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008 230822s1981 xx 000 0 eng d
020 _a0139459235
040 _aJPS
090 0 0 _aEARTH 551.48 LOU
100 _aLOUCKS, DANIEL P.
_eauthor
245 0 _aWATER RESOURCE SYSTEMS PLANNING AND ANALYSIS
260 _aNEW JERSEY: PRENTICE HALL,
_c1981
300 _a559P; ILLUST
505 _aPART I - Overview. Chapter 1. Planning and Analysis of Water Resource Systems. 1.1. Introduction to Water Resources Planning, 1.2. Water Resource Systems Analysts, Engineers, and Policymakers, 1.3. Characteristics of Systems Analysis Applications, Part II . Methods of Analysis. Chapter 2. Identification and Evaluation of Water Management Plans. 2.1. Introduction, 2.2. Evaluation of Time Streams of Benefits and Costs, 2.3. Plan Formulation, 2.4. Planning Models and Solution Procedures, 2.5. Objective Functions and Constraint Equations, 2.6. Lagrange Multipliers, 2.7. Dynamic Programming, 2.8. Linear Programming, 2.9. Simulation and Search Methods, 2.10. Conclusion, 2A Computer Programs for Linear Programming, 69. Chapter 3 Water Resources Planning Under Uncertainty. 3.1. Introduction, 3.2. Probability Concepts and Methods, 3.3. Distributions of Random Events, 3.4. Stochastic Processes and Time Series, 3.5. Planning with Uncertainty, 3.6. Analyzing Systems with Dynamic Uncertainty, 3.7. Concluding Remarks, 3A. Confidence Intervals for Quantiles and Moments, 3B. Useful Statistical Tests, 3C. Properties of Time-Series Statistics, Chapter 4 Water Resources Planning. Objectives. 4.1. Introduction, 4.2. Economic Benefit-Cost Objectives, 4.3. Multiobjective Models, 4.4. Concluding Remarks, Part III. Managing Surface-Water Quantity. Chapter 5 Deterministic River Basin Modeling. 5.1. Introduction, 5.2. Streamfiow Estimation, 5.3. Estimating Reservoir Storage Requirements for Water Supply, .4. Flood Control Alternatives, 5.5. Hydroelectric Power Production, 5.6. Withdrawals and Diversions, 5.7. Model Synthesis, 5.8. Planning the Expansion of Water Resources Systems, 5.9. Concluding Remarks,
_aChapter 6 Synthetic Streamflow Generation. 6.1. Introduction, 6.2. Statistical Streamfiow Generation Models, 6.3. A Simple Autoregressive Model, 6.4. Reproducing the Marginal Distribution, 6.5. Autoregressive~Moving Average (ARMA) Models, 6.6. Hurst and Fractional Brownian Noise, 6.7. Multisite Models, 6.8. Multiseason Multisite Models, 6.9. Model Selection and Parameter Estimation, 6.10. Streamflow Generation from Precipitation Data, 6.1. Conclusion, Chapter 7 Stochastic River Basin Planning Models. 7.1. Introduction, 7.2. Reservoir Operation, 7.3. Single Reservoir Design and Operation, 7.4. Multiple-Site River Basin Planning Models, 7.5. Concluding Remarks, 7A Stochastic Linear Programming Operating Model, 7B. In put and Output of Example Mixed-Integer Reservoir Design Problem, Chapter 8. Irrigation Planning and Operation. 8.1. Introduction, 8.2. An Irrigation Planning Model, 8.3. An Irrigation Operation Model, 8.4. Conclusion, Part IV Water Quality Management. Chapter 9 Water Quality Prediction and Simulation. 9.1. Introduction, 9.2. Types of Water Quality Models, 9.3. Computational Methods, 9.4. Model Development, Calibration, and Verification, 9.5. Steady-State Models of River and Estuarine Systems, 9.6. Water Quality Modeling of Lakes and Reservoirs, 9.7. Reliability of Receiving Water Quality Simulation Models, 9.8. Nonpoint-Source Pollution Models, 9.9. Concluding Remarks, 9A. Derivation of Governing Equations, 9B. Solution of Steady-State Governing Equations, Chapter 10. Water Quality Management Modeling. 10.1. Introduction, 10.2. Management Alternatives for Water Quality Control, 10.3 Management Objectives and Quality Standards, 10.4 Water Quality Control Alternatives, 10.5, Lake Quality Management, 10.6. Concluding Remarks.
546 _aENG
650 1 0 _aWATER RESOURCES DEV-MATHEMATIC.
650 2 0 _aWATER RESOURCES DEV. PLANNING.
700 _aHaith, Douglas A.
700 _aStedinger, Jery R.
942 _cMONO
990 _a1981
999 _a06036
_a551.48 LOU
_aVIRTUA00
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003 JPS