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Offshore structures often seem as challenging and complicated to grasp. This [course_title] is designed to enhance your knowledge of the reliability of offshore structures using probabilistic tools and enable you to identify other intrinsic uncertainties such as material properties, analysis methods, design procedures, and more. Moreover, learn the basics of the structural reliability analysis procedures and reliability-based design and principles underlying code calibration which is worth exploring. Furthermore, discover safety and reliability issues of offshore facilities during analysis, inspection as well as preparation.  


This course does not involve any written exams. Students need to answer 5 assignment questions to complete the course, the answers will be in the form of written work in pdf or word. Students can write the answers in their own time. Each answer needs to be 200 words (1 Page). Once the answers are submitted, the tutor will check and assess the work.


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Course Credit: NPTEL

Course Curriculum

Module: 01
Introduction 00:48:00
Uncertainties 00:44:00
Uncertainties II 00:26:00
Probability and Plausibility 00:36:00
Rules of Probability 00:46:00
Plausible Reasoning – I 00:39:00
Plausible Reasoning – Quantitative rules 00:38:00
Quantitative Rules 00:40:00
Probability Distributions 00:03:00
Module: 02
Random Variables 00:01:00
Random Variables II 00:33:00
Sampling Estimates 00:44:00
Modelling of Environmental Loads 00:44:00
Exercises I 00:40:00
Introduction 00:40:00
Components of Reliability analysis 00:45:00
Levels of Reliability 00:38:00
Error Estimation 00:41:00
Module: 03
Reliability methods – I 00:45:00
Reliability methods – II 00:36:00
Reliability methods – III 00:37:00
Reliability methods – IV 00:41:00
System Reliability – I 00:37:00
System Reliability II 00:41:00
System Reliability – III 00:35:00
Failure domains 00:46:00
Failure domains II 00:24:00
Application Problem – I 00:45:00
Module: 04
Application Problem – I continued 00:38:00
Application Problem II 00:44:00
Application Problem II continued 00:38:00
Application Problem II continued 00:38:00
Risk and Reliability 00:43:00
Reliability analysis of structural systems 00:42:00
Codes on structural reliability 00:39:00
Variables in Reliability analysis 00:40:00
Mechanical models in Reliability analysis 00:48:00
Mechanical modes in Reliability analysis II 00:38:00
Module: 05
Stochastic Process I 00:45:00
Stochastic Process II 00:45:00
Fatigue Reliability 00:42:00
Design SN curve 00:46:00
Simplified Fatigue Assessment 00:39:00
Short term fatigue damage 00:34:00
Behaviour of tubular joints 00:51:00
Tubular Joints – Experimental studies on T-Joints 00:47:00
Risk Assessment 00:38:00
Logical Risk analysis 00:41:00
Module: 06
Risk analysis of Mechanical Systems 00:37:00
FMEA II 00:38:00
Design FMEA for Offshore Triceratops 00:42:00
Fault Tree Analysis 00:41:00
Event Tree Analysis 00:32:00
Consequence Analysis 00:32:00
Risk Acceptability 00:32:00
Risk and Hazard assessment 00:46:00
Risk Picture 00:34:00
Risk Management 00:31:00
Submit Your Assignment 00:00:00
Certification 00:00:00

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