Water movement modelling: surface drip irrigation in agriculture
Gespeichert in:
Format: | Buch |
---|---|
Sprache: | English |
Veröffentlicht: |
Hamburg
Kovač
2015
|
Ausgabe: | 1., Aufl. |
Schriftenreihe: | Schriftenreihe Agrarwissenschaftliche Forschungsergebnisse
60 |
Schlagworte: | |
Online-Zugang: | Ausführliche Beschreibung Inhaltsverzeichnis |
Beschreibung: | 107 S. Ill., graph. Darst. 21 cm x 14.8 cm, 149 g |
ISBN: | 9783830085799 3830085796 |
Internformat
MARC
LEADER | 00000nam a2200000 cb4500 | ||
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245 | 1 | 0 | |a Water movement modelling |b surface drip irrigation in agriculture |
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300 | |a 107 S. |b Ill., graph. Darst. |c 21 cm x 14.8 cm, 149 g | ||
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653 | |a Agriculture | ||
653 | |a Modelling | ||
653 | |a Water Movement | ||
653 | |a Hydrus | ||
653 | |a Soil | ||
653 | |a Drip Irrigation | ||
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Datensatz im Suchindex
_version_ | 1804175323703541760 |
---|---|
adam_text | TABLE OF CONTENTS
1 INTRODUCTION 13
2 DRIP IRRIGATION 17
2.1 INTRODUCTION 17
2.2 DEFINITIONS 17
2.3 SURFACE DRIP IRRIGATION (SD) 18
2.4 SURFACE DRIP IRRIGATION FOR ROW CROPS 18
2.5 SURFACE DRIP SYSTEM DESIGN AND CROP WATER NEEDS 18
2.6 SURFACE DRIP SYSTEM MANAGEMENT 22
2.7 DRIP IRRIGATION EFFICIENCY 23
2.8 ADVANTAGES AND DISADVANTAGES OF SURFACE DRIP
IRRIGATION SYSTEMS 23
3 SURFACE DRIP IRRIGATION: DISTRIBUTION OF
WATER IN THE SOIL 25
3.1 INTRODUCTION 25
3.2 IMPORTANCE OF WETTED VOLUME 25
3.3 INFLUENCE OF DRIP SYSTEM DESIGN AND MANAGEMENT
ON SOIL WATER DISTRIBUTION 27
3.4 GUIDES FOR ESTIMATING PERCENTAGE OF WETTED AREA 30
4 WATER MODELLING OF POINT SOURCE
INFILTARTION 33
4.1 RICHARDS EQUATION BASED MODELS 33
4.2 ANALYTICAL MODELS 33
4.3 SEMI-ANALYTICAL MODELS 35
5
HTTP://D-NB.INFO/1076485502
4.4 NUMERICAL MODELS 35
4.5 EMPIRICAL MODELS 46
4.6 ROOT WATER UPTAKE MODELLING 49
5 NUMERICAL AND EXPERIMENTAL STUDY OF
WETTING PATTERNS 55
5.1 MODEL DESCRIPTION 55
5.2 SOIL TANK EXPERIMENTS 60
5.3 EXPERIMENTAL SETUP 61
5.4 SOIL HYDRAULIC PROPERTIES 63
5.5 HYDRUS-2D/3D SETUP 64
5.6 COMPARISON OF EXPERIMENTAL AND NUMERICAL SOIL TANK RESULTS 65
6 IRRIGATION OF SWEET CORN (ZEA MAYS L.
VAR. SACCHARATA) 71
6.1 SITE DESCRIPTION 71
6.2 CLIMATE AND PLANTS CHARACTERISTICS 71
6.3 COM IRRIGATION CHARACTERISTICS 72
6.4 SOIL HYDRAULIC PROPERTIES 73
6.5 HYDRUS-2D/3D SETUP 74
6.6 RESULTS OF INFLUENCE ON WETTING PATTERN SIZE 79
6.7 SOIL WATER DYNAMICS IN DIFFERENT SOIL DEPTHS 82
6.8 ROOT WATER UPTAKE 92
7 CONCLUSIONS AND RECOMMENDATIONS 95
8 REFERENCES 97
6
LIST OF TABLES
TABLE 3.1: PERCENTAGE OF SOIL WETTED BY VARIOUS EMITTER DISCHARGE RATES
AND SPACING
FOR EMISSION POINTS IN A STRAIGHT LINE APPLYING 40 MM
- OF WATER PER CYCLE (KELLER AND KARMELI, 1974) 31
TABLE 3.2: ESTIMATED WETTED AREA BY 4 L/H DRIP EMITTER OPERATING UNDER
VARIOUS FIELD CONDITIONS (KELLER AND
BLIESNER, 1990) 32
TABLE 5.1: SOIL TEXTURE
AND BULK DENSITY
(^) FOR SELECTED SOILS
USED IN SOIL
TANK EXPERIMENT 62
TABLE 5.2:
DESIRED AND AVERAGED
EMITTER DISCHARGE RATES (G (L/H)) USED
FOR SOIL TANK LABORATORY EXPERIMENT 62
TABLE 5.3: PARAMETERS OF VAN GENUCHTEN-MUALEM
MODEL FOR SOILS USED
IN
LABORATORY EXPERIMENT 63
TABLE 5.4:
IRRIGATION DURATION (MIN) AND VOLUME OF APPLIED WATER (L)
FOR
ALL SOIL TANK LABORATORY EXPERIMENTS 65
TABLE 5.5: ROOT MEAN SQUARE ERROR (RMSE) BETWEEN MEASURED AND
SIMULATED WETTING PATTERN DIAMETERS (D) AND DEPTHS (Y)
FOR EMITTER
DISCHARGE RATES
(Q) RANGED FROM 0.1 TO 2 L/H (NAGLIC, 2011) 69
TABLE 6.1: PARAMETERS OF VAN GENUCHTEN-MUALEM MODEL USED FOR HYDRUS
SIMULATIONS 75
TABLE 6.2:
FEDDE S PARAMETERS FOR SWEET CORN ROOT WATER UPTAKE USED AS
INPUT FOR HYDRUS SIMULATIONS 76
7
LIST OF FIGURES
FIGURE 4.1: WETUP WINDOW PROGRAMME SHOWING WETTING PATTERN UNDER
SURFACE DRIP IRRIGATION FOR AVERAGED LOAMY SOIL, AT EMITTER DISCHARGE
RATE OF 2 1/H,
3 H OF WATER APPLICATION AND INITIAL SOIL WATER CONTENT
OF 6 M SUCTION 34
FIGURE 4.2: HYDRUS
GRAPHICAL USER INTERFACE,
INCLUDING ITS
MAIN COMPONENTS
..38
FIGURE 4.3:
SIMULATIONS OF WATER CONTENT DISTRIBUTION FOR THREE EMITTER
DISCHARGE RATES, 0.10 M FROM THE EMITTER, BEFORE AND AFTER
IRRIGATION AND AT SOLAR NOON (ASSOULINE, 2002) 40
FIGURE 4.4: SIMULATED AND MEASURED MATRIC HEADS DURING 96 HOURS OF
EXPERIMENTS. THE POTENTIAL TRANSPIRATION RATE
WAS SET TO 3.5
MM/DAY
WITH IRRIGATION AMOUNTS VARYING FROM 4 MM (A) TO 1 MM (B).
DOTTED LINE REPRESENTS IRRIGATION THRESHOLD (DABACH ET AL. 2011) 41
FIGURE 4.5: LAYOUT
FOR SURFACE DRIP IRRIGATION FOR GRAPES (GARDENAS ET AL.,
2004) 42
FIGURE 4.6: PLANT WATER STRESS RESPONSE FUNCTION A(H) AS USED
BY FEDDES ET
AL. (1978) 51
FIGURE 4.7: PLANT WATER STRESS RESPONSE FUNCTION
A(H)
AS USED BY VAN
GENUCTEN (1987) 52
FIGURE 5.1: TRANSIENT WATER FLOW PROCESS IN SOILS (SIMUNEK ET AL. 2006)
55
FIGURE 5.2: SOIL TANK USED IN LABORATORY EXPERIMENT
AND ITS DIMENSIONS 61
FIGURE 5.3: SPATIAL DISCRETIZATION OF THE 2D FLOW DOMAIN AND ITS
BOUNDARY
CONDITIONS (BC) 64
FIGURE 5.4: MEASURED
AND SIMULATED WETTING PATTERN DIAMETERS (D) AND
DEPTHS (Y) AS A FUNCTION OF TIME (MIN) FOR SANDY AND SILTY CLAY
LOAM SOIL AT DIFFERENT
EMITTER DISCHARGE RATES
{Q (L/H)) 67
FIGURE 5.5: MEASURED (LEFT SIDE) AND SIMULATED (RIGHT SIDE) WETTING
PATTERNS FOR SAND AND SILTY- CLAY
LOAM SOILS
AT THE END OF THE WATER
APPLICATION
FOR EMITTER DISCHARGE RATES ()2)
OF 0.99, 2.05 AND 0.11
L/H 68
8
FIGURE 6.1: POTENTIAL EVAPOTRANSPIRATION (ETC) CHARACTERISTICS AT SCL
FARM FOR A PERIOD OF THREE DAYS
(7.6.2011 (DAY
1), 11.6.2011 (DAY
2) AND 12.6.2011 PAY 3)) 72
FIGURE 6.2: LAYOUT OF CORN IRRIGATION AT SCL FARM IN SENEGAL (HESS,
2011)..73
FIGURE 6.3:
SPATIAL
DISCRETIZATION
OF THE 2D AXISYMMETRICAL
FLOW DOMAIN
AND ITS BC USED FOR SIMULATIONS OF CORN IRRIGATION 74
FIGURE 6.4:
ROOT DISTRIBUTION USED FOR HYDRUS-2D/3D SIMULATIONS. THE
LEGEND SHOWS THE ROOT DISTRIBUTION, WHERE RED MEANS THERE ARE NO
ROOTS AND DARK BLUE MEANS THERE IS MAXIMUM ROOT DENSITY 76
FIGURE 6.5:
DIFFERENT IRRIGATION STRATEGIES WHERE
WATER WAS APPLIED
DAILY.
IN STRATEGIES 1 AND 2 WATER WAS APPLIED CONTINUOUSLY AND IN
STRATEGY 3 WITH 0.5
L PULSES 78
FIGURE 6.6: SWEET CORN IRRIGATION STRATEGIES 4 AND 5 WHERE WATER WAS
APPLIED EVER) 2 DAYS. IN STRATEGY
4 WATER WAS APPLIED
CONTINUOUSLY
AND IN STRATEGY 5 WITH 8 PULSES 78
FIGURE 6.7: SIMULATED WATER CONTENT DISTRIBUTION (TH = 6 (CM3/CM3))
UNDER SWEET CORN IRRIGATION IN SANDY SOIL IN SENEGAL AT THE END OF
LAST IRRIGATION EVENT FOR ALL 5 STRATEGIES 80
FIGURE
6.8: SIMULATED WATER CONTENT AT SAND SOIL SURFACE IN SWEET CORN
CROP AS A FUNCTION OF RADIAL DISTANCE AT THE END OF LAST IRRIGATION
EVENT 82
FIGURE
6.9: SIMULATED WATER CONTENT AT SAND SOIL SURFACE IN SWEET CORN
CROP AS A FUNCTION OF VERTICAL DISTANCE AT THE END OF LAST IRRIGATION
EVENT 82
FIGURE
6.10: SIMULATED
WATER CONTENT (CM
3
/CM
3
)
DYNAMICS UNDER SWEET
CORN SURFACE DRIP IRRIGATION
AT SOIL DEPTH OF 10 CM FOR STRATEGIES 1,
2 AND 3 84
FIGURE
6.11:
SIMULATED WATER CONTENT (CM
3
/CM
3
)
DYNAMICS UNDER SWEET
CORN SURFACE DRIP IRRIGATION
AT SOIL DEPTH OF 10 CM FOR STRATEGIES 4
AND 5 84
9
FIGURE 6.12:
SIMULATED
WATER CONTENT CHANGE AT THE SOIL DEPTH OF 10 CM
FOR SWEET CORN SURFACE DRIP IRRIGATION
STRATEGIES 1, 2 AND 3 FOR THE
LAST (15
TH
)
DAY OR IRRIGATION EVENT. THE
ROOT WATER UPTAKE IS HIGHEST
BETWEEN FIELD CAPACITY (FQ AND 50 % DEPLETION MARKS 85
FIGURE 6.13:
SIMULATED WATER
CONTENT CHANGE AT THE SOIL DEPTH OF 10 CM
FOR SWEET CORN SURFACE DRIP IRRIGATION STRATEGIES
4 AND 5 FOR THE 7
TH
IRRIGATION
EVENT (ON 13
TH
AND 14
TH
DAY).
THE ROOT WATER UPTAKE IS
HIGHEST BETWEEN FC AND 50 % DEPLETION MARKS 86
FIGURE 6.14: SIMULATED
WATER CONTENT (CM
3
/CM
3
)
DYNAMICS UNDER SWEET
CORN SURFACE DRIP IRRIGATION
AT SOIL DEPTH OF 20 CM FOR STRATEGIES
1,
2 AND 3 87
FIGURE 6.15:
SIMULATED
WATER CONTENT (CM
3
/CM
3
)
DYNAMICS UNDER SWEET
CORN SURFACE DRIP IRRIGATION AT SOIL DEPTH OF 20 CM FOR STRATEGIES 4
AND 5 87
FIGURE 6.16:
SIMULATED WATER
CONTENT CHANGE AT THE SOIL DEPTH OF 20 CM
FOR SWEET CORN SURFACE DRIP IRRIGATION
STRATEGIES 1, 2 AND 3 FOR THE
LAST (15
TH
)
DAY OR IRRIGATION EVENT. THE ROOT WATER UPTAKE IS HIGHEST
BETWEEN FC AND 50 % DEPLETION MARKS 88
FIGURE 6.17: SIMULATED
WATER CONTENT CHANGE AT THE SOIL DEPTH OF 20 CM
FOR SWEET CORN SURFACE DRIP IRRIGATION STRATEGIES 4 AND 5 FOR THE 7
TH
IRRIGATION EVENT (ON 13
TH
AND 14
TH
DAY).
THE ROOT WATER UPTAKE IS
HIGHEST BETWEEN FC AND 50 % DEPLETION MARKS 88
FIGURE
6.18: SIMULATED
WATER CONTENT (CM
3
/CM
3
)
DYNAMICS UNDER SWEET
CORN SURFACE DRIP IRRIGATION
AT SOIL DEPTH OF 40 CM FOR STRATEGIES 1,
2 AND 3 89
FIGURE 6.19: SIMULATED
WATER CONTENT (CM
3
/CM
3
)
DYNAMICS UNDER SWEET
CORN SURFACE DRIP IRRIGATION AT SOIL DEPTH OF 40 CM FOR STRATEGIES
4
AND 5 90
FIGURE 6.20:
SIMULATED
WATER CONTENT CHANGE AT THE SOIL DEPTH OF 40 CM
FOR SWEET CORN SURFACE DRIP IRRIGATION STRATEGIES 1, 2
AND 3 FOR THE
LAST (15
TH
)
DAY OR IRRIGATION EVENT. THE
ROOT WATER UPTAKE IS HIGHEST
BETWEEN FC AND 50 % DEPLETION MARKS 90
10
FIGURE 6.21: SIMULATED
WATER CONTENT CHANGE AT THE SOIL DEPTH OF 40 CM
FOR SWEET CORN SURFACE DRIP IRRIGATION
STRATEGIES 4 AND
5 FOR THE 7
TH
IRRIGATION
EVENT (ON IS* AND 14
TH
DAY). THE ROOT WATER UPTAKE IS
HIGHEST BETWEEN FC AND
50 % DEPLETION MARKS 91
FIGURE 6.22: POTENTIAL AND CUMULATIVE ACTUAL
ROOT (RWU) WATER
UPTAKE AS
A FUNCTION OF TIME FOR IRRIGATION
STRATEGIES 1, 2, 3, 4 AND 5 (SI, S2,
S3, S4 AND
S5) 93
11
|
any_adam_object | 1 |
author_GND | (DE-588)173072844 |
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bvnumber | BV042986630 |
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ctrlnum | (OCoLC)922062997 (DE-599)DNB1076485502 |
dewey-full | 630 |
dewey-hundreds | 600 - Technology (Applied sciences) |
dewey-ones | 630 - Agriculture and related technologies |
dewey-raw | 630 |
dewey-search | 630 |
dewey-sort | 3630 |
dewey-tens | 630 - Agriculture and related technologies |
discipline | Agrar-/Forst-/Ernährungs-/Haushaltswissenschaft / Gartenbau Wirtschaftswissenschaften |
edition | 1., Aufl. |
format | Book |
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id | DE-604.BV042986630 |
illustrated | Illustrated |
indexdate | 2024-07-10T07:14:28Z |
institution | BVB |
institution_GND | (DE-588)16100321-7 |
isbn | 9783830085799 3830085796 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-028411905 |
oclc_num | 922062997 |
open_access_boolean | |
owner | DE-1029 DE-11 |
owner_facet | DE-1029 DE-11 |
physical | 107 S. Ill., graph. Darst. 21 cm x 14.8 cm, 149 g |
publishDate | 2015 |
publishDateSearch | 2015 |
publishDateSort | 2015 |
publisher | Kovač |
record_format | marc |
series | Schriftenreihe Agrarwissenschaftliche Forschungsergebnisse |
series2 | Schriftenreihe Agrarwissenschaftliche Forschungsergebnisse |
spelling | Water movement modelling surface drip irrigation in agriculture 1., Aufl. Hamburg Kovač 2015 107 S. Ill., graph. Darst. 21 cm x 14.8 cm, 149 g txt rdacontent n rdamedia nc rdacarrier Schriftenreihe Agrarwissenschaftliche Forschungsergebnisse 60 Tropfbewässerung (DE-588)4316313-0 gnd rswk-swf Gartenbau (DE-588)4019294-5 gnd rswk-swf Water Use Efficiency Sustainability Agriculture Modelling Water Movement Hydrus Soil Drip Irrigation Gartenbau (DE-588)4019294-5 s Tropfbewässerung (DE-588)4316313-0 s DE-604 Naglič, Boštjan Sonstige oth Kechavarzi, Cedric Sonstige oth Pintar, Marina Sonstige oth Pavlovič, Martin 1964- Sonstige (DE-588)173072844 oth Verlag Dr. Kovač (DE-588)16100321-7 pbl Schriftenreihe Agrarwissenschaftliche Forschungsergebnisse 60 (DE-604)BV011791889 60 X:MVB text/html http://www.verlagdrkovac.de/978-3-8300-8579-9.htm Ausführliche Beschreibung DNB Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=028411905&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Water movement modelling surface drip irrigation in agriculture Schriftenreihe Agrarwissenschaftliche Forschungsergebnisse Tropfbewässerung (DE-588)4316313-0 gnd Gartenbau (DE-588)4019294-5 gnd |
subject_GND | (DE-588)4316313-0 (DE-588)4019294-5 |
title | Water movement modelling surface drip irrigation in agriculture |
title_auth | Water movement modelling surface drip irrigation in agriculture |
title_exact_search | Water movement modelling surface drip irrigation in agriculture |
title_full | Water movement modelling surface drip irrigation in agriculture |
title_fullStr | Water movement modelling surface drip irrigation in agriculture |
title_full_unstemmed | Water movement modelling surface drip irrigation in agriculture |
title_short | Water movement modelling |
title_sort | water movement modelling surface drip irrigation in agriculture |
title_sub | surface drip irrigation in agriculture |
topic | Tropfbewässerung (DE-588)4316313-0 gnd Gartenbau (DE-588)4019294-5 gnd |
topic_facet | Tropfbewässerung Gartenbau |
url | http://www.verlagdrkovac.de/978-3-8300-8579-9.htm http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=028411905&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
volume_link | (DE-604)BV011791889 |
work_keys_str_mv | AT naglicbostjan watermovementmodellingsurfacedripirrigationinagriculture AT kechavarzicedric watermovementmodellingsurfacedripirrigationinagriculture AT pintarmarina watermovementmodellingsurfacedripirrigationinagriculture AT pavlovicmartin watermovementmodellingsurfacedripirrigationinagriculture AT verlagdrkovac watermovementmodellingsurfacedripirrigationinagriculture |