An Introduction To Earthquake Design Of Hydraulic Structures For Professional Engineers


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An Introduction to Earthquake Design of Hydraulic Structures for Professional Engineers


An Introduction to Earthquake Design of Hydraulic Structures for Professional Engineers

Author: J. Paul Guyer, P.E., R.A.

language: en

Publisher: Guyer Partners

Release Date: 2025-04-01


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Introductory technical guidance for Professional Engineers interested in earthquake design of hydraulic structures. Here is what is discussed: 1. PROGRESSIVE ANALYSIS METHODOLOGY, 2. METHODS OF ANALYSIS, 3. MODELING OF STRUCTURAL SYSTEMS, 4. EFFECTIVE STIFFNESS, 5. DAMPING, 6. INTERACTION WITH BACKFILL SOIL, 7. PERMANENT SLIDING DISPLACEMENT, 8. CONCRETE PROPERTIES AND CAPACITIES.

An Introduction to Earthquake Design of Hydraulic Structures for Professional Engineers


An Introduction to Earthquake Design of Hydraulic Structures for Professional Engineers

Author: J Paul Guyer

language: en

Publisher: Independently Published

Release Date: 2025-04-02


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Introductory technical guidance for Professional Engineers interested in earthquake design of hydraulic structures. Here is what is discussed: 1. PROGRESSIVE ANALYSIS METHODOLOGY, 2. METHODS OF ANALYSIS, 3. MODELING OF STRUCTURAL SYSTEMS, 4. EFFECTIVE STIFFNESS, 5. DAMPING, 6. INTERACTION WITH BACKFILL SOIL, 7. PERMANENT SLIDING DISPLACEMENT, 8. CONCRETE PROPERTIES AND CAPACITIES.

An Introduction to Seismic Analysis of Concrete Hydraulic Structures for Professional Engineers


An Introduction to Seismic Analysis of Concrete Hydraulic Structures for Professional Engineers

Author: J. Paul Guyer, P.E., R.A.

language: en

Publisher: Guyer Partners

Release Date: 2023-07-31


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Introductory technical guidance for civil engineers, structural engineers and geotechnical engineers interested in seismic analysis of concrete hydraulic structures. Here is what is discussed: 1. INTRODUCTION, 2. GENERAL CONCEPTS, 3. DESIGN CRITERIA, 4. DESIGN EARTHQUAKES, 5. EARTHQUAKE GROUND MOTIONS, 6. ESTABLISHMENT OF ANALYSIS PROCEDURES, 7. STRUCTURAL IDEALIZATION, 8. DYNAMIC ANALYSIS PROCEDURES SLIDING AND ROTATIONAL STABILITY DURING EARTHQUAKES, 9. SLIDING AND ROTATIONAL STABILITY DURING EARTHQUAKES, 10. CURRENT PRACTICE ON USE OF RESPONSE SPECTRA FOR BUILDING-TYPE STRUCTURES.