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Introductory technical guidance for civil engineers, structural engineers and other professional engineers interested in seismic design criteria. Here is what is discussed: 1. GENERAL, 2. SEISMIC USE GROUPS, 3. SEISMIC DESIGN CATEGORIES, 4. REDUNDANCY, 5. OVERSTRENGTH, 6. COMBINATION OF LOAD EFFECTS, 7. PERFORMANCE LEVELS, 8. DESIGN GROUND MOTIONS, 9. PERFORMANCE OBJECTIVES, 10. MINIMUM REQUIREMENTS FOR ANALYTICAL PROCEDURES, 11. GENERAL DESIGN PROCEDURES, 12. PERFORMANCE OBJECTIVES FOR NONSTRUCTURAL SYSTEMS AND COMPONENTS.
- Solid review of seismic design exam topics- More than 100 practice problems- Includes step-by-step solutions Copyright © Libri GmbH. All rights reserved.
Everything civil and structural engineers in California need to prepare for the seismic design topics of the Special Civil Engineering Exam and California Structural Engineering Exam. This guide emphasizes methods that lead to the quickest and simplest solution to any problem.
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.
Introductory technical guidance for professional engineers interested in seismic design of non-structural components of buildings. Here is what is discussed: 1. GENERAL, 2. ARCHITECTURAL COMPONENTS, 3. MECHANICAL AND ELECTRICAL EQUIPMENT, 4. ACCEPTANCE CRITERIA.
Introductory technical guidance for professional engineers and construction managers interested in cold storage refrigeration. Here is what is discussed: 1. REFRIGERATION SYSTEM DESIGN REQUIREMENTS, 2. SAFETY, 3. OPERATION AND MAINTENANCE, 4. ECONOMY, 5. REFRIGERANT PHASE-OUT AND REPLACEMENT, 6. SYSTEM DESIGN AND SELECTION, 7. EMERGENCY SHUT DOWN OF REFRIGERATION EQUIPMENT, 8. UNIT COOLERS, 9. GLOSSARY.
Introductory technical guidance for civil engineers, structural engineers and other professional engineers interested in seismic design criteria. Here is what is discussed: 1. GENERAL, 2. SEISMIC USE GROUPS, 3. SEISMIC DESIGN CATEGORIES, 4. REDUNDANCY, 5. OVERSTRENGTH, 6. COMBINATION OF LOAD EFFECTS, 7. PERFORMANCE LEVELS, 8. DESIGN GROUND MOTIONS, 9. PERFORMANCE OBJECTIVES, 10. MINIMUM REQUIREMENTS FOR ANALYTICAL PROCEDURES, 11. GENERAL DESIGN PROCEDURES, 12. PERFORMANCE OBJECTIVES FOR NONSTRUCTURAL SYSTEMS AND COMPONENTS.
This report, FEMA-350 - Recommended Seismic Design Criteria for New Steel Moment-Frame Buildings has been developed by the SAC Joint Venture under contract to the Federal Emergency Management Agency (FEMA) to provide organizations engaged in the development of consensus design standards and building code provisions with recommended criteria for the design and construction of new buildings incorporating moment-resisting steel frame construction to resist the effects of earthquakes. It is one of a series of companion publications addressing the issue of the seismic performance of steel moment-frame buildings. The set of companion publications includes: FEMA-350 - Recommended Seismic Design Criteria for New Steel Moment-Frame Buildings. This publication provides recommended criteria, supplemental to FEMA-302 - 1997 NEHRP Recommended Provisions for Seismic Regulations for New Buildings and Other Structures, for the design and construction of steel moment-frame buildings and provides alternative performance-based design criteria. FEMA-351 - Recommended Seismic Evaluation and Upgrade Criteria for Existing Welded Steel Moment-Frame Buildings. This publication provides recommended methods to evaluate the probable performance of existing steel moment-frame buildings in future earthquakes and to retrofit these buildings for improved performance. FEMA-352 - Recommended Postearthquake Evaluation and Repair Criteria for Welded Steel Moment-Frame Buildings. This publication provides recommendations for performing postearthquake inspections to detect damage in steel moment-frame buildings following an earthquake, evaluating the damaged buildings to determine their safety in the postearthquake environment, and repairing damaged buildings. FEMA-353 - Recommended Specifications and Quality Assurance Guidelines for Steel Moment-Frame Construction for Seismic Applications. This publication provides recommended specifications for the fabrication and erection of steel moment frames for seismic applications. The recommended design criteria contained in the other companion documents are based on the material and workmanship standards contained in this document, which also includes discussion of the basis for the quality control and quality assurance criteria contained in the recommended specifications. The information contained in these recommended design criteria, hereinafter referred to as Recommended Criteria, is presented in the form of specific design and performance evaluation procedures together with supporting commentary explaining part of the basis for these recommendations.
Introductory technical guidance for civil engineers and other professional engineers interested in design of hydraulic structures. Here is what is discussed: 1. INTRODUCTION, 2. RIGID STRUCTURE VS. FLEXIBLE STRUCTURE BEHAVIOR, 3. SLIDING STABILITY, 4. ROTATIONAL STABILITY, 5. DEVELOPING STANDARD RESPONSE SPECTRA AND EFFECTIVE PEAK GROUND ACCELERATIONS.