TUFLOW CATCH Tutorial M02 Results QGIS: Difference between revisions
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== Introduction ==
Review how the intervention devices are removing pollutants using the TUFLOW CATCH interventions output summary
Refer to <u>[[TUFLOW_CATCH_Tutorial_M01_Results_QGIS | TUFLOW CATCH Tutorial
▲Refer to <u>[[TUFLOW_CATCH_Tutorial_M01_Results_QGIS | TUFLOW CATCH Tutorial 1]]</u> for information on timeseries outputs.
== TUFLOW CATCH Interventions Output Summary ==
Review the interventions summary:
<ol>
<li> In Windows File Explorer, navigate to the '''
<li> This file contains final cumulative flows, masses entering and masses removed for all intervention devices and pollutants
'''Note:''' The values in this results file may vary due to the spatial placement of intervention devices ('''2d_im_TC02_001_L''').<br>
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[[File: TC2_interventions_summary_01a.png]]<br>
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<li>
<li> If the removed mass is divided by the cumulative mass, the resulting value represents either the removal constant (if a constant removal equation was used), or the average removal performance (if a table removal method was used). For example, in trench1, the removal performance for SED_CLAY is calculated by:
<pre>rem SED_CLAY [g] / cum SED_CLAY [g] = 124003.900 / 310009.800 = 0.400 </pre>
This value (0.4) matches the removal constant. This constant was specified in the mass removal properties for pollutant 'SED_CLAY' for intervention device 'trench1' in the .tcc.<br>
In contrast, bufferStrip1 uses a table removal method for SED_CLAY, resulting in:
<pre>rem SED_CLAY [g] / cum SED_CLAY [g] = 283391.500 / 283590.600 = 0.999 </pre>
This shows that bufferStrip1 removed significantly more clay than trench1. The graph below demonstrates this calculation for each pollutant across all the treatment devices: <br>
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[[File:
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</ol>
==TUFLOW
Review the TUFLOW
:'''Note:''' For further guidance on how to plot, view and style results, please refer to <u>[[TUFLOW_Viewer | TUFLOW Viewer]]</u>.
<ol>
<li> Load the '''2d_im_TC02_001_L.shp''' layer from the '''TUFLOW\model\gis''' folder into QGIS.
<li>In the Temporal Controller dock, use the time slider to view the pathogen concentration results. Notice how the ecoli is removed by the treatment devices. In areas where there are no interventions, the pollutant concentrations are much higher (i.e. the eastern waterhole).▼
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[[File:tuflow_plugin_tuflow_viewer.png]]<br>
<
<li>Open TUFLOW Viewer from the TUFLOW Plugin toolbar and open the simulation results. Select File > Load Results - Map Outputs. Navigate to the '''
<li> In the TUFLOW Viewer panel, select 'Conc WQ_PATH_ECOLI_ALIVE_100ML' from the Result Type list. Adjust the symbology as needed. Refer to <u>[[TUFLOW_CATCH_Tutorial_M01_Results_QGIS#TUFLOW_HPC_Map_Results | TUFLOW CATCH Tutorial 01]]</u> for details.
▲Use the TUFLOW Viewer to review the TUFLOW HPC map outputs:
▲<li>
<
▲<li>Open TUFLOW Viewer from the TUFLOW Plugin toolbar and open the simulation results. Select File > Load Results - Map Outputs. Navigate to the '''TUFLOWCatch\results''' folder and select '''TC02_001_catchment_hydraulic.xmdf'''.
{{Video|name=animation_TC2_results_01a.mp4|width=1432}}<br>
<li>Select 'Conc SED_CLAY' from the Result Type list. Adjust the symbology as needed.
<li>Zoom in to bufferStrip1. Use the Plot Time Series tool (from Map Multi) to place a timeseries point on either side of the intervention device to see how bufferStrip1 is removing the sediment.<br>
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{{Video|name=animation_TC2_results_02a.mp4|width=1432}}<br>
<li>Using the same process as above, observe the mass removal occurring at the other intervention devices. <br>
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{{Video|name=animation_TC2_results_03a.mp4|width=1432}}<br>
</ol>
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