Thread Content
1. Differences among various standards and codes related to pipeline stress (B31.1, B31.3, national standards, etc.) 2. New features of the CAESARII software 3. Typical pipeline modeling techniques, definition of material databases, and reporting of static analysis results 4. Flexible design of pipelines and principles for selecting appropriate materials 5. Design and selection principles for pipeline supports and hangers 6. Use of the CAESARII scenario editor; application of seismic, wind, air pressure, hydrostatic test, uniformly distributed loads, and concentrated loads in the scenario editor 7. Design and analysis of pipelines in tank areas; impact of tank deformation and foundation settlement on pipelines; methods for analyzing local stresses at tank openings 8. Analysis of pipe connections in static equipment and local stress analysis. Such as vertical and horizontal containers, towers, tanks, heat exchangers, etc. 9. Stress criteria and requirements for moving equipment (pumps, compressors, centrifuges, etc.) and nozzles of heating furnaces. 10. Stress analysis of long-distance oil and gas pipelines (buried directly, running across structures); establishment of buried models, common problems and solutions. 11. Engineering case studies – Insights gained from learning. 1. Understanding the responsibilities of the pipeline and mechanical engineering field ; 2. Which pipes require stress analysis calculations. 2. Understanding the differences between GB and ASME codes regarding pipe stress analysis. 3. Knowing how to use the various functional modules of the CAESARII software and applying them flexibly in different situations. 4. Developing skills and abilities in using CAESARII for simulation modeling to solve practical cases. 5. Mastering static pipe analysis methods and engineering design examples. 6. Practicing with multiple examples to quickly master the CAESARII software. (I) 1. Basic theories of vibration analysis. 2. CAESARII’s methods for analyzing dynamic problems. 3. The various dynamic analysis modules built into CAESARII and their applications. 4. Dynamic analysis of pipes ; Explanation of software calculation processes (modal analysis, vibration analysis, dynamic calculation of safety valve discharge, seismic analysis, water hammer/air hammer calculation), description of various dynamic control parameters; 6. Design of pump stations and centrifugal compressor pipelines as well as pipeline stress analysis, control and verification of loads on the connections of rotating equipment; 7. Practical examples – Heat exchanger equipment technology