Entropy theory in hydrologic science and engineering
著者
書誌事項
Entropy theory in hydrologic science and engineering
McGraw-Hill Education, c2015
注記
Includes bibliographical references and index
内容説明・目次
内容説明
Publisher's Note: Products purchased from Third Party sellers are not guaranteed by the publisher for quality, authenticity, or access to any online entitlements included with the product.
A THOROUGH INTRODUCTION TO ENTROPY THEORY AND ITS APPLICATIONS IN HYDROLOGIC SCIENCE AND ENGINEERINGThis comprehensive volume addresses basic concepts of entropy theory from a hydrologic engineering perspective. The application of these concepts to a wide range of hydrologic engineering problems is discussed in detail. The book is divided into sections--preliminaries, rainfall and evapotranspiration, subsurface flow, surface flow, and environmental considerations. Helpful equations, solutions, tables, and diagrams are included throughout this practical resource.
Entropy Theory in Hydrologic Science and Engineering covers:
Introduction to entropy theory
Maximum entropy production principle
Performance measures
Morphological analysis
Evaluation and design of sampling and measurement networks
Precipitation variability
Rainfall frequency distributions
Evaluation of precipitation forecasting schemes
Assessment of potential water resources availability
Evaporation
Infiltration
Soil moisture
Groundwater flow
Rainfall-runoff modeling
Streamflow simulation
Hydrologic frequency analysis
Streamflow forecasting
River flow regime classification
Sediment yield
Eco-index
目次
1. Entropy Theory
2. Morphological Analysis
3. Evaluation and Design of Sampling and Measurement Networks
4. Precipitation Variability
5. Rainfall Frequency Distributions
6. Assessment of Potential Water Resources Availability
7. Evaluation of Precipitation Forecasting Schemes
8. Infiltration
9. Soil Moisture
10. Groundwater Flow
11. Rainfall-Runoff Modeling
12. Hydrologic Frequency Analysis
13. Steamflow Simulation
14. Long-Term Streamflow Forecasting
15. Flood Forecasting: Bivariate Analysis
16. River Regime Classification
17. Sediment Yield
Eco Index
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