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RESOURCES

Papers

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Automated analysis and design of LNG storage tank: reducing engineers’ time and time to market.
  • Paper presented at Gastech Exhibition and Conference, Milan, Italy, 5-8 September 2022 by Jesus Rodriguez of LUSAS.
  • This paper describes an efficient design approach for LNG storage tanks that adopts a 2D axisymmetric model for thermal analysis, and a 3D shell model for structural loads, considering seismic effects. This requires an integrated methodology extending to the combination of results and design checking, with detailed attention to the varying reinforcement orientation.
  • Methods have been developed based on the requirements of ongoing LNG tank projects for companies such as KOGAS (Korea Gas Corporation) and KGT (Korea Gas Technology Corporation). These enable all the required design checks to be performed in a single 3D shell model bringing together results from thermal, seismic, and staged construction analyses and allowing design checks performed to various international standards.
  • LUSAS finite element analysis software was used to develop the required tools to automate the modelling and design of the storage tanks. Customisation and automation through an open API enables users with basic programming knowledge to create the various user defined features required, extract results and combine them with speed and accuracy in the desired format.
  • Solutions to the challenges encountered have enabled improvements in the efficiency of the analysis and design process for LNG storage tanks to reduce the engineers time and time to market by an estimated 20-30%.
Moving from Linear to Nonlinear Analysis

Featuring four live online sessions, this course is for engineers with a good understanding of linear analysis but who need to progress to nonlinear analysis for design and assessment.

Many problems facing designers and engineers are nonlinear in nature, whether it be masonry arch cracking, buckling of a plate girder system or soil-structure interaction. While the assumption of linearity is routinely used for many designs, sometimes a more refined – nonlinear – approach is justified.

With LUSAS you can straightforwardly model the various forms of nonlinear behaviour that can be encountered, and become proficient in using tools and facilities that are often seen to be the preserve of the experts.

Understanding Basic Dynamics – Modal to Time-step Analysis

Featuring three live online sessions, this course is for engineers with a good understanding of linear analysis but who need to progress to dynamic analysis for design and assessment.

Many problems facing designers and engineers are dynamic in nature, whether it be vibration of a footbridge or impact of an object hitting a structure. While the assumption of linearity is routinely used for many designs with the application of dynamic load factors, sometimes a more refined – dynamic – approach is justified.

With LUSAS you can straightforwardly model the various forms of dynamic behaviour that can be encountered, and become proficient in using tools and facilities that are often seen to be the preserve of the experts.

Any structure. One solution.

Discover
  • Why LUSAS?
  • Version 20
Solutions
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  • Ground
  • Energy
  • Other Structures
Case Studies
  • Bridges
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  • Ground
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  • Other Structures
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  • - Videos
  • - Training Courses
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Company
  • Contact Us
  • About us
  • Our History
  • Team
  • Careers
  • Events
  • Developer/Consultants
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LUSAS
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66 High Street
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Surrey
KT1 1HN
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info@lusas.com

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