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A quantitative way of clustering an ensemble is by computing uses empirical orthogonal functions from the differences between the ensemble members and the control forecast. and then using a algorithm to determine the clusters from each ensemble as projected in EOF space (mathematically).
As a smooth dynamical field, Although geopotential height at 500hPa at 00 24/9/2012 is recommend (it used in the paper by Pantillon et al.), but the steps described below can be used for any parameter at any step.
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TODO: update macro image below. |
The eof.mv
macro computes the EOFs and the clustering.
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Always use the Otherwise If you change step or ensemble, recompute the EOFS and cluster definitions using Note that the EOF analyses is run over the smaller domain over France. This may produce a different clustering to your manual cluster if you used a larger domain. |
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Edit ' Set the parameter to use, choice of ensemble and forecast step required for the EOF computation:
Run the macro. The above example will compute the EOFs of geopotential height anomaly at 500hPa using the 2012 operational ensemble at forecast step 00Z on 24/09/2012. A plot will appear showing the first two EOFs. The geographical area for the EOF computation is: 35-55N, 10W-20E (same as in Pantillon et al). If desired it can be changed in |
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The The filename will be different, it will have 'eof' in the filename to indicate it was created by using empirical orthogonal functions.
If a different ensemble forecast is used, for example This cluster definition file can then be used to plot any variable at all steps (as for task 1). |
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Q. What do the EOFs plotted by eof.mv show? |
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Use the cluster definition file computed by The macro Use Edit
Run the macro. If time also look at the total precipitation (tp) over France and PV/320K. |
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Q. How similar is the PCA EOF computed clusters to your manual clustering? |
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To change the number of clusters created by the EOF analysis, find the file in the folder Edit this file and near the top, changeChange:
to
then select 'File' and 'Save' to save the changes. Now if you run the You can use the 3 clusters in the
would plot the mean of the members in the first and the third clusters (it's not possible to plot all three clusters together). You can have as many clusters as you like but it does not make sense to go beyond 3 or 4 clusters. |
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