EdX

Forensic Engineering: Learning from Failures (edX)

Forensic Engineering: Learning from Failures (edX)

Don’t let good failures go to waste! Identify the causes of failure and use this knowledge to enhance safety and improve performance. What do collapsed buildings, infected hospital patients, and crashed airplanes have in common? If you know the causes of these events and conditions, they can all be prevented. In this course, you will learn how to use the TU Delft mind-set to investigate the causes of such events so you can prevent them in the future.

Class Deals by MOOC List - Click here and see EdX's Active Discounts, Deals, and Promo Codes.

When, for instance, hundreds of hospital patients worldwide got infected after having gall bladder treatments, forensic engineering helped reveal how the design and use of the medical instruments could cause such widespread infections. As a result, changes were made to the instrument design and the procedural protocols in hospitals. Learning from failure in this case benefitted patient health and safety across the world.
After taking this course you will have an understanding of failures and the investigation processes used to find their causes. You will learn how to apply lessons gained from investigating previous failures into new designs and procedures.
The TU Delft Forensic Engineering mind-set involves recommendations for:

  • Data collection ranging from desk studies (theoretical/predicted performance of structures) to field investigations (actual performance of failed structures)
  • Hypothesis generation techniques for technical and procedural causes of failure
  • Hypothesis testing for engineering aspects of forensic cases
  • Reporting findings about the most likely causes and consequences
  • Improving engineering designs based on lessons learned from forensic cases

The course uses case studies from Building Engineering, Aerospace Engineering, and Biomechanical Engineering. All of these provide great examples that illustrate the approaches and highlight technical and procedural causes of failure. You’ll find that not only is it crucial, but it’s also exciting to learn from failures.
This course is most useful for:

  • Students who want to familiarize themselves with forensic engineering
  • Building, aeronautical, biomechanical designers and engineers
  • Forensic investigators, police, legal and insurance professionals
  • Professionals from municipalities, government agencies or clients who are asked to perform internal forensic investigations

This course has been designed by TU Delft's international experts on safety issues, failure investigations and forensics. Arjo Loeve, Michiel Schuurman and Karel Terwel are members of the TU Delft Forensics community, the Delft Safety & Security Institute and the CLHC Expertise Center for Forensic Science and Medicine.

What you'll learn

  • The basic steps in a forensic investigation
  • Essential forensic engineering methods and techniques
  • How to apply the TU Delft Forensic Engineering mind-set in the fields of Building Engineering, Aeronautical Engineering and Biomechanical Engineering
  • Ways to develop a positive attitude and the right mind-set to learn from failures

Syllabus

Module 1: Introduction to Forensic Engineering
You will learn what Forensic Engineering is and why it is important. Furthermore, you will be introduced to basic concepts such as lifecycles of constructed facilities, failure, and damage.

Module 2: The Forensic Engineering Investigation
You will learn the basic steps of a Forensic Engineering process and how the TU Delft mind-set can help to perform these steps in a factual, reliable and systematic way.

Module 3*: Case from Civil Engineering
You will learn about various structural failure mechanisms and you will practice setting hypotheses for structural failures.

Module 4*: Case from Aerospace Engineering
You will learn about the failure mechanism fatigue in airplanes and how you can test to see whether this occurred.

Module 5*: Case from Biomechanical Engineering
You will learn about contamination of medical instruments and how technical and procedural aspects play a role.

Module 6: Course debriefing
In this week, the outcomes of the different cases from Modules 3-5 are revealed. Best practices and tips for the future are discussed and some results and contributions from participants are put in the spotlight!

*Modules 3-5 will be offered at the same time, to allow students to choose or prioritize their preferred module(s) based on their main areas of interest.

Go to Class
MOOC List is learner-supported. When you buy through links on our site, we may earn an affiliate commission.

Related Courses

A System View of Communications: From Signals to Packets (Part 2) (edX) EdX
The Hong Kong University of Science and Technology - HKUST,HKUSTx

A System View of Communications: From Signals to Packets (Part 2) (edX)

Explore the tradeoffs in designing communication systems like mobile phones, and the engineering tools to handle them. Have you ever wondered how information is transmitted using your mobile phone or a WiFi hotspot? This introductory course seeks to enable you to understand the basic engineering tools used and tradeoffs encountered in the design of these communication systems.

Self Paced
Self-Paced
Caer o No caer. El secreto de las estructuras (edX) EdX
Universidad Carlos III de Madrid - UC3M,UC3Mx

Caer o No caer. El secreto de las estructuras (edX)

Las estructuras están presentes en todos los sistemas que nos rodean. Descubrirlas y comprender cómo funcionan es sencillo y fascinante. Las estructuras están implicadas en nuestras vidas: las plantas, los animales, casi todo lo que fabrica el ser humano, incluso nuestro propio cuerpo, deben soportar una serie de fuerzas sin romperse, y por lo tanto prácticamente cualquier elemento de nuestro entorno es una estructura de una clase u otra.

Self Paced
Self-Paced
Energy Within Environmental Constraints (edX) EdX
HarvardX,Harvard University

Energy Within Environmental Constraints (edX)

A quantitative introduction to the energy system and its environmental impacts. Humanity faces an immense challenge: providing abundant energy to everyone without wrecking the planet. If we want a high-energy future while protecting the natural world for our children, we must consider the environmental consequences of energy production and use. But money matters too: energy solutions that ignore economic costs are not realistic, particularly in a world where billions of people currently can’t afford access to basic energy services. How can we proceed?

Self Paced
Self-Paced
Design of mound breakwaters for feasibility studies. Cubipod® Manual 2016 (edX) EdX
Universitat Politècnica de València,UPValenciaX

Design of mound breakwaters for feasibility studies. Cubipod® Manual 2016 (edX)

The goal of this course is to provide the tools to create feasible designs of mound breakwaters protected with Cubipod® armors fulfiling the prescribed economic, functional and safety requirements. This course is intended for professionals of coastal and port engineering who work in the preliminary design and feasibility studies of breakwaters.

Self Paced
Self-Paced
Logistics Fundamentals (edX) EdX
LOGYCAX

Logistics Fundamentals (edX)

Have you ever wondered how products arrive at your hands? From the clothes we wear to the food we consume, they have been through a series of links, processes, operations and flows we know as logistics. Logistics are the first trait for a company’s success! Learn all about logistics and how you can use it to achieve every goal in your organization. In this online course you will gain a holistic view of logistics and transportation within your company, which is useful to understand how a company can thing strategically thanks to basic but essential content.

Self Paced
Self-Paced
Advanced Transport Phenomena (edX) EdX
Delft University of Technology,DelftX

Advanced Transport Phenomena (edX)

Learn how to tackle complex mass and heat transfer problems and apply the results in your own environment. How can you reduce the energy loss of your home? What is the underlying science of energy loss in pipes? Which heat and mass transfer problems do we have to tackle to make consumer products? In this engineering course, you will learn about the engineering principles that play an important role in all of these and more phenomena. You will learn about microbalances, radiation, convection, diffusion and more and their applications in everyday life.

Self Paced
Self-Paced
Introducción a la Ingeniería del Software (edX) EdX
Universidad Autonoma de Madrid,UAMx

Introducción a la Ingeniería del Software (edX)

Conoce las distintas fases de desarrollo por las que pasa un proyecto informático, así como las actividades de gestión necesarias para lograr finalizar el proyecto con éxito. ¿Alguna vez te has preguntado qué es y para qué sirve la Ingeniería de Software? ¿Quieres saber por qué es tan necesaria esta disciplina y por qué se utiliza tanto en entornos tecnológicos? ¿O cuál es el motivo de que muchos proyectos informáticos no finalizan en tiempo y coste o con la calidad deseada?

Self Paced
Self-Paced
Modeling and Simulation of Multibody Systems - Part I (edX) EdX
LouvainX,Université Catholique de Louvain - UCL

Modeling and Simulation of Multibody Systems - Part I (edX)

Vehicles, bicycles, cranes, human body and robots are multibody systems. Learn how to model them and compute their kinematic and dynamic characteristics, such as velocities, accelerations and forces. This course aims at acquainting you with the modeling and simulation of complex articulated mechanical systems, denoted as multibody systems, such as vehicles, merry-go-rounds, motorbikes, cranes, human bodies, suspensions, robot manipulators, mechanical transmissions, etc.

Self Paced
Self-Paced
水力学 | Hydraulics (edX) EdX
Tsinghua University,TsinghuaX

水力学 | Hydraulics (edX)

This Hydraulics course explores the science of hydraulics and focuses on hydrodynamic laws and their applications, which are indispensable and a critical factor in the development and utilization of water resources. 水,是人类生活不可或缺的资源。水力学是人类开发利用水资源的有力工具。本课教你认识和掌握水流静止和运动的力学规律,了解在相关领域的工程应用。

Self Paced
Self-Paced
Engineering Drawing | 工程制图 (edX) EdX
Tsinghua University,TsinghuaX

Engineering Drawing | 工程制图 (edX)

“Engineering Drawing” is a fundamental course of engineering technology, including two parts: basic theories and advanced practices. The first part will introduce the theory of projection and its application on drawings. The second part is to give students general experience in producing a variety of mechanical drawings.

Self Paced
Self-Paced