Master advanced concepts in structural dynamics with focus on continuous systems and matrix analysis.
Master advanced concepts in structural dynamics with focus on continuous systems and matrix analysis.
This advanced course explores the implementation of continuous structural elements versus discrete models in dynamic systems. It focuses on matrix representation and Lagrange's equation solutions for conservative structural systems. The curriculum covers advanced topics including Gaussian modes, prismatic beam analysis, and natural eigenshapes in vibration theory. Students learn to bridge the gap between continuous and digital dynamic systems, making connections between theoretical foundations and practical applications in structural analysis and certification.
4.2
(10 ratings)
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English
What you'll learn
Master matrix representation in dynamic systems
Understand Lagrangian mechanics applications
Analyze continuous vs discrete dynamic systems
Implement beam dynamic analysis techniques
Apply modal analysis to structural problems
Develop skills in dynamic system modeling
Skills you'll gain
This course includes:
2.5 Hours PreRecorded video
8 assignments
Access on Mobile, Tablet, Desktop
FullTime access
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There are 5 modules in this course
This course provides an in-depth exploration of continuous structural elements and their dynamic behavior. Students learn to implement matrix approaches for dynamic systems analysis, understand Lagrange representation, and connect digital and continuous dynamic systems. The curriculum emphasizes practical applications in structural analysis, focusing on natural modes, vibration theory, and dynamic testing methodologies.
Analytical dynamics
Module 1 · 1 Hours to complete
Linear structures
Module 2 · 1 Hours to complete
Discrete eigenshapes
Module 3 · 3 Hours to complete
Dynamics of beam
Module 4 · 3 Hours to complete
General assessment
Module 5 · 1 Hours to complete
Fee Structure
Payment options
Financial Aid
Instructor
Distinguished Aerospace Engineer and Space Systems Pioneer
Yves Gourinat brings extensive expertise in aerospace engineering, having spent seven years at Aerospatiale-Aircraft (now Airbus SAS) working on composite structures, followed by a decade as associate professor specializing in Launch Vehicle Dynamics and Human Spaceflight, including Soyuz-Mir training. In 2003, he established the nonlinear dynamics and shell-fluid interaction team at ISAE-SUPAERO, University of Toulouse, where he later served as Director of the Aeronautical-Astronautical Doctoral School and Deputy Director of the Clément Ader Institute. Since 2020, he has led the R&D group focused on future aircraft and biodynamics. His academic credentials include an ENSMA Engineering degree, a doctorate in Physics of Structures, and qualification as a Professor of Universities. His contributions to aerospace science encompass 162 internationally referenced scientific publications, earning him prestigious recognitions including the 2011 Frank J Malina Astronautics Medal from the International Astronautical Federation, appointment as Officer of the Ordre des Palmes Académiques, and election as Corresponding Member of the Air & Space Academy.
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4.2 course rating
10 ratings
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