This session focuses on the practical Soil-Structure Interaction (SSI) analysis process for Pile Raft Foundations, featuring a live demonstration of NX Interact. To address the complex data exchange challenges inherent in large-scale foundation design, we will reveal the details of an automated iterative analysis workflow using API integration between GTS NX and CIVIL/GEN NX. Through a real-world case study of a foundation with over 200 piles, participants will discover an optimized workflow that drastically reduces analysis time while maximizing structural reliability.
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Description
In this session, we will demonstrate the practical application of Soil-Structure Interaction (SSI) with a specific focus on Pile Raft Foundations. The structural integrity of complex foundations depends on the organic exchange of load and stiffness data between the soil continuum and the structural elements. Traditional manual data entry often leads to bottlenecks in the design workflow, especially when multiple iterations are required to achieve convergence.
This session aims to showcase the NX Interact function, a powerful API-based feature that fully automates iterative SSI analysis between GTS NX and CIVIL/GEN NX. We will delve into a comprehensive demonstration—from the initial modeling of laterally loaded piles to the stress analysis of a large-scale piled raft foundation featuring over 200 piles. Participants will gain valuable insights into establishing an automated, high-performance workflow that ensures absolute precision in results extraction and design optimization.
Key Points
Automated Iterative SSI AnalysisExperience the NX Interact function that automates the complex data transfer between GTS NX and structural software via API, eliminating manual errors and accelerating convergence.
Real-world Foundation Case StudyExplore a detailed demonstration of a Piled Raft Foundation (24m deep, 200+ piles), covering everything from soil modeling to advanced stress analysis using the Soil Continuum Method.
Efficient Results & Workflow OptimizationLearn professional techniques for seamless load table import/export and stiffness data feedback, ensuring an integrated and high-performance design environment for critical infrastructure.
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