Reference:Reference-001042: Difference between revisions

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{{CSDMS reference template cargo
{{BibEntryCargo
|DOIentry=10.1016/j.jenvman.2018.12.074
|Firstname=Lammers, Roderick W.; Bledsoe, Brian P.;
|BibType=journalArticle
|Title=Quantifying pollutant loading from channel sources: Watershed-scale application of the River Erosion Model
|Year=2019-03-01
|Journal=Journal of Environmental Management
|Booktitle=
|Volume=234
|Pages=104–114
|URL=https://linkinghub.elsevier.com/retrieve/pii/S0301479718314968
|DOI=10.1016/j.jenvman.2018.12.074
|Note=Auto downloaded ref at: 2019-12-31
}}
}}
{{RefsInt1
{{RefsInt1
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|PublicationClusterID=0
|PublicationClusterID=0
|MS_PublicationClusterID=2908275507
|MS_PublicationClusterID=2908275507
|Semantic_ID=f7b02f053d19267f45eef8da80668ba1cf51a8cc
|PublicationWhatKindOf=a module application description
|PublicationWhatKindOf=a module application description
|PublicationNrofModels=a single module
|PublicationHPCCYesno=No
|PublicationHPCCYesno=No
|PublicationNrofModels=a single module
}}
}}
{{RefsInt2
{{RefsInt2
|PublicationMultipleModelsCargo=River Erosion Model
|PublicationMultipleModelsCargo=River Erosion Model
}}
}}
{{RefsInt3}}

Revision as of 13:32, 9 January 2022



Author(s) Lammers, Roderick W.; Bledsoe, Brian P.;
BibType journalArticle
Title Quantifying pollutant loading from channel sources: Watershed-scale application of the River Erosion Model
Editors
Year 2019-03-01
Journal Journal of Environmental Management
Booktitle
Volume 234
Pages 104–114
URL https://linkinghub.elsevier.com/retrieve/pii/S0301479718314968
DOI 10.1016/j.jenvman.2018.12.074
ISBN
Note Auto downloaded ref at: 2019-12-31


 
Feature reference Yes
PublicationClusterID 0
MS_PublicationClusterID 2908275507
Semantic_ID f7b02f053d19267f45eef8da80668ba1cf51a8cc
CorpusID {{{CorpusID}}}
Nr of citations 9
Sort of publication a module application description
Sort of model publication a single module
Is the CSDMS HPC used No
If HPC is used, for what project was it?:
Associated simulation movie if any:


Model(s) discussed: River Erosion Model