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Synergie Training offers specialised courses in Eurocodes for structures and buildings, covering seismic design, retaining walls, and structural robustness for civil and structural engineers.

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Synergie Training provides targeted courses on Eurocodes for various structures and buildings. You will learn to design retaining walls using Eurocode 7 and apply Eurocode 8 for seismic design. Our Structural Robustness and Disproportionate Collapse course focuses on designing buildings to prevent disproportionate collapse, incorporating Eurocode principles. Additionally, we offer training on Eurocode 0 and Eurocode 1, essential for understanding design principles and actions on structures.

Courses are available online, on-site, or at UK venues, including Inverness, Aberdeen, Glasgow, Edinburgh, and Dunfermline. Each course combines expert instruction with practical exercises to enhance your skills and confidence in applying Eurocodes to diverse structural designs.

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Explore our range of training courses in this category to find the right fit for your learning goals.

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Life-cycle management of engineering structure

£495+VAT
Online

The Online Life Cycle Management Structure Training Course aims to provide a comprehensive understanding of life cycle performance management strategies for engineering structures. It covers deterioration mechanisms, inspection, diagnosis, repair technologies, and life-end strategies. The course targets engineers and scientists involved in structural design, offering a balance of theory and practice. Lectures by Dr. You DONG from The Hong Kong Polytechnic University cover topics such as infrastructure sustainability, deterioration modeling, risk assessment, and intelligent inspection. The course spans 2 days and includes lecture notes in advance.

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Foundation Design to EC7

£395+VAT
Online

The Online EC7 Training Course focuses on imparting fundamental skills for geotechnical analysis and design of various foundation types using Eurocode 7 principles. Aimed at structural engineers, the course covers topics such as shallow foundations, piled foundations, and retaining walls, with practical examples provided. The course is led by Dr. Joshua Omer, a Senior Lecturer in Geotechnical Engineering with extensive experience in the field. Attendees include practicing engineers seeking to enhance their foundation design knowledge.

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Analysis & Design of Submarine Structures

£1195+VAT
Online

The Online Analysis & Design of Submarine Structures Training course focuses on the structural design of submarines, emphasizing the selection of materials for weight critical designs and resistance to high dynamic loads. It covers essential strength formulations and design philosophy. The course targets Engineers, Operations managers, Fabricators, Applied Scientists, and Technologists involved or interested in submarine design. The duration is 4 days.

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Light weight composite material & structures

£395+VAT
Online

The Online Composite Material Training Course offers a comprehensive overview of composite materials, covering their functionalities, engineering processes, design, analysis, manufacturing, and testing methods. The course includes case studies to illustrate challenges faced in designing advanced composite structures. Aimed at engineers, operations managers, scientists, and technologists interested in lightweight composite material and structure design, the course provides valuable insights for those involved in designing and managing various engineering structures. The course consists of four lectures totaling six hours, delivered by Dr. Mohammad Fotouhi.

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Finite element for Marine structures

£595+VAT
Online

This online Finite Element for Marine Structures Training course covers topics such as Matrix Algebra, Differential Equations, and FEM-Weighted Residue Approach. It aims to provide engineers and scientists involved in onshore and offshore structures with the necessary knowledge for design, operation, and assessment. The course includes lectures on Finite Element Analysis, stiffness matrices for 1D, 2D and 3D FEA, structural dynamics, and case studies. The lecturer, Dr. Deepak Kumar, brings expertise in structural dynamics and offshore structures. The course spans 2 days and is suitable for those seeking to enhance their understanding of Finite Element Analysis.

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CFD and Hydrodynamics for Ships

£595+VAT
Online

Online CFD and Hydrodynamics for Ships Training is designed to provide engineers and scientists involved in ship design with a comprehensive understanding of Computational Fluid Dynamics (CFD) technology. The course covers topics such as turbulent flows, ship geometry modeling, CFD applications, turbulence modeling, hull optimization, and propeller numerical methods. Attendees from ship management, oil companies, classification societies, and ship builders will benefit from the innovative content and structure that balances theory and practice. The course aims to equip participants with the knowledge and skills to apply CFD techniques effectively in ship design.

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Dynamic Response of Masts, Towers, and Horizontal Axis Turbines

£595+VAT
Online

The Online Masts, Towers and Axis Turbines Training course focuses on calculating wind turbulence and fluidelastic instabilities for masts, towers, and horizontal axis turbines. It covers incident flow, fluid loading, dynamic response, extreme responses, fatigue loading, and fatigue damage calculation. The course is designed for engineers, scientists, and students involved in wind or renewable energy engineering. It offers a balance of theory and practice through lectures and worked examples over a 2-day duration. The course is led by Professor Nigel Barltrop, an expert in fatigue and strength of offshore structures and renewable energy devices.

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Risk Analysis & Reliability Engineering - Online

£995+VAT
Online

The Online Risk and Reliability Training course is a 4-day program focusing on theoretical and practical applications of risk and reliability engineering. It covers topics such as risk analysis, reliability engineering, RAM analysis, failure distributions, and Monte Carlo simulations. Participants will learn to analyze engineering problems, interpret data, assess risk, and develop solutions for risk mitigation. Suitable for mechanical, process, and energy engineers, the course aims to provide applied knowledge in risk and reliability engineering methods.

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