Irrigation Design and practice

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Bibliographische Detailangaben
Hauptverfasser: Withers, Bruce (VerfasserIn), Vipond, Stanley (VerfasserIn)
Format: Buch
Sprache:English
Veröffentlicht: London Batsford 1974
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Datensatz im Suchindex

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adam_text Contents Acknowledgment 13 Note on units Introduction 14 Irrigation as an agricultural operation 15 The need for irrigation 15 Total and supplemental irrigation 17 The objective 17 The engineer in irrigation 17 The agricultural engineer 19 Field irrigation engineering 20 Irrigation - the broad view 20 1 Feasibility studies 21 1 1 RESOURCES - LAND, WATER AND CLIMATE 22 iii Soil surveys 2 2 ii2 Water resources 2 2 113 Topographic surveys 2 3 114 Climatological survey related to crop water use 24 1 2 AGRICULTURE 24 121 Current farm practices 24 122 Social change 25 123 Traditional rights - land and water 26 124 Transport and marketing 26 125 The future state of agriculture 27 126 Social change and permanent works 27 1 3 ORGANISATION AND MANAGEMENT 28 13i The organisation of construction 28 132 The organisation of operation 29 133 Training and extension services 29 1 4 ENGINEERING 30 141 Site conditions 30 142 Materials and methods of construction 31 143 Water duties 31 i-4-4 Ön-farm works 31 1 4-5 Irrigation and drainage 3i 146 Preliminary designs 32 i-5 FINANCIAL AND ECONOMIC ASPECTS 32 I-5-1 Funds for construction 32 1-5-2 Benefits 33 1-5-3 Costs and benefit/cost relationships 33 2 Irrigation practices 35 2 1 SURFACE IRRIGATION 35 211 Hydraulic relationships in surface flow 35 212 Furrow irrigation 38 213 Border strips 41 214 General points concerning furrows and border strips 43 215 Basins 44 216 Wild flooding 46 2 2 SUB-IRRIGATION 46 221 Natural sub-irrigation 47 222 Artificial sub-irrigation 47 2-3 OVERHEAD IRRIGATION 47 231 Rotating sprinklers 48 232 Sprinkler characteristics 51 2-3-3 Sprinkler systems 52 234 Organic irrigation 54 2-3-5 Spray lines 54 236 Mobile sprinkling machines and other recent developments 55 2-3-7 Frost protection in temperate climates 55 2 4 TRICKLE OR DRIP IRRIGATION 56 3 The moisture in soils 59 Soil moisture and irrigation practice 59 3-1 THE COMPOSITION OF THE SOIL 59 3-1-1 The behaviour of moisture in the soil 60 312 The texture of mineral soils 61 3-i-3 Soil structure 63 3-2 TEXTURE, STRUCTURE AND THE MOISTURE CHARACTERISTICS OF SOILS 63 321 The moisture characteristic and its implications 64 322 Methods for finding the moisture characteristic curve 66 3-2-3 Hysteresis and the moisture characteristic 68 3 3 CLASSIFICATION OF SOIL MOISTURE 68 331 Gravitational water 69 332 Capillary water 69 333 Hygroscopic water 69 3 4 EVALUATION OF WATER AVAILABLE TO THE PLANT 69 341 Field capacity 70 342 The permanent wilting point 70 343 The available moisture range 71 344 Measurement of the density of the dry soil mass 72 345 Total water available to the plant 72 3 5 THE EXTRACTION PATTERN OF SOIL-WATER BY THE PLANT 72 3 6 THE CALCULATION OF IRRIGATION CYCLES 73 3 7 THE MOVEMENT OF WATER INTO SOILS - INFILTRATION 74 371 The measurement of infiltration rate for irrigation design 75 372 Intake rates for flood irrigation 76 373 Infiltration rate for part flood irrigation (furrow) 76 374 Infiltration rate for sprinkler irrigation design 77 4 Crop water use 79 4 1 THE ENERGY ENVIRONMENT OF PLANTS 8o 411 The diffusion of water vapour from the surface 81 412 The use of energy equation and Dalton’s equation for calculating evaporation 81 413 Example of Penman’s method 85 414 Some observations on Penman’s method and a more sophisticated approach 86 4 2 THE USE OF OPEN-PANS FOR MEASURING EVAPORATION 88 4 3 SOIL AND PLANT FACTORS AFFECTING EVAPORATION 90 4 4 EMPIRICAL METHODS FOR ESTIMATING EVAPORATION 93 441 The Thornthwaite method 93 442 Olivier’s method 94 443 The Blaney-Criddle method 98 4 5 THE EXPERIMENTAL EVALUATION OF CROP EVAPORATION BY LYSIMETRY 99 451 Measurement of potential evaporation ioo 452 The measurement of non-potential evaporation ioi 4 6 THE SCHEDULING OF IRRIGATION IO3 461 Book-keeping methods 103 462 Soil moisture methods 104 463 Plant indicators 107 I IO5 Saline and alkali soils 5 I SOIL AND WATER CLASSIFICATION AND CROP TOLERANCE I I I 5ii Soils I I I 512 Water 112 513 Crops 115 5 2 MANAGEMENT OF POTENTIALLY SALINE AND ALKALI SOILS IN IRRIGATED AREAS I I 5 521 Salt and water balance equations and leaching requirement 117 522 Saline soils 120 523 Alkali soils 122 5 3 RECLAMATION OF SALINE, ALKALI AND SALINE-ALKALI SOILS I 23 531 Saline soils 123 532 Saline-alkali soils 126 533 Alkali soils 126 6 The design of field irrigation systems 129 6 1 THE SELECTION OF IRRIGATION METHOD I 29 6 2 INTRODUCTION TO THE DESIGN OF FIELD LAYOUTS FOR SURFACE IRRIGATION I 3 I 6 3 THE DESIGN OF FURROW IRRIGATION LAYOUTS 135 63i The shape and spacing of furrows 135 632 Selection of the advance furrow stream 137 633 Selection of the main irrigation stream(s) 137 634 The slope of the field 138 635 The furrow length 138 636 Field widths 142 6 4 THE DESIGN OF BORDER STRIP IRRIGATION 142 641 The strip width 142 642 Slope of the strip 142 643 Construction of the levees 142 644 Selection of the advance stream 142 645 The length of the strip 143 6 5 MISCELLANEOUS NOTES ON IRRIGATION DESIGN 146 651 The irrigation of heavy clay soils by furrow irrigation 146 652 Basin irrigation design 147 653 The design of sub-surface irrigation 147 6 6 THE DESIGN OF SPRINKLER IRRIGATION SYSTEMS 148 661 Planning of the system 149 662 Selection of sprinkler, spacing and crop 150 663 The design of the sprinkler lateral *52 664 Design of the main line !53 665 The selection of the pump 154 7 Drainage for irrigated lands 156 7-1 THE REASONS FOR DRAINAGE 156 711 Over-watering and leaching practices 156 712 Rainfall 157 7-i-3 Canal seepage :57 7-I-4 Seepage under structures !57 7-i-5 Artesian conditions 158 716 Floods 158 7 2 SURFACE DRAINAGE 158 721 Surface drainage in the field T59 722 Surface drainage channels *59 7-2-3 Disposal of drainage water 164 724 Drainage structures and salinity 165 7-3 SUBSURFACE DRAINAGE PRACTICES 165 7-3-1 Water table control 167 7-3-2 Soils of low permeability 168 7-3-3 Foreign water 170 7-3-4 Field drainage pipes 170 7-3-5 Water table investigations 172 7 4 THE DESIGN OF SUBSURFACE FIELD DRAINAGE SYSTEMS 174 741 Field conditions and simplifying assumptions 174 742 Hooghoudt’s solution to the steady state drainage problem *75 7-4-3 The USBR method for a fluctuating water table 179 744 Field measurement of hydraulic conductivity 182 7-4-5 The calculation of depth and spacing 184 746 Drain pipe diameter and gradient 186 8 The canal system 189 8 1 THE CANAL LAYOUT 189 811 Preliminary layout of canals 189 812 Existing development !9! 813 Command 192 814 Farm considerations 194 815 Canal discharge and water duties T95 8 2 CHANNEL DESIGN 197 821 Side slopes 198 822 Freeboard and escaping capacity 198 823 Channel roughness 19g 824 Non-erodible channels 201 825 Erodible channels 204 826 Seepage 211 827 Canal linings 212 828 Standard dimensions 214 8 3 CANAL STRUCTURE 2l6 831 Head regulators 216 832 Drop structures and tail escapes 218 833 Cross regulators 219 834 Outlets (turn-outs) 219 8 4 MAINTENANCE 223 9 Flow measurement 225 9-1 FUNDAMENTAL EQUATIONS 225 9ii Specific energy 227 912 The hydraulic jump 229 9 2 WEIRS, ORIFICES, AND SIPHONS 23O 921 Thin-plate (sharp crested) weirs 231 922 Broad-crested weirs 239 923 The Crump weir 240 924 Sluice gates 243 925 The orifice 244 926 The siphon 244 9 3 MEASURING FLUMES 245 931 The Parshall flume 246 932 The WSC flume 254 933H flumes 256 9 4 CURRENT METERS 259 941 Equipment 259 942 Discharge measurement 260 9 5 OTHER METHODS FOR DISCHARGE MEASUREMENTS IN OPEN CHANNELS 2Ö2 951 Float measurements 262 952 Salt velocity 262 953 Dye velocity 263 954 Salt concentration 263 955 Radioisotope methods 263 956 Propeller meters (cumulative flow) 264 957 The Dethridge meter (cumulative flow) 264 io Mechanisation and land preparation for irrigation 267 IO I PRINCIPLES OF MECHANISATION 10 i i The stages of mechanisation 10 2 MECHANISED PRACTICES ON FARMS IO 3 GENERAL PURPOSE AGRICULTURAL MACHINERY AND IMPLEMENTS 10 3 i Tractors 10 3 2 Land reclamation and development machinery 10 3 3 Ploughs and primary tillage 10 3 4 Secondary tillage implements 10 3 5 Crop cultivation machinery 10 3 6 Ridging for row crops and furrow irrigation 10 3 7 Preparation of levees for border strip irrigation FACTORS AFFECTING THE EFFICIENCY OF MECHANISATION THE COMPATABILITY OF MECHANISATION AND IRRIGATION SURVEYING AND LAND PREPARATION Contour surveying for farm layout 10 6 2 The use of aerial photography IO 7 LAND FORMING AND SETTING OUT 10 7 i Estimation of earth quantities 10 7 2 Setting out open channels Appendix A Moisture sensitive stages of growth 1 Crops grown as annuals or biennials 2 Perennial crops Appendix B British Metric Unit Conversion Factors Appendix C Surface irrigation design theory Supplementary glossary Index 295
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author Withers, Bruce
Vipond, Stanley
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Vipond, Stanley
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spellingShingle Withers, Bruce
Vipond, Stanley
Irrigation Design and practice
Irrigation, Technique de l'
Irrigation engineering
Bewässerung (DE-588)4006306-9 gnd
Bewässerungswirtschaft (DE-588)4145124-7 gnd
Methode (DE-588)4038971-6 gnd
subject_GND (DE-588)4006306-9
(DE-588)4145124-7
(DE-588)4038971-6
title Irrigation Design and practice
title_auth Irrigation Design and practice
title_exact_search Irrigation Design and practice
title_full Irrigation Design and practice Bruce Withers ; Stanley Vipond
title_fullStr Irrigation Design and practice Bruce Withers ; Stanley Vipond
title_full_unstemmed Irrigation Design and practice Bruce Withers ; Stanley Vipond
title_short Irrigation
title_sort irrigation design and practice
title_sub Design and practice
topic Irrigation, Technique de l'
Irrigation engineering
Bewässerung (DE-588)4006306-9 gnd
Bewässerungswirtschaft (DE-588)4145124-7 gnd
Methode (DE-588)4038971-6 gnd
topic_facet Irrigation, Technique de l'
Irrigation engineering
Bewässerung
Bewässerungswirtschaft
Methode
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