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start:hype_file_reference:yyyy_ss.txt [2015/04/01 09:51]
cpers
start:hype_file_reference:yyyy_ss.txt [2021/01/06 09:25] (current)
cpers
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 The table below describes all variables written column-wise in //​yyyy_ss.txt//​. Variables with a //_nn// suffix are calculated for each SLC class separately, with //nn// numbers corresponding to numbers in [[start:​hype_file_reference:​geoclass.txt|GeoClass.txt]],​ so that the total number of columns varies depending on the number of SLC classes in the model set-up. The table below describes all variables written column-wise in //​yyyy_ss.txt//​. Variables with a //_nn// suffix are calculated for each SLC class separately, with //nn// numbers corresponding to numbers in [[start:​hype_file_reference:​geoclass.txt|GeoClass.txt]],​ so that the total number of columns varies depending on the number of SLC classes in the model set-up.
- 
-/** 
- * ____________IMPORTANT!__________IMPORTANT!________________IMPORTANT!_______________________IMPORTANT!______________ 
- * 
- * The table below is maintained in spreadsheed file '​file_reference_tables.xlsx'​ 
- * in the wiki back-up folder on our server. 
- * Please edit table contents there and then copy-paste the updated full table to this page. Ask René if something is  
- * unclear. Thanks. 
- * ___________________________________________________________________________________________________________________ 
- */ 
  
 <​sortable>​ <​sortable>​
Line 33: Line 23:
 |''​Urban3''​|//​kg/​year//​|gross load in point source type 3, see [[start:​hype_file_reference:​pointsourcedata.txt|description in PointSourceData.txt]]| |''​Urban3''​|//​kg/​year//​|gross load in point source type 3, see [[start:​hype_file_reference:​pointsourcedata.txt|description in PointSourceData.txt]]|
 |''​Rgrwmr''​|//​kg/​year//​|gross load from groundwater flows into main river (regional groundwater routine 2, see code ''​deepground''​ in [[start:​hype_file_reference:​info.txt&#​model_options|info.txt model options]])| |''​Rgrwmr''​|//​kg/​year//​|gross load from groundwater flows into main river (regional groundwater routine 2, see code ''​deepground''​ in [[start:​hype_file_reference:​info.txt&#​model_options|info.txt model options]])|
 +|''​Wtrans''​|//​kg/​year//​|load from water transfer (given in MgmtData) into main river|
 |''​Rgrvol''​|//​kg/​year//​|gross load from groundwater flows into outlet lake if [[start:​hype_file_reference:​geodata.txt|GeoData.txt variable //​grwolake//​]] > 0 (regional groundwater routine 1, see code ''​deepground''​ in [[start:​hype_file_reference:​info.txt&#​model_options|info.txt model options]])| |''​Rgrvol''​|//​kg/​year//​|gross load from groundwater flows into outlet lake if [[start:​hype_file_reference:​geodata.txt|GeoData.txt variable //​grwolake//​]] > 0 (regional groundwater routine 1, see code ''​deepground''​ in [[start:​hype_file_reference:​info.txt&#​model_options|info.txt model options]])|
 |''​A''​|//​kg/​year//​|load to local stream from all SLC classes| |''​A''​|//​kg/​year//​|load to local stream from all SLC classes|
-|''​B''​|//​kg/​year//​|load to local stream from all SLC classes and from rural household source local stream fraction (''​A''​ + ''​RuralB''​)| +|''​B''​|//​kg/​year//​|part of load to local stream from all SLC classes ​that bypasses the internal wetland| 
-|''​C''​|//​kg/​year//​|load in local stream (''​B''​) after including the effect of local wetlands (defined in [[start:​hype_file_reference:​geodata.txt|GeoData.txt]],​ see also [[start:​hype_model_description:​hype_human_water&#​constructed_wetlands|wetlands in model description]])| +|''​C''​|//​kg/​year//​|part of load to local stream from all SLC classes that goes into the internal wetland| 
-|''​D''​|//​kg/​year//​|load after passage of local streams but before internal lakes| +|''​D''​|//​kg/​year//​|load in fraction of load to local stream that has passed through internal wetland| 
-|''​E''​|//​kg/​year//​|load in fraction of local stream discharge that bypasses local lakes (see variable ''​icatch''​ in [[start:​hype_file_reference:​geodata.txt|GeoData.txt]]| +|''​E''​|//​kg/​year//​|load to local stream after internal wetlands| 
-|''​F''​|//​kg/​year//​|load in fraction of local stream discharge that passes through local lakes (see variable ''​icatch''​ in [[start:​hype_file_reference:​geodata.txt|GeoData.txt]]| +|''​F''​|//​kg/​year//​|load in local stream after internal wetlands ​and from rural household source local stream fraction (''​E''​ + ''​RuralB''​)| 
-|''​G''​|//​kg/​year//​|load in fraction of local stream discharge that has passed through local lakes| +|''​G''​|//​kg/​year//​|load in local stream (''​F''​) after including the effect of local river wetlands (defined in [[start:​hype_file_reference:​geodata.txt|GeoData.txt]],​ see also [[start:​hype_model_description:​hype_human_water&#​constructed_wetlands|wetlands in model description]])| 
-|''​H''​|//​kg/​year//​|net load in local stream after local lake passage (''​E''​ + ''​G''​)| +|''​H''​|//​kg/​year//​|load after passage of local streams but before internal lakes| 
-|''​I''​|//​kg/​year//​|total load to main river, consisting of: net load of local stream, upstream load, point source loads (''​Urban1-3''​),​ and groundwater load (''​Rgrwmr''​)| +|''​I''​|//​kg/​year//​|load in fraction of local stream discharge that bypasses local lakes (see variable ''​icatch''​ in [[start:​hype_file_reference:​geodata.txt|GeoData.txt]]| 
-|''​J''​|//​kg/​year//​|load to main river after including the effect of main river wetlands (defined in [[start:​hype_file_reference:​geodata.txt|GeoData.txt]],​ see also [[start:​hype_model_description:​hype_human_water&#​constructed_wetlands|wetlands in model description]])| +|''​J''​|//​kg/​year//​|load in fraction of local stream discharge that passes through local lakes (see variable ''​icatch''​ in [[start:​hype_file_reference:​geodata.txt|GeoData.txt]]| 
-|''​K''​|//​kg/​year//​|load in main river, after river passage ​and before ​outlet ​lake+|''​K''​|//​kg/​year//​|load in fraction of local stream discharge that has passed through local lakes| 
-|''​L''​|//​kg/​year//​|load in main river with added regional ground water sources (''​K''​ + ''​Rgrwmr''​)| +|''​L''​|//​kg/​year//​|net load in local stream after local lake passage (''​J''​ + ''​K''​)| 
-|''​M''​|//​kg/​year//​|net load in main river after outlet lake passage| +|''​MA''​|//​kg/​year//​|total load to main river, consisting of: net load of local stream, upstream load, point source loads (''​Urban1-3''​), ​water transfers (''​Wtrans''​) ​and groundwater load (''​Rgrwmr''​)| 
-|''​N''​|//​kg/​year//​|load in bifurcation branch (see [[start:​hype_file_reference:​branchdata.txt|BranchData.txt]]|+|''​M''​|//​kg/​year//​|total load to main river, consisting of: net load of local stream, upstream load, point source loads (''​Urban1-3''​),​ water transfers (''​Wtrans''​) and groundwater load (''​Rgrwmr''​),​ as well as abstractions for irrigation etc.| 
 +|''​N''​|//​kg/​year//​|load to main river after including the effect of main river wetlands (defined in [[start:​hype_file_reference:​geodata.txt|GeoData.txt]],​ see also [[start:​hype_model_description:​hype_human_water&#​constructed_wetlands|wetlands in model description]])| 
 +|''​O''​|//​kg/​year//​|load in main river, after river passage ​(river nutrient proesses)| 
 +|''​P''​|//​kg/​year//​|load in main river, after outlet ​wetland
 +|''​Q''​|//​kg/​year//​|load in main river with added inflow from lakebasins and regional ground water sources (''​Rgrwmr''​)| 
 +|''​R''​|//​kg/​year//​|net load in main river after outlet lake passage| 
 +|''​S''​|//​kg/​year//​|load in bifurcation branch (see [[start:​hype_file_reference:​branchdata.txt|BranchData.txt]])|
  
 </​sortable>​ </​sortable>​
start/hype_file_reference/yyyy_ss.txt.1427874711.txt.gz · Last modified: 2015/04/01 09:51 by cpers