The water balance model LARSIM: design, content and applications
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Format: | Buch |
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Sprache: | English |
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Freiburg i. Br.
Inst. für Hydrologie der Univ.
2006
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Schriftenreihe: | Freiburger Schriften zur Hydrologie
22 |
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | IV, 130 S. graph. Darst., Kt. |
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245 | 1 | 0 | |a The water balance model LARSIM |b design, content and applications |c Karl Ludwig and Manfred Bremicker (Eds.) |
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adam_text | FREIBURGER SCHRIFTEN ZUR HYDROLOGIE BAND 22 KARL LUDWIG & MANFRED
BREMICKER (EDS) THE WATER BALANCE MODEL LARSIM DESIGN, CONTENT AND
APPLICATIONS 2006 INSTITUT FUR HYDROLOGIE DER UNIVERSITAT FREIBURG I.
BR. CONTENTS SUMMARY IV 1 INTRODUCTION 1 2 CONCEPT OF THE WATER BALANCE
MODEL LARSIM 3 2.1 SCALES AND PROCESS DESCRIPTION IN HYDROLOGY 3 2.2
CONCEPT OF LARSIM FOR THE BALTEX PROJECT 4 3 COMPONENTS OF LARSIM 7 3.1
INTERCEPTION STORAGE 10 3.2 SNOW STORAGE 11 3.2.1 SNOW ACCUMULATION 12
3.2.2 POTENTIAL SNOWMELT ACCORDING TO THE SIMPLIFIED METHOD OF KNAUF 13
3.2.3 POTENTIAL SNOWMELT ACCORDING TO THE EXTENDED METHOD OF KNAUF 14
3.2.4 CALCULATION OF SNOW TEMPERATURE (COLD CONTENT OF THE SNOW COVER)
15 3.2.5 EVAPORATION OF MELT WATER 16 3.2.6 COMPACTION OF SNOW AND
EFFECTIVE SNOWMELT 17 3.3 SOIL STORAGE 19 3.3.1 SOIL STORAGE WITH THREE
RUNOFF COMPONENTS 19 3.3.2 EXTENDED SOIL WATER MODEL WITH FOUR RUNOFF
COMPONENTS 24 3.3.3 THE FOURTH RUNOFF COMPONENT WITHOUT EXTENSION OF THE
SOIL STORAGE MODEL 30 3.4 MODEL COMPONENTS FOR SPECIAL SURFACES 31 3.4.1
MODEL COMPONENTS FOR A WATER SURFACE 31 3.4.2 CONSIDERATION OF WATER
TEMPERATURE FOR EVAPORATION FROM FREE WATER SURFACES 32 3.4.3
HYDROLOGICAL MODEL COMPONENTS FOR DEVELOPED AREAS 33 3.5
EVAPOTRANSPIRATION 34 3.5.1 BASIC EQUATION FOR THE CALCULATION OF
EVAPOTRANSPIRATION 34 3.5.2 NET RADIATION 36 3.5.3 SOIL HEAT FLUX 38
3.5.4 AERODYNAMIC RESISTANCE 39 3.5.5 SURFACE RESISTANCE CONSIDERING
SOIL MOISTURE 41 3.6 RUNOFF CONCENTRATION IN THE CATCHMENT 45 3.7
CHANNEL ROUTING 46 3.8 LAKES, DAMS, RESERVOIRS AND DIVERSIONS .7?. 47
3.8.1 RETENTION IN LAKES AND UNCONTROLLED RESERVOIRS 47 3.8.2 RETENTION
BASINS WITH CONSTANT OUTFLOW 48 3.8.3 CONTROLLING RESERVOIR OUTFLOW BY A
DOWNSTREAM GAUGE 48 3.8.4 RESERVOIRS WITH SEASONAL OUTFLOW 49 3.8.5
DIVERSIONS AND INFLOWS 49 3.9 WATER TEMPERATURE 49 3.9.1 PHYSICALLY
BASED SIMULATION OF WATER TEMPERATURE 51 3.9.2 REGRESSION MODELS FOR THE
CALCULATION OF LOCAL WATER TEMPERATURES 56 4 DATA CONVERSION, PARAMETER
REGIONALISATION AND QUALITY MEASURES 58 4.1 CONVERSION OF MEASURED
METEOROLOGICAL DATA 58 4.1.1 CORRECTION OF ERRORS IN PRECIPITATION
MEASUREMENT 58 4.1.2 CONVERSION OF DEW POINT TEMPERATURE AND GLOBAL
RADIATION 61 4.1.3 TRANSFER OF POINT METEOROLOGICAL DATA INTO SPATIAL
DATA 62 4.2 REGIONALISATION OF HYDROLOGICAL MODEL PARAMETERS 65 4.2.1
REGIONALISATION OF MODEL PARAMETERS FOR SOIL STORAGE 66 4.2.2
REGIONALISATION OF MODEL PARAMETERS FOR RUNOFF CONCENTRATION 67 4.2.3
REGIONALISATION OF CHANNEL ROUTING PARAMETERS 69 4.2.4 APPLICATION OF
LARSIM FOR REGIONS OUTSIDE CENTRAL EUROPE 69 4.3 SIMULATION QUALITY
MEASURES 70 5 PROCEDURES FOR OPERATIONAL FORECAST 72 5.1 OPERATIONAL
ASPECTS 72 5.1.1 TREATMENT OF MISSING INPUT VALUES 72 5.1.2 ADAPTATION
OF THE MODEL STATE FOR STORAGE COMPONENTS 73 5.1.3 OPERATIONAL PROCESS
PROCEDURE 73 5.2 AUTOMATED MODEL OPTIMIZATION 74 5.2.1 USE OF MEASURED
DISCHARGE 74 5.2.2 OPTIMIZATION IN CASE OF MEAN AND LOW FLOW 74 5.2.3
OPTIMIZATION IN CASE OF FLOODS 76 5.2.4 ARIMA-MODEL 78 5.3 ADAPTATION OF
THE MODEL SNOW COVER 79 5.4 OPERATIONAL WATER TEMPERATURE FORECASTING 80
6 APPLICATIONS OF LARSIM . 81 6.1 IMPACT OF CLIMATE CHANGE ON WATER
BALANCE 81 6.1.1 GENERAL CONSIDERATIONS ON CLIMATE CHANGE AND HYDROLOGIC
CONDITIONS 81 II 6.1.2 WATER BALANCE MODELS FOR BADEN-WURTTEMBERG 82
6.1.3 MODEL CALIBRATION AND VERIFICATION 85 6.1.4 EFFECTS OF CLIMATE
CHANGE ON LOW FLOW 91 6.1.5 EFFECTS OF CLIMATE CHANGE ON FLOODS 92 6.1.6
REGIONAL CHANGE OF RUNOFF CHARACTERISTICS IN BADEN-WURTTEMBERG 94 6.2
ANALYSIS OF RUNOFF FOR THE BALTIC SEA CATCHMENT 95 6.2.1 INTRODUCTION TO
THE BALTEX APPLICATION 95 6.2.2 VALIDATION OF THE INTEGRATED AND
NON-INTEGRATED MODEL 98 6.2.3 CONCLUSIONS AND OUTLOOK FOR THE BALTIMOS
SYSTEM 101 6.3 EFFECTS OF CONSERVATION TILLAGE ON STORM FLOW 101 6.3.1
INTRODUCTION 101 6.3.2 MODELLING APPROACH 102 6.3.3 RESULTS OF TILLAGE
CONVERSION SCENARIOS 105 6.3.4 DISCUSSION AND CONCLUSIONS FOR TILLAGE
CONVERSION SCENARIOS 108 6.4 OPERATIONAL LARSIM APPLICATION IN THE FLOOD
FORECAST CENTRE OF BADEN-WURTTEMBERG 109 6.4.1 MODEL CONFIGURATION 109
6.4.2 FLOOD FORECAST AND EARLY WARNING ILL 6.4.3 LOW-FLOW FORECASTS 113
6.4.4 FORECASTS OF WATER TEMPERATURE INTHENECKAR 116 6.4.5 DESCRIPTION
OF AREA DISTRIBUTION OF WATER BALANCE VALUES 117 6.4.6 FUTURE ASPECTS
118 LITERATURE 133 III
|
adam_txt |
FREIBURGER SCHRIFTEN ZUR HYDROLOGIE BAND 22 KARL LUDWIG & MANFRED
BREMICKER (EDS) THE WATER BALANCE MODEL LARSIM DESIGN, CONTENT AND
APPLICATIONS 2006 INSTITUT FUR HYDROLOGIE DER UNIVERSITAT FREIBURG I.
BR. CONTENTS SUMMARY IV 1 INTRODUCTION 1 2 CONCEPT OF THE WATER BALANCE
MODEL LARSIM 3 2.1 SCALES AND PROCESS DESCRIPTION IN HYDROLOGY 3 2.2
CONCEPT OF LARSIM FOR THE BALTEX PROJECT 4 3 COMPONENTS OF LARSIM 7 3.1
INTERCEPTION STORAGE 10 3.2 SNOW STORAGE 11 3.2.1 SNOW ACCUMULATION 12
3.2.2 POTENTIAL SNOWMELT ACCORDING TO THE SIMPLIFIED METHOD OF KNAUF 13
3.2.3 POTENTIAL SNOWMELT ACCORDING TO THE EXTENDED METHOD OF KNAUF 14
3.2.4 CALCULATION OF SNOW TEMPERATURE (COLD CONTENT OF THE SNOW COVER)
15 3.2.5 EVAPORATION OF MELT WATER 16 3.2.6 COMPACTION OF SNOW AND
EFFECTIVE SNOWMELT 17 3.3 SOIL STORAGE 19 3.3.1 SOIL STORAGE WITH THREE
RUNOFF COMPONENTS 19 3.3.2 EXTENDED SOIL WATER MODEL WITH FOUR RUNOFF
COMPONENTS 24 3.3.3 THE FOURTH RUNOFF COMPONENT WITHOUT EXTENSION OF THE
SOIL STORAGE MODEL 30 3.4 MODEL COMPONENTS FOR SPECIAL SURFACES 31 3.4.1
MODEL COMPONENTS FOR A WATER SURFACE 31 3.4.2 CONSIDERATION OF WATER
TEMPERATURE FOR EVAPORATION FROM FREE WATER SURFACES 32 3.4.3
HYDROLOGICAL MODEL COMPONENTS FOR DEVELOPED AREAS 33 3.5
EVAPOTRANSPIRATION 34 3.5.1 BASIC EQUATION FOR THE CALCULATION OF
EVAPOTRANSPIRATION 34 3.5.2 NET RADIATION 36 3.5.3 SOIL HEAT FLUX 38
3.5.4 AERODYNAMIC RESISTANCE 39 3.5.5 SURFACE RESISTANCE CONSIDERING
SOIL MOISTURE 41 3.6 RUNOFF CONCENTRATION IN THE CATCHMENT 45 3.7
CHANNEL ROUTING 46 3.8 LAKES, DAMS, RESERVOIRS AND DIVERSIONS .7?. 47
3.8.1 RETENTION IN LAKES AND UNCONTROLLED RESERVOIRS 47 3.8.2 RETENTION
BASINS WITH CONSTANT OUTFLOW 48 3.8.3 CONTROLLING RESERVOIR OUTFLOW BY A
DOWNSTREAM GAUGE 48 3.8.4 RESERVOIRS WITH SEASONAL OUTFLOW 49 3.8.5
DIVERSIONS AND INFLOWS 49 3.9 WATER TEMPERATURE 49 3.9.1 PHYSICALLY
BASED SIMULATION OF WATER TEMPERATURE 51 3.9.2 REGRESSION MODELS FOR THE
CALCULATION OF LOCAL WATER TEMPERATURES 56 4 DATA CONVERSION, PARAMETER
REGIONALISATION AND QUALITY MEASURES 58 4.1 CONVERSION OF MEASURED
METEOROLOGICAL DATA 58 4.1.1 CORRECTION OF ERRORS IN PRECIPITATION
MEASUREMENT 58 4.1.2 CONVERSION OF DEW POINT TEMPERATURE AND GLOBAL
RADIATION 61 4.1.3 TRANSFER OF POINT METEOROLOGICAL DATA INTO SPATIAL
DATA 62 4.2 REGIONALISATION OF HYDROLOGICAL MODEL PARAMETERS 65 4.2.1
REGIONALISATION OF MODEL PARAMETERS FOR SOIL STORAGE 66 4.2.2
REGIONALISATION OF MODEL PARAMETERS FOR RUNOFF CONCENTRATION 67 4.2.3
REGIONALISATION OF CHANNEL ROUTING PARAMETERS 69 4.2.4 APPLICATION OF
LARSIM FOR REGIONS OUTSIDE CENTRAL EUROPE 69 4.3 SIMULATION QUALITY
MEASURES 70 5 PROCEDURES FOR OPERATIONAL FORECAST 72 5.1 OPERATIONAL
ASPECTS 72 5.1.1 TREATMENT OF MISSING INPUT VALUES 72 5.1.2 ADAPTATION
OF THE MODEL STATE FOR STORAGE COMPONENTS 73 5.1.3 OPERATIONAL PROCESS
PROCEDURE 73 5.2 AUTOMATED MODEL OPTIMIZATION 74 5.2.1 USE OF MEASURED
DISCHARGE 74 5.2.2 OPTIMIZATION IN CASE OF MEAN AND LOW FLOW 74 5.2.3
OPTIMIZATION IN CASE OF FLOODS 76 5.2.4 ARIMA-MODEL 78 5.3 ADAPTATION OF
THE MODEL SNOW COVER 79 5.4 OPERATIONAL WATER TEMPERATURE FORECASTING 80
6 APPLICATIONS OF LARSIM . 81 6.1 IMPACT OF CLIMATE CHANGE ON WATER
BALANCE 81 6.1.1 GENERAL CONSIDERATIONS ON CLIMATE CHANGE AND HYDROLOGIC
CONDITIONS 81 II 6.1.2 WATER BALANCE MODELS FOR BADEN-WURTTEMBERG 82
6.1.3 MODEL CALIBRATION AND VERIFICATION 85 6.1.4 EFFECTS OF CLIMATE
CHANGE ON LOW FLOW 91 6.1.5 EFFECTS OF CLIMATE CHANGE ON FLOODS 92 6.1.6
REGIONAL CHANGE OF RUNOFF CHARACTERISTICS IN BADEN-WURTTEMBERG 94 6.2
ANALYSIS OF RUNOFF FOR THE BALTIC SEA CATCHMENT 95 6.2.1 INTRODUCTION TO
THE BALTEX APPLICATION 95 6.2.2 VALIDATION OF THE INTEGRATED AND
NON-INTEGRATED MODEL 98 6.2.3 CONCLUSIONS AND OUTLOOK FOR THE BALTIMOS
SYSTEM 101 6.3 EFFECTS OF CONSERVATION TILLAGE ON STORM FLOW 101 6.3.1
INTRODUCTION 101 6.3.2 MODELLING APPROACH 102 6.3.3 RESULTS OF TILLAGE
CONVERSION SCENARIOS 105 6.3.4 DISCUSSION AND CONCLUSIONS FOR TILLAGE
CONVERSION SCENARIOS 108 6.4 OPERATIONAL LARSIM APPLICATION IN THE FLOOD
FORECAST CENTRE OF BADEN-WURTTEMBERG 109 6.4.1 MODEL CONFIGURATION 109
6.4.2 FLOOD FORECAST AND EARLY WARNING ILL 6.4.3 LOW-FLOW FORECASTS 113
6.4.4 FORECASTS OF WATER TEMPERATURE INTHENECKAR 116 6.4.5 DESCRIPTION
OF AREA DISTRIBUTION OF WATER BALANCE VALUES 117 6.4.6 FUTURE ASPECTS
118 LITERATURE 133 III |
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spelling | The water balance model LARSIM design, content and applications Karl Ludwig and Manfred Bremicker (Eds.) Freiburg i. Br. Inst. für Hydrologie der Univ. 2006 IV, 130 S. graph. Darst., Kt. txt rdacontent n rdamedia nc rdacarrier Freiburger Schriften zur Hydrologie 22 Wasserbilanz (DE-588)4189181-8 gnd rswk-swf Modell (DE-588)4039798-1 gnd rswk-swf Wasserbilanz (DE-588)4189181-8 s Modell (DE-588)4039798-1 s b DE-604 Ludwig, Karl Sonstige oth Bremicker, Manfred Sonstige oth Freiburger Schriften zur Hydrologie 22 (DE-604)BV011313464 22 GBV Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=015485415&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | The water balance model LARSIM design, content and applications Freiburger Schriften zur Hydrologie Wasserbilanz (DE-588)4189181-8 gnd Modell (DE-588)4039798-1 gnd |
subject_GND | (DE-588)4189181-8 (DE-588)4039798-1 |
title | The water balance model LARSIM design, content and applications |
title_auth | The water balance model LARSIM design, content and applications |
title_exact_search | The water balance model LARSIM design, content and applications |
title_exact_search_txtP | The water balance model LARSIM design, content and applications |
title_full | The water balance model LARSIM design, content and applications Karl Ludwig and Manfred Bremicker (Eds.) |
title_fullStr | The water balance model LARSIM design, content and applications Karl Ludwig and Manfred Bremicker (Eds.) |
title_full_unstemmed | The water balance model LARSIM design, content and applications Karl Ludwig and Manfred Bremicker (Eds.) |
title_short | The water balance model LARSIM |
title_sort | the water balance model larsim design content and applications |
title_sub | design, content and applications |
topic | Wasserbilanz (DE-588)4189181-8 gnd Modell (DE-588)4039798-1 gnd |
topic_facet | Wasserbilanz Modell |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=015485415&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
volume_link | (DE-604)BV011313464 |
work_keys_str_mv | AT ludwigkarl thewaterbalancemodellarsimdesigncontentandapplications AT bremickermanfred thewaterbalancemodellarsimdesigncontentandapplications |