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authorPaul Garlick <pgarlick@tourbillion-technology.com>2021-12-22 18:53:02 +0000
committerPaul Garlick <pgarlick@tourbillion-technology.com>2021-12-22 18:53:02 +0000
commit7d1b0725ebe5c41cab835394afc230f1aeb2de3a (patch)
tree98f858a00961a5ad18cda04608098cf277696609 /fullswof-utils
parentd0f64e2041728634b185fcd46497ec93973c2057 (diff)
downloadfullSWOF-utils-7d1b0725ebe5c41cab835394afc230f1aeb2de3a.tar.gz
makeBoundary: Format output of total flows.
* fullswof-utils/makeBoundary: Add format to print command.
Diffstat (limited to 'fullswof-utils')
-rwxr-xr-xfullswof-utils/makeBoundary4
1 files changed, 3 insertions, 1 deletions
diff --git a/fullswof-utils/makeBoundary b/fullswof-utils/makeBoundary
index 87abf44..65c7792 100755
--- a/fullswof-utils/makeBoundary
+++ b/fullswof-utils/makeBoundary
@@ -289,7 +289,9 @@ for p in range(num_panels):
sortedQ = [Q_i[i] for i in panel]
# create cumulative discharge list:
total_flow = np.cumsum([item[-1] for item in sortedQ])
-print('total_flow = ', total_flow)
+
+for i in range(len(total_flow)):
+ print('total_flow[{0}] (/m^3/s) = {1:.3f}'.format(i, total_flow[i]))
# target_flow_west = target_flow - Q_i[-1] - Q_i_east[-1]
# calculate velocity: note dependence on hydraulic radius
velocity_channel = Q_i[panel[0]][-1]/A_i[panel[0]][-1]