Model:LONGPRO: Difference between revisions

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|Last name=Slingerland
|Last name=Slingerland
|Type of contact=Model developer
|Type of contact=Model developer
|Institute / Organization=Penn State University  
|Institute / Organization=Penn State University
|Postal address 1=503A Deike Building
|Postal address 1=503A Deike Building
|Town / City=University Park
|Town / City=University Park
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|Email address=sling@geosc.psu.edu
|Email address=sling@geosc.psu.edu
|Phone=814 865-6892
|Phone=814 865-6892
|Fax=814 865-3191  
|Fax=814 865-3191
}}
}}
{{Model identity
{{Model identity
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|Categories=Terrestrial
|Categories=Terrestrial
|Spatial dimensions=1D
|Spatial dimensions=1D
|One-line model description=Dynamic evolution of longitudinal profiles  
|One-line model description=Dynamic evolution of longitudinal profiles
|Extended model description=A program to calculate the dynamical evolution of a stream's longitudinal profile  
|Extended model description=A program to calculate the dynamical evolution of a stream's longitudinal profile
}}
{{Model keywords
|Model keywords=fluvial morphodynamics
}}
}}
{{Model technical information
{{Model technical information
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}}
}}
{{Input - Output description
{{Input - Output description
|Describe input parameters=Length of reach, distance between nodes, timestep, number of timesteps, median grain size, elevation of the water surface, slope of initial river bed, Qmax, Xmax, mainning N, Initial elevation, node along X-as at which tectonic elev. Changes start, sediment conc. of lateral inflow, mass feed rate at upstream boundary,  
|Describe input parameters=Length of reach, distance between nodes, timestep, number of timesteps, median grain size, elevation of the water surface, slope of initial river bed, Qmax, Xmax, mainning N, Initial elevation, node along X-as at which tectonic elev. Changes start, sediment conc. of lateral inflow, mass feed rate at upstream boundary,
|Input format=ASCII
|Input format=ASCII
|Describe output parameters=Temporally evolving longitudinal profile and cross-sectional average flows of a 1D river  
|Describe output parameters=Temporally evolving longitudinal profile and cross-sectional average flows of a 1D river
|Output format=ASCII
|Output format=ASCII
|Pre-processing software needed?=No
|Pre-processing software needed?=No
|Post-processing software needed?=No
|Post-processing software needed?=No
|Visualization software needed?=Yes
|Visualization software needed?=Yes
|Other visualization software=Any software that can read ASCII data  
|Other visualization software=Any software that can read ASCII data
}}
}}
{{Process description model
{{Process description model
|Describe processes represented by the model=1D gradually varied channel flow, Total sediment transport of a river at a node, mass conservation, tectonic elevation changes, settling velocity  
|Describe processes represented by the model=1D gradually varied channel flow, Total sediment transport of a river at a node, mass conservation, tectonic elevation changes, settling velocity
|Describe key physical parameters and equations=1D channel flow: See Henderson (1966, p. 143), Total sediment transport: See Yang's (1973); mass conservation: See Slingerland (1986); Settling velocity: See Dietrich's equation  
|Describe key physical parameters and equations=1D channel flow: See Henderson (1966, p. 143), Total sediment transport: See Yang's (1973); mass conservation: See Slingerland (1986); Settling velocity: See Dietrich's equation
|Describe length scale and resolution constraints=--
|Describe length scale and resolution constraints=--
|Describe time scale and resolution constraints=--
|Describe time scale and resolution constraints=--
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}}
}}
{{Model testing
{{Model testing
|Describe available calibration data sets=See Slingerland et al. (1994)  
|Describe available calibration data sets=See Slingerland et al. (1994)
|Describe available test data sets=--
|Describe available test data sets=--
|Describe ideal data for testing=--
|Describe ideal data for testing=--
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}}
}}
{{Documentation model
{{Documentation model
|Provide key papers on model if any=Slingerland, R.L., K. Furlong and J. Harbaugh, 1994. Simulating Clastic Sedimentary Basins/Physical Fundamentals and Computing Procedures , Prentice Hall, Englewood Clifss, NJ:219 pp.  
|Provide key papers on model if any=Slingerland, R.L., K. Furlong and J. Harbaugh, 1994. Simulating Clastic Sedimentary Basins/Physical Fundamentals and Computing Procedures , Prentice Hall, Englewood Clifss, NJ:219 pp.
|Manual model available=No
|Manual model available=No
|Model website if any=ftp://ftp.geosc.psu.edu/sling/SimSedBasinsBook/
|Model website if any=ftp://ftp.geosc.psu.edu/sling/SimSedBasinsBook/
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|Comments=--
|Comments=--
}}
}}
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Revision as of 15:31, 21 March 2011

Contact

Name Rudy Slingerland
Type of contact Model developer
Institute / Organization Penn State University
Postal address 1 503A Deike Building
Postal address 2
Town / City University Park
Postal code 16802
State Pennsylvania
Country USA"USA" is not in the list (Afghanistan, Albania, Algeria, Andorra, Angola, Antigua and Barbuda, Argentina, Armenia, Australia, Austria, ...) of allowed values for the "Country" property.
Email address sling@geosc.psu.edu
Phone 814 865-6892
Fax 814 865-3191



LONGPRO


Metadata

Summary

Also known as
Model type Single
Model part of larger framework
Note on status model
Date note status model

fluvial morphodynamics,

Technical specs

Supported platforms
Unix, Linux, Mac OS, Windows
Other platform
Programming language

Fortran77

Other program language
Code optimized Single Processor
Multiple processors implemented
Nr of distributed processors
Nr of shared processors
Start year development 1992
Does model development still take place? No
If above answer is no, provide end year model development 1994
Code development status
When did you indicate the 'code development status'?
Model availability As code
Source code availability
(Or provide future intension)
Through CSDMS repository
Source web address
Source csdms web address
Program license type Other
Program license type other --
Memory requirements <512Mb
Typical run time Minutes to hours


In/Output

Describe input parameters Length of reach, distance between nodes, timestep, number of timesteps, median grain size, elevation of the water surface, slope of initial river bed, Qmax, Xmax, mainning N, Initial elevation, node along X-as at which tectonic elev. Changes start, sediment conc. of lateral inflow, mass feed rate at upstream boundary,
Input format ASCII
Other input format
Describe output parameters Temporally evolving longitudinal profile and cross-sectional average flows of a 1D river
Output format ASCII
Other output format
Pre-processing software needed? No
Describe pre-processing software
Post-processing software needed? No
Describe post-processing software
Visualization software needed? Yes
If above answer is yes
Other visualization software Any software that can read ASCII data


Process

Describe processes represented by the model 1D gradually varied channel flow, Total sediment transport of a river at a node, mass conservation, tectonic elevation changes, settling velocity
Describe key physical parameters and equations 1D channel flow: See Henderson (1966, p. 143), Total sediment transport: See Yang's (1973); mass conservation: See Slingerland (1986); Settling velocity: See Dietrich's equation
Describe length scale and resolution constraints --
Describe time scale and resolution constraints --
Describe any numerical limitations and issues --


Testing

Describe available calibration data sets See Slingerland et al. (1994)
Upload calibration data sets if available:
Describe available test data sets --
Upload test data sets if available:
Describe ideal data for testing --


Other

Do you have current or future plans for collaborating with other researchers? None
Is there a manual available? No
Upload manual if available:
Model website if any ftp://ftp.geosc.psu.edu/sling/SimSedBasinsBook/
Model forum / discussion board
Comments --


Download statistics

<pbars ytitle=Downloads Title='Monthly Downloads longpro' xlabels=true size=900x200 ymax=20 grid=true box=true cubic=true plots=open xformat=number connected=true angle=90 legend> ,Total downloads: 93 2008 - Jan,0 Feb,0 Mar,0 Apr,0 May,0 Jun,0 Jul,0 Aug,0 Sep,0 Oct,0 Nov,0 Dec,0 2009 - Jan,0 Feb,4 Mar,4 Apr,0 May,2 Jun,3 Jul,0 Aug,0 Sep,1 Oct,4 Nov,1 Dec,1 2010 - Jan,3 Feb,2 Mar,1 Apr,2 May,7 Jun,4 Jul,4 Aug,2 Sep,4 Oct,5 Nov,1 Dec,4 2011 - Jan,1 Feb,6 Mar,0 Apr,0 May,2 Jun,2 Jul,1 Aug,0 Sep,1 Oct,0 Nov,0 Dec,0 2012 - Jan,0 Feb,0 Mar,2 Apr,0 May,0 Jun,1 Jul,0 Aug,0 Sep,0 Oct,3 Nov,0 Dec,0 2013 - Jan,0 Feb,1 Mar,0 Apr,1 May,0 Jun,0 Jul,0 Aug,0 Sep,0 Oct,0 Nov,1 Dec,1 2014 - Jan,0 Feb,2 Mar,0 Apr,0 May,0 Jun,0 Jul,2 Aug,1 Sep,4 Oct,1 Nov,0 Dec,0 2015 - Jan,1 Feb,0 Mar,0 Apr,0 May,0 Jun,0 Jul,0 </pbars>

Introduction

History

Papers

Issues

Help

Input Files

Output Files

Download source code

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