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Introductory technical guidance for civil engineers and other professional engineers and construction managers interested in flood protection engineering. Here is what is discussed: 1. GENERAL, 2. EVENT-ORIENTED METHODS, 3. EVAPOTRANSPIRATION, 4. CONTINUOUS SIMULATION APPROACH TO SUBSURFACE MODELING, 5. EXISTING CONTINUOUS SIMULATION MODELS. 6. PARAMETER ESTIMATION FOR CONTINUOUS SIMULATION MODEL.
Introductory technical guidance for Professional Engineers interested in flood runoff analysis. Here is what is discussed: 1. GENERAL, 2. APPLICATIONS OF FLOOD-RUNOFF ANALYSIS, 3. NATURE OF FLOOD HYDROLOGY, 4. DATA CONSIDERATIONS, 5. APPROACHES TO FLOOD-RUNOFF ANALYSIS, 6. STUDY FORMULATION AND REPORTING, 7. CONSTRUCTION AND OPERATION, 8. SUMMARY.
Introductory technical guidance for civil engineers and other professional engineers interested in flood control engineering. Here is what is discussed: 1. GENERAL, 2. GAUGED VERSUS UNGAUGED PARAMETER ESTIMATION, 3. ANTECEDENT MOISTURE CONDITIONS, 4. SURFACE LOSS ESTIMATION, 5. INFILTRATION METHODS, 6. IMPERVIOUS AREAS, 7. METHOD SELECTION.
Introductory technical guidance for civil engineers interested in flood protection engineering. Here is what is discussed: 1. GENERAL 2. EVENT-ORIENTED METHODS 3. EVAPOTRANSPIRATION 4. CONTINUOUS SIMULATION APPROACH TO SUBSURFACE MODELING 5. EXISTING CONTINUOUS SIMULATION MODELS 6. PARAMETER ESTIMATION FOR CONTINUOUS SIMULATION MODELS.
Introductory technical guidance for civil engineers and environmental engineers interested in analysis of precipitation and rainwater runoff. Here is what is discussed: 1. GENERAL, 2. RUNOFF SUBDIVISION, 3. UNIT HYDROGRAPH APPROACH, 4. KINEMATIC WAVE APPROACH.
Hydrology for Engineers, Geologists and Environmental Professionals presents the fundamental concepts of physical and contaminant hydrology in watersheds, rivers, lakes, soils, and aquifers in an easy and accessible manner to the environmental professional. Recent research developments in nonlinear hydrologic science and new meshless simulation methods are included in this edition: new solutions of nonlinear infiltration; modeling of regional groundwater flow in heterogeneous media, irregularly-shaped domains, transient problems, multiple pumping wells, and nonlinear flow; contaminant transport simulation under nonlinear decay, nonlinear sorption, and unsaturated-saturated zones contaminant propagation. This edition includes 124 solved examples, 187 proposed problems, 153 illustrations, 71 tables, 46 short computer programs, answers to problems, and extensive bibliography.
Introductory technical guidance for civil engineers and construction managers interested in area drainage systems for streets and highways, and other infrastructure. Here is what is discussed: 1. INTRODUCTION, 2. HYDROLOGY, 3. HYDRAULICS, 4. EROSION CONTROL AND RIPRAP PROTECTION, 5. SUBSURFACE DRAINAGE.
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. Understand the fundamentals, methods, and processes of modern hydrology This comprehensive engineering textbook offers a thorough overview of all aspects of hydrology and shows how to apply hydrologic principles for effective management of water resources. It presents detailed explanations of scientific principles along with real-world applications and technologies. Engineering Hydrology: An Introduction to Processes, Analysis, and Modeling follows a logical progression that builds on foundational concepts with modern hydrologic methods. Every hydrologic process is clearly explained along with current techniques for modeling and analyzing data. You will get practice problems throughout that help reinforce important concepts. Coverage includes: •The hydrologic cycle •Water balance •Components of the hydrologic cycle •Evapotranspiration •Infiltration and soil moisture •Surface water •Groundwater •Water quality •Hydrologic measurements •Streamflow measurement •Remote sensing and geographic information systems •Hydrologic analysis and modeling •Unit hydrograph models •River flow modeling •Design storm and design flood estimation •Environmental flows •Impact of climate change on water management