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Whew! I feel like I'm the first person to crack this HEC-HMS XSL Style Sheet nut. In any case I'm the first one to share it on the web.First of all, before diving into how to get a report using a Style Sheet, you should realize that a sort of basin model report from HEC-HMS is available as a readable text file in the .basin file. But beyond that, for the purposes and in the hope that we users would develop tabular reports, the HEC also provided a report definition language (that they didn't document very well) for reports we can get from the Tools, Reports menu.
Thank you for downloading HEC-HMS from our software library. The download was scanned for viruses by our system. We also recommend you to check the files before installation. The download version of HEC-HMS is 4.6.1. This download is absolutely FREE. The package you are about to download is authentic and was not repacked or modified in any way. HEC-HMS, the Hydrologic Modeling System, is a utility created so that simulations can be done of precipitation-runoff processes where dendritic watershed systems are concerned. Several types of hydrological problems are meant to be approached using the program, for various geographic areas.
I was able to create an SCS Basin Summary style sheet by using the 'tags' in the .basin file, making them lower case and removing spaces from them. Here's an example of how I added the Curve Number to my report:
1. The sample Snyder report provided by the HEC includes this snippet
2. My .basin file includes this snippet
3. I turned 'Curve Number' from step 2 into curvenumber below. I continued that way to use the example of the .basin file and correct (with some oddities) the table HTML to create an SCS Basin table as shown below:
And here is the complete file I saved as SCSBasinSummary.xsl
And here is the resulting report :-) :
Basin Model 'Bisbee Tailing 071609'
Subbasin | Area | SCS CN | SCS Lag |
---|---|---|---|
SCTSA Top Basin | 0.2149 | 87 | 17.7 |
SCTSA Top Pond 1 | 0.1548 | 87 | 24.1 |
SCTSA Top Pond 2 | 0.1345 | 87 | 28.8 |
SCTSA Top Pond 3 | 0.0877 | 87 | 24.7 |
SCTSA TOE-1 | 0.0895 | 87 | 9.4 |
W Natural Ground 1 | 0.0831 | 87 | 11.7 |
SCTSA Main 2 WS | 0.01259 | 87 | 11.0 |
SCTSA-W3 | 0.0079 | 87 | 3.2 |
SCTSA-W1 | 0.0073 | 87 | 3.2 |
SCTSA Main 3 WS | 0.0327 | 87 | 8.7 |
HR 1 | 0.0168 | 87 | 1.5 |
SCTSA-S3 | 0.0135 | 87 | 4.3 |
SCTSA-S4 | 0.0125 | 87 | 4.1 |
SCTSA-S2 | 0.0058 | 87 | 2.6 |
SCTSA-S1 | 0.0053 | 87 | 2.3 |
SCTSA-S5 | 0.0166 | 87 | 4.8 |
SCTSA-S6 | 0.0132 | 87 | 3.2 |
SCTSA-S7 | 0.0168 | 87 | 6.1 |
HP-1 | 0.047 | 87 | 6.3 |
SCTSA-S8 | 0.0217 | 87 | 5.3 |
Upstream Natuural | 0.6291 | 87 | 15.3 |
NCTSA Top | 0.2581 | 87 | 18 |
NCTSA-E3 | 0.0289 | 87 | 5.3 |
NCTSA-E5 | 0.0083 | 87 | 3.6 |
NCTSA-E2 | 0.0050 | 87 | 3.8 |
NCTSA-E1 | 0.0033 | 87 | 2.2 |
NCTSA-E4 | 0.0022 | 87 | 2.9 |
SCTSA-E3 | 0.0108 | 87 | 6.5 |
NCTSA Main 4 WS | 0.0055 | 87 | 2.5 |
NCTSA Main 5 WS | 0.0162 | 87 | 2.9 |
SCTSA-E2 | 0.0123 | 87 | 5.7 |
NCTSA Main 6 WS | 0.0097 | 87 | 4.2 |
SCTSA-E1 | 0.0060 | 87 | 4.5 |
NCTSA Main 7 WS | 0.0075 | 87 | 2 |
SCTSA-E0 | 0.0022 | 87 | 2.9 |
NCTSA Main 8 WS | 0.0057 | 87 | 1.9 |
HR-2 | 0.0097 | 87 | 1.5 |
HP-2 | 0.0475 | 87 | 3.9 |
SCTSA-E4 | 0.0070 | 87 | 1.6 |
Here's another one that reports both SCS and Green-Ampt and Clark:
Subbasin | Area |
---|
SCS CN
SCS Lag
GA IC
GA SC
GA Conduct.
GA %Imp.
Clark TC
Clark R
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SCS CN
SCS Lag
GA IC
GA SC
GA Suction
GA Conduct.
GA %Imp.
Clark TC
Clark R