His responsibilities include stress and thermal analysis of pressure vessels, piping, and tankage; development and maintenance of Computed Aided Engineering CAE systems for plant engineering; advanced finite element methods; Fitness-For-Service analysis of in-service equipment; high temperature design and remaining life assessment; fracture mechanics; failure analysis and resolution of lessons-learned; development and maintenance of engineering standards; implementation of design changes and problem solving at shut-downs; and troubleshooting and recommendations for repairs to damaged equipment.
He also has extensive experience in preparation and delivery of training courses to practicing engineers in industry-related technologies such as Fitness-For-Service. Osage taught graduate level courses in strength of materials and elasticity, structural analysis and finite element methods, and structural optimization. Osage is internationally recognized as an industry expert and leader in the development and use of FFS technology.
(PDF) Boiler and Pressure Vessel Code AN INTERNATIONAL CODE | Sudharsan M - fyxohahyso.tk
As the architect and principal author of API Fitness-For-Service , he developed many of the assessment methodologies and supporting technical information. Osage also has internationally recognized expertise in the design of new equipment. Osage was named an ASME Fellow in to honor his contributions to codes and standards development work.
Osage is also currently working on the next generation of RBI technology where Fitness-For-Service assessment procedures will be used to compute the probability of failure for Risk-Based Inspection. ASME Master Classes are premium learning programs comprised of advanced topics aimed at experienced engineering professionals. Master Classes emphasize learning through discussion of real world case studies and practical applications.
Osage will be working to ensure that the vast amount of technology and data of these organizations is preserved and made available to industry. I Have Unanticipated Damage.
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