EcoService Models Library (ESML)
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Compare EMs
Which comparison is best for me?EM Variables by Variable Role
One quick way to compare ecological models (EMs) is by comparing their variables. Predictor variables show what kinds of influences a model is able to account for, and what kinds of data it requires. Response variables show what information a model is capable of estimating.
This first comparison shows the names (and units) of each EM’s variables, side-by-side, sorted by variable role. Variable roles in ESML are as follows:
- Predictor Variables
- Time- or Space-Varying Variables
- Constants and Parameters
- Intermediate (Computed) Variables
- Response Variables
- Computed Response Variables
- Measured Response Variables
EM Variables by Category
A second way to use variables to compare EMs is by focusing on the kind of information each variable represents. The top-level categories in the ESML Variable Classification Hierarchy are as follows:
- Policy Regarding Use or Management of Ecosystem Resources
- Land Surface (or Water Body Bed) Cover, Use or Substrate
- Human Demographic Data
- Human-Produced Stressor or Enhancer of Ecosystem Goods and Services Production
- Ecosystem Attributes and Potential Supply of Ecosystem Goods and Services
- Non-monetary Indicators of Human Demand, Use or Benefit of Ecosystem Goods and Services
- Monetary Values
Besides understanding model similarities, sorting the variables for each EM by these 7 categories makes it easier to see if the compared models can be linked using similar variables. For example, if one model estimates an ecosystem attribute (in Category 5), such as water clarity, as a response variable, and a second model uses a similar attribute (also in Category 5) as a predictor of recreational use, the two models can potentially be used in tandem. This comparison makes it easier to spot potential model linkages.
All EM Descriptors
This selection allows a more detailed comparison of EMs by model characteristics other than their variables. The 50-or-so EM descriptors for each model are presented, side-by-side, in the following categories:
- EM Identity and Description
- EM Modeling Approach
- EM Locations, Environments, Ecology
- EM Ecosystem Goods and Services (EGS) potentially modeled, by classification system
EM Descriptors by Modeling Concepts
This feature guides the user through the use of the following seven concepts for comparing and selecting EMs:
- Conceptual Model
- Modeling Objective
- Modeling Context
- Potential for Model Linkage
- Feasibility of Model Use
- Model Certainty
- Model Structural Information
Though presented separately, these concepts are interdependent, and information presented under one concept may have relevance to other concepts as well.
EM Identity and Description
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EM ID
em.detail.idHelp
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EM-712 | EM-982 |
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EM Short Name
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ESII Tool method | Specific conductivity, USA |
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EM Full Name
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ESII (Ecosystem Services Identification & Inventory) Tool method | Specific Conductivity, USA |
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EM Source or Collection
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None | US EPA |
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EM Source Document ID
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391 ?Comment:Website for online user support |
460 |
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Document Author
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EcoMetrix Solutions Group (ESG) | Olson, J.R., and S.M. Cormier |
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Document Year
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2016 | 2019 |
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Document Title
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ESII Tool | Modeling Spatial and Temporal Variation in Natural Background Specific Conductivity |
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Document Status
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Other or unclear (explain in Comment) | Peer reviewed and published |
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Comments on Status
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Website | Published journal manuscript |
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EM ID
em.detail.idHelp
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EM-712 | EM-982 |
| https://www.esiitool.com/ | (https://edg.epa.gov/ metadata/catalog/main/home.page) | |
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Contact Name
em.detail.contactNameHelp
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Not reported | John Olson |
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Contact Address
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Not reported | California State Univ. Monterey Bay, 100 Campus Center, Seaside CA 93955 |
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Contact Email
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Not reported | joolson@csumb.edu |
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EM ID
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EM-712 | EM-982 |
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Summary Description
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AUTHORS DESCRIPTION: "The Nature Conservancy (TNC) and The Dow Chemical Company (Dow) initiated a collaborative effort to develop models that would help Dow and the wider business community identify and incorporate the value of nature into business decision making…the ESII Tool models and outputs were constructed and tested with an engineering and design perspective to facilitate actionable land use and management decisions. The ESII Tool helps non-ecologists make relative comparisons of the expected levels of ecosystem service performance across a given site, under a variety of conditions. As a planning-level tool, it can inform business decisions while enhancing the user’s relationship with nature. However, other uses that require ecological models of a higher degree of accuracy and/or precision, expert data collection, extensive sampling, and analysis of ecological relationships are beyond the intended scope of this tool." "The ESII App is your remote interface to the ESII Tool. It enables you to collect spatially-explicit ecological data, make maps, collect survey data, take photos, and record notes about your observations. With a Wi-Fi connection, the ESII App can upload and download information stored on the ESII Project Workspace, where final analyses and reports are generated. Because sites may be large and may include several different types of habitats, each Site to be assessed using the ESII Tool is divided into smaller areas called map units, and field data is collected on a map unit basis." "Once a map unit has been selected from the list of map units, the first survey question will always be “Map Unit Habitat Type” (Figure 12). The survey will progress through four categories of questions: habitat, vegetation, surface characteristics, and noise and visual screening. The questions are designed to enable you to select the most appropriate response easily and quickly." "Ecosystem Functions and Services scores are shown in units of percent performance, while each Units of Measure score will be shown in the engineering units appropriate to each attribute. At a map unit level, percent performance predicts how well a map unit would perform a given function or service as a proportion of the maximum potential you would expect from ideal attribute conditions. At a Site or Scenario level, percent performance is calculated as the area weighted average of the individual map unit’s percent performance values; it provides a normalized comparative metric between Sites or Scenarios. At both the map unit and the Site or Scenario levels, the units of measure represent absolute values (such as gallons of runoff or BTU reduction through shading) and can be either summed to show absolute performance of a Scenario, or normalized by area to show area-based rates of performance." | We developed a random forest model that predicts natural background specific conductivity (SC), a measure of total dissolved ions, for all stream segments in the contiguous United States at monthly time steps between the years 2001 to 2015. Models were trained using 11 796 observations made at 1785 minimally impaired stream segments and validated with observations from an additional 92 segments. Static predictors of SC included geology, soils, and vegetation parameters. Temporal predictors were related to climate and enabled the model to make predictions for different dates. The model explained 95% of the variation in SC among validation observations (mean absolute error = 29 μS/cm, Nash-Sutcliffe efficiency = 0.85). The model performed well across the period of interest but exhibited bias in Coastal Plain and Xeric regions (26 and 30%, respectively). National model predictions showed large spatial variation with the greatest SC predicted to occur in the desert southwest and plains. Model predictions also reflected changes at individual streams during drought. |
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Specific Policy or Decision Context Cited
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None identified | N/A |
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Biophysical Context
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Not applicable | Stream segment taken from StreamCat database |
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EM Scenario Drivers
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No scenarios presented | N/A |
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EM ID
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EM-712 | EM-982 |
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Method Only, Application of Method or Model Run
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Method Only | Method + Application |
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New or Pre-existing EM?
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New or revised model | New or revised model |
Related EMs (for example, other versions or derivations of this EM) described in ESML
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EM ID
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EM-712 | EM-982 |
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Document ID for related EM
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None | None |
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EM ID for related EM
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EM-713 | None |
EM Modeling Approach
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EM ID
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EM-712 | EM-982 |
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EM Temporal Extent
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Not applicable | 2001-2015 |
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EM Time Dependence
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time-stationary | time-dependent |
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EM Time Reference (Future/Past)
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Not applicable | past time |
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EM Time Continuity
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Not applicable | discrete |
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EM Temporal Grain Size Value
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Not applicable | 3 |
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EM Temporal Grain Size Unit
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Not applicable | Month |
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EM ID
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EM-712 | EM-982 |
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Bounding Type
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Not applicable | Geopolitical |
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Spatial Extent Name
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Not applicable | Contiguous United States |
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Spatial Extent Area (Magnitude)
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Not applicable | >1,000,000 km^2 |
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EM ID
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EM-712 | EM-982 |
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EM Spatial Distribution
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spatially distributed (in at least some cases) ?Comment:map units delineated by user based on project. |
spatially distributed (in at least some cases) |
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Spatial Grain Type
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other (specify), for irregular (e.g., stream reach, lake basin) | area, for pixel or radial feature |
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Spatial Grain Size
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map units | 3.1 km2 |
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EM ID
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EM-712 | EM-982 |
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EM Computational Approach
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Analytic | Analytic |
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EM Determinism
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deterministic | deterministic |
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Statistical Estimation of EM
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EM ID
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EM-712 | EM-982 |
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Model Calibration Reported?
em.detail.calibrationHelp
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Not applicable | Yes |
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Model Goodness of Fit Reported?
em.detail.goodnessFitHelp
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Not applicable | Yes |
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Goodness of Fit (metric| value | unit)
em.detail.goodnessFitValuesHelp
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None |
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Model Operational Validation Reported?
em.detail.validationHelp
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Not applicable | Yes |
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Model Uncertainty Analysis Reported?
em.detail.uncertaintyAnalysisHelp
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Not applicable | No |
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Model Sensitivity Analysis Reported?
em.detail.sensAnalysisHelp
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Not applicable | Yes |
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Model Sensitivity Analysis Include Interactions?
em.detail.interactionConsiderHelp
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Not applicable | Yes |
EM Locations, Environments, Ecology
Terrestrial location (Classification hierarchy: Continent > Country > U.S. State [United States only])
| EM-712 | EM-982 |
| None |
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Marine location (Classification hierarchy: Realm > Region > Province > Ecoregion)
| EM-712 | EM-982 |
| None | None |
Centroid Lat/Long (Decimal Degree)
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EM ID
em.detail.idHelp
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EM-712 | EM-982 |
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Centroid Latitude
em.detail.ddLatHelp
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Not applicable | 39.83 |
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Centroid Longitude
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Not applicable | 98.58 |
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Centroid Datum
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Not applicable | WGS84 |
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Centroid Coordinates Status
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Not applicable | Estimated |
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EM ID
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EM-712 | EM-982 |
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EM Environmental Sub-Class
em.detail.emEnvironmentalSubclassHelp
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Rivers and Streams | Inland Wetlands | Lakes and Ponds | Terrestrial Environment (sub-classes not fully specified) | Rivers and Streams |
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Specific Environment Type
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Not applicable | Stream segment |
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EM Ecological Scale
em.detail.ecoScaleHelp
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Not applicable | Ecological scale is finer than that of the Environmental Sub-class |
Scale of differentiation of organisms modeled
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EM ID
em.detail.idHelp
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EM-712 | EM-982 |
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EM Organismal Scale
em.detail.orgScaleHelp
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Not applicable | Not applicable |
Taxonomic level and name of organisms or groups identified
| EM-712 | EM-982 |
| None Available | None Available |
EnviroAtlas URL
EM Ecosystem Goods and Services (EGS) potentially modeled, by classification system
CICES v 4.3 - Common International Classification of Ecosystem Services (Section > Division > Group > Class)
| EM-712 | EM-982 |
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<a target="_blank" rel="noopener noreferrer" href="https://www.epa.gov/eco-research/national-ecosystem-services-classification-system-nescs-plus">National Ecosystem Services Classification System (NESCS) Plus</a>
(Environmental Subclass > Ecological End-Product (EEP) > EEP Subclass > EEP Modifier)
| EM-712 | EM-982 |
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