp5_sdtoe_constantR Documentation

Model-average Constant Time of Emergence based on variability

Description

Constant time of emergence was estimated as the first year when climate change variability constantly (at least 90

Format

A RasterBrick object of 4 raster layers:

epc_sdtoe_constant

Constant time of emergence in export POC flux to seafloor

o2_sdtoe_constant

Constant time of emergence in dissolved oxygen concentration at seafloor

ph_sdtoe_constant

Constant time of emergence in pH at seafloor

thetao_sdtoe_constant

Constant time of emergence in potential temperature at seafllor

arag_sdtoe_constant

Constant time of emergence in aragonite Concentration

calc_sdtoe_constant

Constant time of emergence in calcite Concentration

co3_sdtoe_constant

Constant time of emergence in mole Concentration of Carbonate expressed as Carbon in Sea Water

co3satarag_sdtoe_constant

Constant time of emergence in carbonate ion concentration for seawater in equilibrium with pure aragonite

co3satcalc_sdtoe_constant

Constant time of emergence in carbonate ion concentration for seawater in equilibrium with pure calcite

aragsat_sdtoe_constant

Earliest time of emergence in aragonite Saturation State

calcsat_sdtoe_constant

Earliest time of emergence in calcite Saturation State

Details

Constant time of emergence was calculated as the first year when the yearly cumulative future standard deviation constantly (at least 90

Source

https://esgf-node.llnl.gov/search/esgf-llnl/


chihlinwei/SCC85 documentation built on Sept. 15, 2023, 4:47 a.m.