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Quasi-Static Analysis Formulation for Straight Buried Piping Systems, (Seismic Vulnerability, Behavior and Design of Underground Piping Systems)
Overall aims of this research are to develop a systematic way of assessing the adequacy and vulnerability of water/sewer distribution systems subjected to seismic loads, and also to develop future design methodologies for water/sewer systems. This technical memorandum develops the quasi-static governing equilibrium equations for the axial response of buried pipelines subjected to earthquakes. The formulation is general and includes such parameters as variable elasticity, segment lengths, and cross sections of pipes, variable joint stiffnesses, variable soil resistant characteristics, and end conditions. Variations of seismic wave form, propagation velocity, and delay time can be incorporated into the numerical procedure.
Quasi-Static Analysis Formulation for Straight Buried Piping Systems, (Seismic Vulnerability, Behavior and Design of Underground Piping Systems)
Overall aims of this research are to develop a systematic way of assessing the adequacy and vulnerability of water/sewer distribution systems subjected to seismic loads, and also to develop future design methodologies for water/sewer systems. This technical memorandum develops the quasi-static governing equilibrium equations for the axial response of buried pipelines subjected to earthquakes. The formulation is general and includes such parameters as variable elasticity, segment lengths, and cross sections of pipes, variable joint stiffnesses, variable soil resistant characteristics, and end conditions. Variations of seismic wave form, propagation velocity, and delay time can be incorporated into the numerical procedure.
Quasi-Static Analysis Formulation for Straight Buried Piping Systems, (Seismic Vulnerability, Behavior and Design of Underground Piping Systems)
L. R. L. Wang (author)
1978
31 pages
Report
No indication
English
Industrial & Mechanical Engineering , Civil Engineering , Urban & Regional Technology & Development , Soil & Rock Mechanics , Pipelines , Subsurface structures , Earthquakes , Piping systems , Water pipes , Sewer pipes , Earthquake resistant structures , Dynamic structural analysis , Pipe joints , Design , Earthquake engineering , Seismic design
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