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Tag: model
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Project Biovel

Blob Biome-BGC 4.1.1 executable for Windows

Created: 2014-05-21 05:01:21

Credits: User Ferenc HORVATH

License: Creative Commons Attribution-Share Alike 3.0 Unported License

Compressed directory contains all necessary subdirectories and files for running the Biome-BGC model, version 4.1.1 MPI.

File type: Trident (Package)

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Project Biovel

Blob Trusilova et al. (2009) Parameter estimation and val...

Created: 2014-05-21 04:56:56 | Last updated: 2014-05-21 05:15:32

Credits: User Ferenc HORVATH

License: Creative Commons Attribution-Share Alike 3.0 Unported License

Trusilova, K., Trembath, J., Churkina, G. (2009) Parameter estimation and validation of the terrestrial ecosystem model Biome-BGC using eddy-covariance flux measurements. Max-Planck-Institut für Biogeochemie, Technical Reports 16, 1-60.      

File type: Adobe PDF

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Project Biovel

Blob Thornton (2000) User's Guide for Biome-BGC, version ...

Created: 2014-05-21 04:54:33

Credits: User Ferenc HORVATH

License: Creative Commons Attribution-Share Alike 3.0 Unported License

This User's Guide give a detailed reference to setting Biome-BGC model.

File type: Adobe PDF

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Project Biovel

Pack Understanding Basics of a Biome-BGC simulation run


Created: 2014-05-21 04:31:40 | Last updated: 2014-05-21 05:03:34

Biome-BGC is a biogeochemical model that simulates the storage and flux of water, carbon, and nitrogen between the ecosystem and the atmosphere, and within the components of the terrestrial ecosystems (Thornton, 2000). The Biome-BGC was developed by the Numerical Terradynamic Simulation Group (NTSG), University of Montana.The executable code of Biome-BGC are embedded in web services and workflows, while input and parameter files or datasets are managed with Biome-BGC Projects d...

3 items in this pack

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Workflow CME froward propagation (1)

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Ballistic propagation of CME is the SHEBA propagation model. CME speed and speed error produces an estimated time of arrival at desired location.Constructed by David Perez Suarez.

Created: 2014-01-13

Credits: User Eoincar

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Workflow Get Particle trajectories from starting po... (1)

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This is a workflow that uses 2 different services from IMPEx to calculate different variables at a certain radius for a particular planetary model.

Created: 2013-09-10

Credits: User David PS

Attributions: Workflow Sphere lan-lot random points Workflow Particle trajectories in the planetary models provided under IMPEx Workflow VOTable on the net maker for IMPEx Workflow Interpolate n-randon points in a sphere on a planetary models provided under IMPEx

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Workflow Interpolate n-randon points in a sphere on... (1)

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This is a workflow that uses 2 different services from IMPEx to calculate different variables at a certain radius for a particular planetary model.

Created: 2013-09-10

Credits: User David PS

Attributions: Workflow Interpolate values on planetary models provided under IMPEx Workflow VOTable on the net maker for IMPEx Workflow Sphere lan-lot random points

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Workflow Vector field lines in the planetary models... (1)

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This is a simple workflow using one of the webservice provided by IMPEx. It calculates the field lines for the vector field requested for the starting points provided for a particular planetary model.

Created: 2013-09-10

Credits: User David PS

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Workflow Particle trajectories in the planetary mod... (1)

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This is a simple workflow using one of the webservice provided by IMPEx. It calculates the particle trajectories for the defined particle (initial position, velocity, mass and charge) for a particular planetary model.

Created: 2013-09-10

Credits: User David PS

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Workflow Interpolate values on planetary models pro... (2)

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This is a simple workflow using one of the webservice provided by IMPEx. It calculates the value of different variables, at the cordinates that a spacecraft pass through for the time range provided, for a particular planetary model. The orbital values of the spacecraft are obtained by AMDA.

Created: 2013-09-10 | Last updated: 2013-09-10

Credits: User David PS

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