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Ergo User Tutorial Part 2 NCSA, UIUC. Web Documents  https://opensource.ncsa.illinois.edu/confluence/display/ERG O/Ergo+Home https://opensource.ncsa.illinois.edu/confluence/display/ERG.

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Presentation on theme: "Ergo User Tutorial Part 2 NCSA, UIUC. Web Documents  https://opensource.ncsa.illinois.edu/confluence/display/ERG O/Ergo+Home https://opensource.ncsa.illinois.edu/confluence/display/ERG."— Presentation transcript:

1 Ergo User Tutorial Part 2 NCSA, UIUC

2 Web Documents  https://opensource.ncsa.illinois.edu/confluence/display/ERG O/Ergo+Home https://opensource.ncsa.illinois.edu/confluence/display/ERG O/Ergo+Home  http://ergo.ncsa.illinois.edu/ http://ergo.ncsa.illinois.edu/

3 Overview  Create a scenario  Create a local data repository  Create seismic hazards  Scenario hazard  Probabilistic hazard  Run building damage analysis

4 How to create a scenario

5 Create New Scenario  Select File > New Scenario  Where it says Name enter Tutorial Scenario  Leave the rest as default values  Click Next

6 Create New Scenario – Region of Interest  Where it says Country select United States of America  Find Tennessee state and expand it  Find Shelby county and select it  Click Next

7 Create New Scenario – Default Sets  Select Ergo 4.0.0 Beta 1  Click Finish

8 Tutorial Scenario

9 Tutorial Scenario (2)  You can check the box to not show render controls in the future  Click OK to close the 2D Renderer Controls dialog box  3 views should be open  Scenarios  2D Renderer view  Catalog view

10 Exercise 1. Create new scenario

11 How to Create Local Data Repository

12 Data Repository  Data repository stores inventory, hazard, fragility, fragility mapping, default sets, etc.  Initially, you have two repositories:  Ergo-EQ public repository (read- only)  Sample data that you can test/run the analysis  Datasets from MAE center  Local Cache  Repository stores the temporary caches (managed by the software)

13 Local Data Repository  Similar to the Ergo Public Repository except data and metadata will be stored on local disk  Allows working offline  Can publish local data to remote data store and vice verse

14 Creating Local Repository (1)  Click New Repository button

15 Creating Local Repository (2)  Select Local Repository as a repository type  Click Next

16 Creating Local Repository (3)  Type Tutorial Repo as a repository name  Select the location (folder) of your repository (i.e. D:\tutorial)  Click Finish  We will ingest (store) data for this tutorial

17 Exercise 1. Create your local repository

18 How to Create Seismic Hazard

19 Seismic Hazards  You can create seismic hazards by  Attenuation function  Probabilistic data from USGS (Hazard map)

20 By Using Attenuation (1)  Run “Create Scenario Earthquake” with following steps:  Right click on Tutorial Scenario and select Execute Analysis  Expand Hazard and select “Create Scenario Earthquake”  Click Finish

21 By Using Attenuation (2)  For Result Name specify scen-eq  Leave the rest as default values  Click Execute

22 Scenario Earthquake  Click on “Tutorial Scenario (2D)” tab to see the result  Expand the scenario and the scen-eq to see the legend

23 Probabilistic Hazard  You can ingest the USGS probabilistic hazard map for your hazard  http://earthquake.usgs.gov/hazards/produ cts/conterminous/index.php#2014 http://earthquake.usgs.gov/hazards/produ cts/conterminous/index.php#2014  Since it covers entire US, we downloaded and cropped the data around Shelby county.  We will ingest the prepared data into your local repository

24 Ingesting Probabilistic Hazard (1)  Download the data at  https://opensource.ncsa.illinois.ed u/confluence/download/attachm ents/68289024/prob-hazard- data.zip?api=v2 https://opensource.ncsa.illinois.ed u/confluence/download/attachm ents/68289024/prob-hazard- data.zip?api=v2  Unzip the file (prob-hazard- data.zip).  Right-click on Tutorial Repo  Select Ingest Dataset

25 Ingesting Probabilistic Hazard (2)  Select Raster as a file type  Click Next

26 Ingesting Probabilistic Hazard (3)  Select Raster file (uspga250_clip_asc.asc) you unzipped  Click Next

27 Ingesting Probabilistic Hazard (3)  Select Probabilistic Hazard as a data type  Click Next

28 Ingesting Probabilistic Hazard (3)  Type pga as hazard  Select Ground Motion in G as a unit  Type 0 for period  Click Next

29 Ingesting Probabilistic Hazard (3)  Select your repository ( Tutorial Repo )  Type pga 2 percent in 50 year  Type 1 for version #  Click Finish

30 Ingesting Probabilistic Hazard (3)  Expand your repository to see the dataset  Drag & Drop the dataset (pga 2 percent in 50 year) to your scenario (Tutorial scenario) or to the map view

31 Two Hazards  Now you have two seismic hazards (deterministic and probabilistic) in your scenario  Expand your scenario to see these datasets  You can turn on/off visibility of the layer by right-click on the dataset and select Toggle Visibility

32 Running Building Damage Analysis

33 Run Building Damage Analysis  Right click on Tutorial Scenario and select Execute Analysis  Expand Building and select Structural Damage  Click Finish

34 Building Damage Analysis Click Here Builds User Interface Search for Dataset Create Dataset

35 Add Required Inputs - Buildings  Where it says Result Name enter Building Damage  Where it says Buildings click the Search button  Select Shelby County RES3 and click Finish  It may take a few seconds to load the dataset depending on your internet connection

36 Add Required Inputs - Hazard  Where it says Hazard click the Search button  Select scen-eq (the hazard you created before) and click Finish

37 Execute Building Damage  Click on Advanced Parameters  Notice all required values filled in from default set  Analysis is ready  Click Execute

38 Exercise 1. Open Structural Damage analysis under Building 2. Set inputs for Structural Damage analyses 3. Execute Analyses

39 2D Map View Legends Buildings Hazard Map

40 Building Damage Table  Right click on Building Damage  Select Show Attribute Table

41 Exercise 1. View Building Damage Attribute Table

42 Change Layer Style  Right click on Building Damage and select Change Layer Style  Under Ranged Style, locate the Number of Classes field and select 7  Click Apply Style

43 Exercise 1. Change the layer style by increasing number of classes

44 Exercise 1. Execute Building Structural Damage analysis with probabilistic hazard dataset you ingested (pga 2 percent in 50 year)  Result name: Building Damage 2  Buildings: Shelby County RES3  Hazard: pga 2 percent in 50 year


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