EcoService Models Library (ESML)
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Variables Details
: (EM-349)
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Run -Baseline year 2008
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EM Identity and Description (* Note that run information is shown only where run data differ from the "parent" entry for that variable)
EM-349 | |
Document Author
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Bhagabati, N. K., Ricketts, T., Sulistyawan, T. B. S., Conte, M., Ennaanay, D., Hadian, O., McKenzie, E., Olwero, N., Rosenthal, A., Tallis, H., and Wolney, S. |
Document Year
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2014 |
Variable General Info (* Note that run information is shown only where run data differ from the "parent" entry for that variable)
Above ground carbon pool per LULC ?Comment:"For above-ground biomass (AGB), we used data provided in Uryu et al.’s (2008) assessment of CO2 emissions in Riau province, supplemented with estimates for Jambi province (SEAMEO-BIOTROP, 1999) where available for a given LULC type. Uryu et al. (2008) estimated biomass values (ton ha-1) as medians of published (when possible, region-specific) biomass values for different LULC classes extracted from a literature search. Most of the LULC classes in Uryu et al. (2008) are consistent with those in our scenario maps, and the values were directly transferred in those cases. When a LULC class in our map did not appear in Uryu et al. (2008), we took the median value of similar classes (e.g., generic “plantation” and “forest” classes in our scenario maps were assigned the median values of all plantations and mature forest classes, respectively). We multiplied AGB by a factor of 0.47 (Table 4.3 in IPCC, 2006, Vol. 4) to convert biomass to ton ha-1 of carbon." |
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Variable ID
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6922 |
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Qualitative-Quantitative
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Cardinal-Ordinal
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Variable Typology (* Note that run information is shown only where run data differ from the "parent" entry for that variable)
Above ground carbon pool per LULC ?Comment:"For above-ground biomass (AGB), we used data provided in Uryu et al.’s (2008) assessment of CO2 emissions in Riau province, supplemented with estimates for Jambi province (SEAMEO-BIOTROP, 1999) where available for a given LULC type. Uryu et al. (2008) estimated biomass values (ton ha-1) as medians of published (when possible, region-specific) biomass values for different LULC classes extracted from a literature search. Most of the LULC classes in Uryu et al. (2008) are consistent with those in our scenario maps, and the values were directly transferred in those cases. When a LULC class in our map did not appear in Uryu et al. (2008), we took the median value of similar classes (e.g., generic “plantation” and “forest” classes in our scenario maps were assigned the median values of all plantations and mature forest classes, respectively). We multiplied AGB by a factor of 0.47 (Table 4.3 in IPCC, 2006, Vol. 4) to convert biomass to ton ha-1 of carbon." |
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Predictor-Intermediate-Response
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Predictor Variable Type
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Response Variable Type
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Data Source/Type
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Variable Classification Hierarchy
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None |
Variable Spatial Characteristics (* Note that run information is shown only where run data differ from the "parent" entry for that variable)
Above ground carbon pool per LULC ?Comment:"For above-ground biomass (AGB), we used data provided in Uryu et al.’s (2008) assessment of CO2 emissions in Riau province, supplemented with estimates for Jambi province (SEAMEO-BIOTROP, 1999) where available for a given LULC type. Uryu et al. (2008) estimated biomass values (ton ha-1) as medians of published (when possible, region-specific) biomass values for different LULC classes extracted from a literature search. Most of the LULC classes in Uryu et al. (2008) are consistent with those in our scenario maps, and the values were directly transferred in those cases. When a LULC class in our map did not appear in Uryu et al. (2008), we took the median value of similar classes (e.g., generic “plantation” and “forest” classes in our scenario maps were assigned the median values of all plantations and mature forest classes, respectively). We multiplied AGB by a factor of 0.47 (Table 4.3 in IPCC, 2006, Vol. 4) to convert biomass to ton ha-1 of carbon." |
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Spatial Extent Area
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Spatially Distributed?
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Observations Spatially Patterned?
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Spatial Grain Type
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Spatial Grain Size
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Spatial Density
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EnviroAtlas URL
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Variable Temporal Characteristics (* Note that run information is shown only where run data differ from the "parent" entry for that variable)
Above ground carbon pool per LULC ?Comment:"For above-ground biomass (AGB), we used data provided in Uryu et al.’s (2008) assessment of CO2 emissions in Riau province, supplemented with estimates for Jambi province (SEAMEO-BIOTROP, 1999) where available for a given LULC type. Uryu et al. (2008) estimated biomass values (ton ha-1) as medians of published (when possible, region-specific) biomass values for different LULC classes extracted from a literature search. Most of the LULC classes in Uryu et al. (2008) are consistent with those in our scenario maps, and the values were directly transferred in those cases. When a LULC class in our map did not appear in Uryu et al. (2008), we took the median value of similar classes (e.g., generic “plantation” and “forest” classes in our scenario maps were assigned the median values of all plantations and mature forest classes, respectively). We multiplied AGB by a factor of 0.47 (Table 4.3 in IPCC, 2006, Vol. 4) to convert biomass to ton ha-1 of carbon." |
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Temporal Extent
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Temporally Distributed?
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Regular Temporal Grain?
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Temporal Grain Size Value
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Temporal Grain Size Units
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Temporal Density
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Variable Values (* Note that run information is shown only where run data differ from the "parent" entry for that variable)
Above ground carbon pool per LULC ?Comment:"For above-ground biomass (AGB), we used data provided in Uryu et al.’s (2008) assessment of CO2 emissions in Riau province, supplemented with estimates for Jambi province (SEAMEO-BIOTROP, 1999) where available for a given LULC type. Uryu et al. (2008) estimated biomass values (ton ha-1) as medians of published (when possible, region-specific) biomass values for different LULC classes extracted from a literature search. Most of the LULC classes in Uryu et al. (2008) are consistent with those in our scenario maps, and the values were directly transferred in those cases. When a LULC class in our map did not appear in Uryu et al. (2008), we took the median value of similar classes (e.g., generic “plantation” and “forest” classes in our scenario maps were assigned the median values of all plantations and mature forest classes, respectively). We multiplied AGB by a factor of 0.47 (Table 4.3 in IPCC, 2006, Vol. 4) to convert biomass to ton ha-1 of carbon." |
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Min Value
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Max Value
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Other Value Type
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Other Value
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Variable Variability and Sensitivity (* Note that run information is shown only where run data differ from the "parent" entry for that variable)
Above ground carbon pool per LULC ?Comment:"For above-ground biomass (AGB), we used data provided in Uryu et al.’s (2008) assessment of CO2 emissions in Riau province, supplemented with estimates for Jambi province (SEAMEO-BIOTROP, 1999) where available for a given LULC type. Uryu et al. (2008) estimated biomass values (ton ha-1) as medians of published (when possible, region-specific) biomass values for different LULC classes extracted from a literature search. Most of the LULC classes in Uryu et al. (2008) are consistent with those in our scenario maps, and the values were directly transferred in those cases. When a LULC class in our map did not appear in Uryu et al. (2008), we took the median value of similar classes (e.g., generic “plantation” and “forest” classes in our scenario maps were assigned the median values of all plantations and mature forest classes, respectively). We multiplied AGB by a factor of 0.47 (Table 4.3 in IPCC, 2006, Vol. 4) to convert biomass to ton ha-1 of carbon." |
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Variability Expression Given?
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Variability Metric
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Variability Value
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Variability Units
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Resampling Used?
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Variability Expression Used in Modeling?
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Variable Operational Validation (Response Variables only; * Note that run information is shown only where run data differ from the "parent" entry for that variable)
Variable ID
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Validated?
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Validation Approach (within, between, etc.)
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Validation Quality (Qual/Quant)
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Validation Method (Stat/Deviance)
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Validation Metric
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Validation Value
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Validation Units
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Use of Measured Response Data
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