Genre: eLearning | Language: English + .srt | Duration: 9 lectures (4h 22m) | Size: 3.15 GB
Basic knowledge of civil and geotechnical eeering will be advantageous.
Basic to intermediate level
Analysis and civil and geotechnical Eeering simulation
linear static analysis
non linear analysis
Meshing in Abaqus
Validation of results using Abaqus
Define soil properties using Cap Plasticity , Mohr Coulomb and Drucker Prager
Calculation of the load capacity of a single pile Abaqus
Load capacity of single pile in multi-layer soil Abaqus
Calculation of total load capacity of the pile group Abaqus
Simulation piled raft in interaction with soil in the Abaqus
Today, product simulation is often being performed by eeering groups using niche simulation tools from different vendors to simulate various design attributes. The use of multiple vendor software products creates inefficiencies and increases costs. SIMULIA delivers a scalable suite of unified analysis products that allow all users, regardless of their simulation expertise or domain focus, to collaborate and seamlessly share simulation data and approved methods without loss of information fidelity.
The Abaqus Unified FEA product suite offers powerful and complete solutions for both routine and sophisticated eeering problems covering a vast spectrum of industrial applications. In the automotive industry eeering work groups are able to consider full vehicle loads, dynamic vibration, multibody systems, impact/crash, nonlinear static, thermal coupling, and acoustic-structural coupling using a common model data structure and integrated solver technology. Best-in-class companies are taking advantage of Abaqus Unified FEA to consolidate their processes and tools, reduce costs and inefficiencies, and gain a competitive advantage.
In this course you will learn ABAQUS at the basic level.
The main content of this course as shown below:
Mesh
Linear static analysis
Geometric nonlinearity
Material non-linearity
Static analysis
Everyone who want to learn Abaqus
Civil and Geotechnical eeers
Master and PHD students
Research project
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