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UNIVERSIDAD NACIONAL DEL
ALTIPLANO
FACULTAD DE INGENIERÌA AGRÌCOLA
CURSO: DISEÑO DE SISTEMAS DE RIEGO I
DOCENTE: ING. ABNER GUIDO HUISA HUMPIRI
INTEGRANTES:
- DAISY AYDEE MONTES MENDOZA
- SANDRA MARAZA QUISPE
- MARILIN MILAGROS RAMOS MAMANI
- EVA VILCA MULLISACA
- IVAN JUNIOR CRUZ MARAZA
PUNO - PERÙ
1. INTRODUCCION
La cuenca del río Coata está ubicado en el departamento de Puno, al sur de
Perú; éste podría verse afectado, ante un potencial cambio futuro principalmente
en las condiciones medias del clima, por lo que es de sumo interés inferir qué
cambios se presentarían en el caudal del río Coata, fuente indispensable
dedicada en mayor medida al sector agropecuario.
2. OBJETIVOS
2.1 Objetivo General
 Identificar y calcular la oferta hídrica para una captación en un
determinado punto.
2.2 Objetivos específicos
 Calcular la precipitación media en las cuencas por el método Kriging.
 Calibrar y validar el modelo hidrológico GR2M.
 Generar caudales medios mensuales en la captación designada.
3. PROCESO DE EVALUACION
3.1 PUNTO GENERALES DE LA CUENCA PRINCIPAL
 CUENCA COATA
Datos principales:
AREA: 4550.06 𝒌𝒎 𝟐
PERIMETRO: 464.65 km
 MICRO CUENCA PALCA
DATOS PRICIPALES:
AREA: 644.87 𝒌𝒎 𝟐
3.2 DATOS DE LAS ESTACIONES CON LAS CUALES TRABAJAMOS
Id_Station Type_Meteo Nom Pays Zone SousZone Bassin Latitude Longitude Altitude Activite
110761 CO Llalli Puno melgar llally ramis -14.937002 -70.885997 3980 1
114038 CO Ayaviri Puno melgar ayaviri ramis -14.873000 -70.592997 3928 1
115046 CO pucara Puno lampa pucara ramis -15.045055 -70.366638 3900 1
115027 CO pampahuta Puno lampa paratia coata -15.483527 -70.675777 4400 1
100081 CO lampa Puno lampa lampa coata -15.361158 -70.374200 3892 1
115060 CO juliaca Puno sanroman juliaca coata -15.444117 -70.207866 3826 1
100110 CO puno Puno puno puno titicaca -15.826002 -70.012005 3820 1
7401 CO quillisani Puno lampa paratia coata -15.383333 -70.750000 4600 1
3.3 Calculamos la precipitación media en las cuencas por el método
Kriging
AÑO ENE FEB MAR ABR MAY JUN JUL AGO SET OCT NOV DIC PROM
19970 177.4 120.4 151.2 50.9 12.4 1.2 0.3 3.4 18.6 25.8 14.7 193.7 64.2
19971 131.0 240.4 66.6 25.3 1.9 2.6 0.0 7.1 0.6 18.9 44.8 155.7 57.9
19972 262.6 93.5 128.5 36.5 1.3 0.4 1.1 4.5 29.0 38.6 61.0 87.4 62.0
19973 233.3 189.6 156.8 87.5 17.9 0.6 9.2 10.1 46.2 51.0 68.8 99.5 80.9
19974 225.9 202.0 100.7 45.3 2.3 10.0 3.2 61.7 16.7 24.1 25.4 99.1 68.0
19975 188.5 209.9 145.4 28.8 28.4 3.1 0.0 1.4 10.7 44.9 37.3 148.0 70.5
19976 200.3 113.3 143.6 22.8 24.2 8.1 3.2 18.0 72.1 3.2 11.1 97.4 59.8
19977 93.9 195.8 168.7 12.3 1.6 0.2 2.7 0.8 24.8 43.1 109.6 99.8 62.8
19978 316.1 144.9 107.1 81.6 1.4 1.6 0.4 4.0 16.9 37.5 140.6 201.1 87.8
19979 216.1 109.9 139.6 50.0 3.1 0.3 3.9 7.9 2.6 57.8 88.2 141.2 68.4
19980 121.8 82.1 173.2 12.7 7.0 0.1 2.6 8.5 50.6 92.5 44.1 60.2 54.6
19981 183.9 166.0 161.1 68.8 2.0 0.9 0.3 44.0 32.0 56.6 64.4 150.4 77.5
19982 184.3 100.2 134.9 75.2 0.7 1.6 0.0 17.3 64.4 80.6 169.8 35.3 72.0
19983 60.6 43.4 29.6 24.0 8.0 4.5 0.4 3.3 15.6 23.0 19.1 55.1 23.9
19984 215.2 206.2 100.6 39.1 10.8 3.6 2.2 14.7 5.1 159.2 232.8 227.6 101.4
19985 180.4 282.5 135.3 174.7 26.5 21.2 0.1 5.1 28.8 33.4 157.7 178.2 102.0
19986 138.8 245.7 209.7 83.8 9.3 0.1 0.9 16.7 38.0 7.7 36.5 162.9 79.2
19987 167.3 99.9 80.4 30.2 5.7 8.9 24.6 5.7 4.2 34.2 118.8 90.6 55.9
19988 193.6 99.2 203.4 101.0 11.5 0.0 1.5 4.8 8.3 32.9 24.0 98.7 64.9
19989 157.4 96.0 122.6 80.6 4.2 7.5 1.6 11.6 7.4 22.3 46.7 82.7 53.4
19990 148.3 92.1 66.9 31.1 10.7 38.4 0.4 9.3 5.9 100.7 107.8 95.1 58.9
19991 165.0 134.4 132.7 60.1 17.6 39.3 3.3 3.6 12.2 45.0 32.8 98.6 62.1
19992 133.2 117.8 49.6 23.5 0.6 5.6 0.5 58.8 2.0 38.3 59.2 105.2 49.5
19993 200.5 56.5 138.7 61.1 6.0 3.4 0.4 24.2 15.3 100.1 110.9 161.6 73.2
19994 185.5 164.1 140.1 90.9 8.3 1.4 0.3 1.7 7.6 15.9 89.2 136.1 70.1
19995 119.9 124.3 115.4 27.2 1.4 0.6 0.6 5.0 16.4 17.3 69.0 119.6 51.4
19996 212.1 137.7 99.2 45.7 17.4 0.6 0.8 19.4 17.1 14.1 81.5 189.2 69.6
19997 186.4 191.1 156.0 66.0 5.6 0.4 0.5 15.5 43.5 42.8 114.0 110.5 77.7
19998 136.4 161.9 114.6 35.1 0.3 2.7 0.4 2.2 0.5 48.1 94.2 55.4 54.3
19999 139.3 142.2 165.2 122.3 11.6 1.7 0.8 3.7 26.4 109.4 22.2 95.8 70.1
20000 180.4 205.2 151.1 35.6 8.1 5.2 1.5 12.7 11.2 94.6 15.1 127.7 70.7
20001 276.2 206.5 144.0 58.5 17.3 3.2 3.9 14.7 21.1 42.0 44.7 81.8 76.2
20002 147.0 182.8 135.5 97.6 20.9 3.0 22.7 9.6 16.8 95.9 94.7 175.2 83.5
20003 206.2 155.1 163.5 28.4 7.7 3.8 0.4 4.2 25.3 23.7 23.0 148.2 65.8
20004 245.1 166.5 94.0 53.0 4.6 2.4 8.7 18.6 28.2 18.0 39.2 121.6 66.7
20005 102.5 268.5 115.5 55.7 0.4 0.6 0.5 4.2 13.6 52.9 87.7 141.1 70.3
PRECIPITACIONMEDIAAREALDELASUBCUENCAPORELMETODODEKRIGING
3.4 Calibrar y validar el modelo hidrológico GR2M.
CALIBRACION DEL G2MM DE LA CUENCA COATA
Station name
Cuenca
Coata
Catchment area (km²) 4550.06
Model parameters Transformed Real
x1: Capacity of the production store
(mm) 5.01 149.84
x2: Water exchange coefficient (mm) 0.40 0.40
Initial values
Initial level S0 in prod. store (max.: x1 mm) 74.92
Initial level R0 in routing store (max.: 60 mm) 30
Period
Length of the warm-up period (months) 12
Length of the test period (months) 276
Start date 01/1971
End date 01/1994
Mean observed rainfall (mm/month) 64.392
Mean observed PE (mm/month) 99.217
Mean observed streamflow (mm/month) 5.328
Mean root square transformed streamflow 1.800
Mean logarithmic transformed streamflow 0.704
Efficiency criteria (%)
Nash(Q) 84.99
Nash(VQ) 78.1
Nash(ln(Q)) 39.0
Bias 82.9
GRAFICO DEL MODELAMIENTO HIDROLÓGICO DELA CUENCA COATA
DIAGRAMA DE DISPERCION DE CAUDALES OBSERVADO Y SIMULADO
3.5 VALIDACION DEL G2MM DE LA CUENCA COATA
Station name
Cuenca
Coata
Catchment area (km²) 4550.06
Model parameters Transformed Real
x1: Capacity of the production store
(mm) 5.01 149.84
x2: Water exchange coefficient (mm) 0.40 0.40
Initial values
Initial level S0 in prod. store (max.: x1 mm) 74.92
Initial level R0 in routing store (max.: 60 mm) 30
Period
Length of the warm-up period (months) 12
Length of the test period (months) 132
Start date 01/1995
End date 01/2006
Mean observed rainfall (mm/month) 67.835
Mean observed PE (mm/month) 99.217
Mean observed streamflow (mm/month) 6.043
Mean root square transformed streamflow 1.925
Mean logarithmic transformed streamflow 0.827
Efficiency criteria (%)
Nash(Q) 89.55
Nash(VQ) 79.7
Nash(ln(Q)) 47.1
Bias 82.9
GRAFICO DEL MODELAMIENTO HIDROLÓGICO DE LA CUENCA COATA
DIAGRAMA DE DISPERCION DE CAUDALES OBSERVADO Y SIMULADO
y = 1.2009x + 4.999
R² = 0.7757
0
10
20
30
40
50
60
70
80
0 10 20 30 40
Simalatedflow(mm/month)
Observed flow (mm/month)
3.6 GENERACION DE CAUDALES DE LA MICRO-CUENCA
Station name microcuenca Palca
Catchment area (km²) 644.87
Model parameters Transformed Real
x1: Capacity of the production store (mm) 5.01 149.84
x2: Water exchange coefficient (mm) 0.40 0.40
Initial values
Initial level S0 in prod. store (max.: x1 mm) 74.92
Initial level R0 in routing store (max.: 60 mm) 30
Period
Length of the warm-up period (months) 12
Length of the test period (months) 276
Start date 01/1971
End date 01/1994
Mean observed rainfall (mm/month) 67.243
Mean observed PE (mm/month) 99.217
Mean observed streamflow (mm/month) 0.000
Mean root square transformed streamflow 0.000
Mean logarithmic transformed streamflow #¡NUM!
Efficiency criteria (%)
Nash(Q) #¡DIV/0!
Nash(VQ) #¡DIV/0!
Nash(ln(Q)) #¡NUM!
Bias #¡DIV/0!
3.7 Generamosloscaudalesmedios mensualesenla captacióndesignada.
4. RESULTADOS
ESATDISTICAS DE CALIBRACION Y VALIDACION DEL MODELO HIDROLOICO
PERIODO N° Meses
Parámetro Método de bondad
de Ajuste-Nash(%)
X1 X2
INICIALIZACION 1970 12
CALIBRACION 1971-1994 276 5.01 0.4 84.99
VALIDACION 1995-2006 132 89.55
AÑO ENE FEB MAR ABR MAY JUN JUL AGO SET OCT NOV DIC PROM
1970 6.8 3.3 3.7 0.8 0.1 0.0 0.0 0.0 0.0 0.0 0.0 2.1 1.4
1971 2.2 9.5 1.5 0.2 0.0 0.0 0.0 0.0 0.0 0.0 0.0 1.1 1.2
1972 9.0 2.3 2.4 0.4 0.1 0.0 0.0 0.0 0.0 0.0 0.0 0.1 1.2
1973 5.6 7.2 4.9 1.7 0.2 0.0 0.0 0.0 0.0 0.0 0.1 0.3 1.7
1974 5.5 8.0 2.4 0.5 0.1 0.0 0.0 0.0 0.0 0.0 0.0 0.1 1.4
1975 3.2 7.9 4.4 0.6 0.1 0.0 0.0 0.0 0.0 0.0 0.0 0.9 1.4
1976 4.8 2.6 3.2 0.4 0.1 0.0 0.0 0.0 0.0 0.0 0.0 0.1 0.9
1977 0.4 4.7 5.2 0.5 0.1 0.0 0.0 0.0 0.0 0.0 0.3 0.5 1.0
1978 12.1 5.1 2.3 1.1 0.1 0.0 0.0 0.0 0.0 0.0 0.7 4.4 2.2
1979 7.2 2.9 3.0 0.7 0.1 0.0 0.0 0.0 0.0 0.0 0.1 1.2 1.3
1980 1.5 0.9 3.7 0.4 0.1 0.0 0.0 0.0 0.0 0.1 0.1 0.1 0.6
1981 2.5 4.8 4.7 1.2 0.1 0.0 0.0 0.0 0.0 0.0 0.0 1.2 1.2
1982 4.2 2.1 2.6 1.0 0.1 0.0 0.0 0.0 0.0 0.1 2.2 0.3 1.1
1983 0.1 0.1 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0
1984 3.7 7.6 2.4 0.4 0.1 0.0 0.0 0.0 0.0 0.9 6.7 7.9 2.5
1985 5.6 14.3 4.4 5.5 0.6 0.1 0.0 0.0 0.0 0.0 1.1 3.5 2.9
1986 2.8 10.2 8.6 2.0 0.2 0.0 0.0 0.0 0.0 0.0 0.0 1.2 2.1
1987 3.3 1.9 0.9 0.2 0.0 0.0 0.0 0.0 0.0 0.0 0.3 0.4 0.6
1988 3.8 1.9 6.1 2.3 0.3 0.0 0.0 0.0 0.0 0.0 0.0 0.1 1.2
1989 1.9 1.4 1.9 1.0 0.1 0.0 0.0 0.0 0.0 0.0 0.0 0.1 0.5
1990 1.4 1.2 0.5 0.1 0.0 0.0 0.0 0.0 0.0 0.1 0.5 0.5 0.4
1991 2.6 3.1 2.9 0.8 0.1 0.0 0.0 0.0 0.0 0.0 0.0 0.2 0.8
1992 1.2 1.8 0.5 0.1 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.3 0.3
1993 4.1 0.9 2.1 0.7 0.1 0.0 0.0 0.0 0.0 0.1 0.6 2.4 0.9
1994 4.7 5.2 3.7 1.6 0.2 0.0 0.0 0.0 0.0 0.0 0.1 1.0 1.4
1995 1.4 2.1 2.0 0.3 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.5 0.5
1996 5.1 3.7 1.8 0.4 0.1 0.0 0.0 0.0 0.0 0.0 0.0 2.7 1.2
1997 4.9 7.0 4.8 1.1 0.1 0.0 0.0 0.0 0.0 0.0 0.3 0.7 1.6
1998 1.7 4.1 2.4 0.4 0.1 0.0 0.0 0.0 0.0 0.0 0.1 0.1 0.7
1999 1.1 2.8 4.4 2.9 0.3 0.0 0.0 0.0 0.0 0.2 0.0 0.2 1.0
2000 2.8 7.2 4.7 0.6 0.1 0.0 0.0 0.0 0.0 0.1 0.0 0.5 1.3
2001 9.3 9.0 4.4 1.0 0.1 0.0 0.0 0.0 0.0 0.0 0.0 0.1 2.0
2002 1.4 5.2 3.5 1.8 0.2 0.0 0.0 0.0 0.0 0.1 0.3 2.6 1.3
2003 6.1 5.0 4.9 0.6 0.1 0.0 0.0 0.0 0.0 0.0 0.0 0.8 1.4
2004 7.5 5.7 2.0 0.5 0.1 0.0 0.0 0.0 0.0 0.0 0.0 0.4 1.4
2005 0.7 10.5 3.3 0.8 0.1 0.0 0.0 0.0 0.0 0.0 0.1 1.2 1.4
CAUDALES MEDIOS MENSUALES GENERADOS EN EL GR2M EN EL PUNTO DE CAPTACION DE LA MICROCUENCA PALCA (m3/s)
5. ANEXOS
IMAGEN N°1: Procesamiento de valoresmedios sobre la cuenca coata por
el método kriging.
IMAGEN N° 2: Area de la cuenca coata

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Informe final riegos i

  • 1. UNIVERSIDAD NACIONAL DEL ALTIPLANO FACULTAD DE INGENIERÌA AGRÌCOLA CURSO: DISEÑO DE SISTEMAS DE RIEGO I DOCENTE: ING. ABNER GUIDO HUISA HUMPIRI INTEGRANTES: - DAISY AYDEE MONTES MENDOZA - SANDRA MARAZA QUISPE - MARILIN MILAGROS RAMOS MAMANI - EVA VILCA MULLISACA - IVAN JUNIOR CRUZ MARAZA PUNO - PERÙ
  • 2. 1. INTRODUCCION La cuenca del río Coata está ubicado en el departamento de Puno, al sur de Perú; éste podría verse afectado, ante un potencial cambio futuro principalmente en las condiciones medias del clima, por lo que es de sumo interés inferir qué cambios se presentarían en el caudal del río Coata, fuente indispensable dedicada en mayor medida al sector agropecuario.
  • 3. 2. OBJETIVOS 2.1 Objetivo General  Identificar y calcular la oferta hídrica para una captación en un determinado punto. 2.2 Objetivos específicos  Calcular la precipitación media en las cuencas por el método Kriging.  Calibrar y validar el modelo hidrológico GR2M.  Generar caudales medios mensuales en la captación designada. 3. PROCESO DE EVALUACION 3.1 PUNTO GENERALES DE LA CUENCA PRINCIPAL  CUENCA COATA Datos principales: AREA: 4550.06 𝒌𝒎 𝟐 PERIMETRO: 464.65 km  MICRO CUENCA PALCA DATOS PRICIPALES: AREA: 644.87 𝒌𝒎 𝟐 3.2 DATOS DE LAS ESTACIONES CON LAS CUALES TRABAJAMOS Id_Station Type_Meteo Nom Pays Zone SousZone Bassin Latitude Longitude Altitude Activite 110761 CO Llalli Puno melgar llally ramis -14.937002 -70.885997 3980 1 114038 CO Ayaviri Puno melgar ayaviri ramis -14.873000 -70.592997 3928 1 115046 CO pucara Puno lampa pucara ramis -15.045055 -70.366638 3900 1 115027 CO pampahuta Puno lampa paratia coata -15.483527 -70.675777 4400 1 100081 CO lampa Puno lampa lampa coata -15.361158 -70.374200 3892 1 115060 CO juliaca Puno sanroman juliaca coata -15.444117 -70.207866 3826 1 100110 CO puno Puno puno puno titicaca -15.826002 -70.012005 3820 1 7401 CO quillisani Puno lampa paratia coata -15.383333 -70.750000 4600 1
  • 4. 3.3 Calculamos la precipitación media en las cuencas por el método Kriging AÑO ENE FEB MAR ABR MAY JUN JUL AGO SET OCT NOV DIC PROM 19970 177.4 120.4 151.2 50.9 12.4 1.2 0.3 3.4 18.6 25.8 14.7 193.7 64.2 19971 131.0 240.4 66.6 25.3 1.9 2.6 0.0 7.1 0.6 18.9 44.8 155.7 57.9 19972 262.6 93.5 128.5 36.5 1.3 0.4 1.1 4.5 29.0 38.6 61.0 87.4 62.0 19973 233.3 189.6 156.8 87.5 17.9 0.6 9.2 10.1 46.2 51.0 68.8 99.5 80.9 19974 225.9 202.0 100.7 45.3 2.3 10.0 3.2 61.7 16.7 24.1 25.4 99.1 68.0 19975 188.5 209.9 145.4 28.8 28.4 3.1 0.0 1.4 10.7 44.9 37.3 148.0 70.5 19976 200.3 113.3 143.6 22.8 24.2 8.1 3.2 18.0 72.1 3.2 11.1 97.4 59.8 19977 93.9 195.8 168.7 12.3 1.6 0.2 2.7 0.8 24.8 43.1 109.6 99.8 62.8 19978 316.1 144.9 107.1 81.6 1.4 1.6 0.4 4.0 16.9 37.5 140.6 201.1 87.8 19979 216.1 109.9 139.6 50.0 3.1 0.3 3.9 7.9 2.6 57.8 88.2 141.2 68.4 19980 121.8 82.1 173.2 12.7 7.0 0.1 2.6 8.5 50.6 92.5 44.1 60.2 54.6 19981 183.9 166.0 161.1 68.8 2.0 0.9 0.3 44.0 32.0 56.6 64.4 150.4 77.5 19982 184.3 100.2 134.9 75.2 0.7 1.6 0.0 17.3 64.4 80.6 169.8 35.3 72.0 19983 60.6 43.4 29.6 24.0 8.0 4.5 0.4 3.3 15.6 23.0 19.1 55.1 23.9 19984 215.2 206.2 100.6 39.1 10.8 3.6 2.2 14.7 5.1 159.2 232.8 227.6 101.4 19985 180.4 282.5 135.3 174.7 26.5 21.2 0.1 5.1 28.8 33.4 157.7 178.2 102.0 19986 138.8 245.7 209.7 83.8 9.3 0.1 0.9 16.7 38.0 7.7 36.5 162.9 79.2 19987 167.3 99.9 80.4 30.2 5.7 8.9 24.6 5.7 4.2 34.2 118.8 90.6 55.9 19988 193.6 99.2 203.4 101.0 11.5 0.0 1.5 4.8 8.3 32.9 24.0 98.7 64.9 19989 157.4 96.0 122.6 80.6 4.2 7.5 1.6 11.6 7.4 22.3 46.7 82.7 53.4 19990 148.3 92.1 66.9 31.1 10.7 38.4 0.4 9.3 5.9 100.7 107.8 95.1 58.9 19991 165.0 134.4 132.7 60.1 17.6 39.3 3.3 3.6 12.2 45.0 32.8 98.6 62.1 19992 133.2 117.8 49.6 23.5 0.6 5.6 0.5 58.8 2.0 38.3 59.2 105.2 49.5 19993 200.5 56.5 138.7 61.1 6.0 3.4 0.4 24.2 15.3 100.1 110.9 161.6 73.2 19994 185.5 164.1 140.1 90.9 8.3 1.4 0.3 1.7 7.6 15.9 89.2 136.1 70.1 19995 119.9 124.3 115.4 27.2 1.4 0.6 0.6 5.0 16.4 17.3 69.0 119.6 51.4 19996 212.1 137.7 99.2 45.7 17.4 0.6 0.8 19.4 17.1 14.1 81.5 189.2 69.6 19997 186.4 191.1 156.0 66.0 5.6 0.4 0.5 15.5 43.5 42.8 114.0 110.5 77.7 19998 136.4 161.9 114.6 35.1 0.3 2.7 0.4 2.2 0.5 48.1 94.2 55.4 54.3 19999 139.3 142.2 165.2 122.3 11.6 1.7 0.8 3.7 26.4 109.4 22.2 95.8 70.1 20000 180.4 205.2 151.1 35.6 8.1 5.2 1.5 12.7 11.2 94.6 15.1 127.7 70.7 20001 276.2 206.5 144.0 58.5 17.3 3.2 3.9 14.7 21.1 42.0 44.7 81.8 76.2 20002 147.0 182.8 135.5 97.6 20.9 3.0 22.7 9.6 16.8 95.9 94.7 175.2 83.5 20003 206.2 155.1 163.5 28.4 7.7 3.8 0.4 4.2 25.3 23.7 23.0 148.2 65.8 20004 245.1 166.5 94.0 53.0 4.6 2.4 8.7 18.6 28.2 18.0 39.2 121.6 66.7 20005 102.5 268.5 115.5 55.7 0.4 0.6 0.5 4.2 13.6 52.9 87.7 141.1 70.3 PRECIPITACIONMEDIAAREALDELASUBCUENCAPORELMETODODEKRIGING
  • 5. 3.4 Calibrar y validar el modelo hidrológico GR2M. CALIBRACION DEL G2MM DE LA CUENCA COATA Station name Cuenca Coata Catchment area (km²) 4550.06 Model parameters Transformed Real x1: Capacity of the production store (mm) 5.01 149.84 x2: Water exchange coefficient (mm) 0.40 0.40 Initial values Initial level S0 in prod. store (max.: x1 mm) 74.92 Initial level R0 in routing store (max.: 60 mm) 30 Period Length of the warm-up period (months) 12 Length of the test period (months) 276 Start date 01/1971 End date 01/1994 Mean observed rainfall (mm/month) 64.392 Mean observed PE (mm/month) 99.217 Mean observed streamflow (mm/month) 5.328 Mean root square transformed streamflow 1.800 Mean logarithmic transformed streamflow 0.704 Efficiency criteria (%) Nash(Q) 84.99 Nash(VQ) 78.1 Nash(ln(Q)) 39.0 Bias 82.9
  • 6. GRAFICO DEL MODELAMIENTO HIDROLÓGICO DELA CUENCA COATA DIAGRAMA DE DISPERCION DE CAUDALES OBSERVADO Y SIMULADO
  • 7. 3.5 VALIDACION DEL G2MM DE LA CUENCA COATA Station name Cuenca Coata Catchment area (km²) 4550.06 Model parameters Transformed Real x1: Capacity of the production store (mm) 5.01 149.84 x2: Water exchange coefficient (mm) 0.40 0.40 Initial values Initial level S0 in prod. store (max.: x1 mm) 74.92 Initial level R0 in routing store (max.: 60 mm) 30 Period Length of the warm-up period (months) 12 Length of the test period (months) 132 Start date 01/1995 End date 01/2006 Mean observed rainfall (mm/month) 67.835 Mean observed PE (mm/month) 99.217 Mean observed streamflow (mm/month) 6.043 Mean root square transformed streamflow 1.925 Mean logarithmic transformed streamflow 0.827 Efficiency criteria (%) Nash(Q) 89.55 Nash(VQ) 79.7 Nash(ln(Q)) 47.1 Bias 82.9
  • 8. GRAFICO DEL MODELAMIENTO HIDROLÓGICO DE LA CUENCA COATA DIAGRAMA DE DISPERCION DE CAUDALES OBSERVADO Y SIMULADO y = 1.2009x + 4.999 R² = 0.7757 0 10 20 30 40 50 60 70 80 0 10 20 30 40 Simalatedflow(mm/month) Observed flow (mm/month)
  • 9. 3.6 GENERACION DE CAUDALES DE LA MICRO-CUENCA Station name microcuenca Palca Catchment area (km²) 644.87 Model parameters Transformed Real x1: Capacity of the production store (mm) 5.01 149.84 x2: Water exchange coefficient (mm) 0.40 0.40 Initial values Initial level S0 in prod. store (max.: x1 mm) 74.92 Initial level R0 in routing store (max.: 60 mm) 30 Period Length of the warm-up period (months) 12 Length of the test period (months) 276 Start date 01/1971 End date 01/1994 Mean observed rainfall (mm/month) 67.243 Mean observed PE (mm/month) 99.217 Mean observed streamflow (mm/month) 0.000 Mean root square transformed streamflow 0.000 Mean logarithmic transformed streamflow #¡NUM! Efficiency criteria (%) Nash(Q) #¡DIV/0! Nash(VQ) #¡DIV/0! Nash(ln(Q)) #¡NUM! Bias #¡DIV/0!
  • 10. 3.7 Generamosloscaudalesmedios mensualesenla captacióndesignada. 4. RESULTADOS ESATDISTICAS DE CALIBRACION Y VALIDACION DEL MODELO HIDROLOICO PERIODO N° Meses Parámetro Método de bondad de Ajuste-Nash(%) X1 X2 INICIALIZACION 1970 12 CALIBRACION 1971-1994 276 5.01 0.4 84.99 VALIDACION 1995-2006 132 89.55 AÑO ENE FEB MAR ABR MAY JUN JUL AGO SET OCT NOV DIC PROM 1970 6.8 3.3 3.7 0.8 0.1 0.0 0.0 0.0 0.0 0.0 0.0 2.1 1.4 1971 2.2 9.5 1.5 0.2 0.0 0.0 0.0 0.0 0.0 0.0 0.0 1.1 1.2 1972 9.0 2.3 2.4 0.4 0.1 0.0 0.0 0.0 0.0 0.0 0.0 0.1 1.2 1973 5.6 7.2 4.9 1.7 0.2 0.0 0.0 0.0 0.0 0.0 0.1 0.3 1.7 1974 5.5 8.0 2.4 0.5 0.1 0.0 0.0 0.0 0.0 0.0 0.0 0.1 1.4 1975 3.2 7.9 4.4 0.6 0.1 0.0 0.0 0.0 0.0 0.0 0.0 0.9 1.4 1976 4.8 2.6 3.2 0.4 0.1 0.0 0.0 0.0 0.0 0.0 0.0 0.1 0.9 1977 0.4 4.7 5.2 0.5 0.1 0.0 0.0 0.0 0.0 0.0 0.3 0.5 1.0 1978 12.1 5.1 2.3 1.1 0.1 0.0 0.0 0.0 0.0 0.0 0.7 4.4 2.2 1979 7.2 2.9 3.0 0.7 0.1 0.0 0.0 0.0 0.0 0.0 0.1 1.2 1.3 1980 1.5 0.9 3.7 0.4 0.1 0.0 0.0 0.0 0.0 0.1 0.1 0.1 0.6 1981 2.5 4.8 4.7 1.2 0.1 0.0 0.0 0.0 0.0 0.0 0.0 1.2 1.2 1982 4.2 2.1 2.6 1.0 0.1 0.0 0.0 0.0 0.0 0.1 2.2 0.3 1.1 1983 0.1 0.1 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 1984 3.7 7.6 2.4 0.4 0.1 0.0 0.0 0.0 0.0 0.9 6.7 7.9 2.5 1985 5.6 14.3 4.4 5.5 0.6 0.1 0.0 0.0 0.0 0.0 1.1 3.5 2.9 1986 2.8 10.2 8.6 2.0 0.2 0.0 0.0 0.0 0.0 0.0 0.0 1.2 2.1 1987 3.3 1.9 0.9 0.2 0.0 0.0 0.0 0.0 0.0 0.0 0.3 0.4 0.6 1988 3.8 1.9 6.1 2.3 0.3 0.0 0.0 0.0 0.0 0.0 0.0 0.1 1.2 1989 1.9 1.4 1.9 1.0 0.1 0.0 0.0 0.0 0.0 0.0 0.0 0.1 0.5 1990 1.4 1.2 0.5 0.1 0.0 0.0 0.0 0.0 0.0 0.1 0.5 0.5 0.4 1991 2.6 3.1 2.9 0.8 0.1 0.0 0.0 0.0 0.0 0.0 0.0 0.2 0.8 1992 1.2 1.8 0.5 0.1 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.3 0.3 1993 4.1 0.9 2.1 0.7 0.1 0.0 0.0 0.0 0.0 0.1 0.6 2.4 0.9 1994 4.7 5.2 3.7 1.6 0.2 0.0 0.0 0.0 0.0 0.0 0.1 1.0 1.4 1995 1.4 2.1 2.0 0.3 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.5 0.5 1996 5.1 3.7 1.8 0.4 0.1 0.0 0.0 0.0 0.0 0.0 0.0 2.7 1.2 1997 4.9 7.0 4.8 1.1 0.1 0.0 0.0 0.0 0.0 0.0 0.3 0.7 1.6 1998 1.7 4.1 2.4 0.4 0.1 0.0 0.0 0.0 0.0 0.0 0.1 0.1 0.7 1999 1.1 2.8 4.4 2.9 0.3 0.0 0.0 0.0 0.0 0.2 0.0 0.2 1.0 2000 2.8 7.2 4.7 0.6 0.1 0.0 0.0 0.0 0.0 0.1 0.0 0.5 1.3 2001 9.3 9.0 4.4 1.0 0.1 0.0 0.0 0.0 0.0 0.0 0.0 0.1 2.0 2002 1.4 5.2 3.5 1.8 0.2 0.0 0.0 0.0 0.0 0.1 0.3 2.6 1.3 2003 6.1 5.0 4.9 0.6 0.1 0.0 0.0 0.0 0.0 0.0 0.0 0.8 1.4 2004 7.5 5.7 2.0 0.5 0.1 0.0 0.0 0.0 0.0 0.0 0.0 0.4 1.4 2005 0.7 10.5 3.3 0.8 0.1 0.0 0.0 0.0 0.0 0.0 0.1 1.2 1.4 CAUDALES MEDIOS MENSUALES GENERADOS EN EL GR2M EN EL PUNTO DE CAPTACION DE LA MICROCUENCA PALCA (m3/s)
  • 11. 5. ANEXOS IMAGEN N°1: Procesamiento de valoresmedios sobre la cuenca coata por el método kriging. IMAGEN N° 2: Area de la cuenca coata