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About this Virtual Instructor Led Training (VILT) The 5 half-day Piping Stress Engineering Virtual Instructor Led Training (VILT) course will systematically expose participants to: The theory and practice of piping stress engineering, with special reference to ASME B 31.1 and ASME B 31.3 Standards. The basic principles and theories of stress and strain and piping stress engineering, through a series of lessons, case study presentations, in-class examples, multiple-choice questions (MCQs) and mandatory exercises. Principal stresses and shear stresses which form the backbone of stress analysis of a material. Expressions for these quantities will be derived using vector algebra from fundamentals. Thermal stress-range, sustained and occasional stresses, code stress equations, allowable stresses, how to increase flexibility of a piping system, cold spring. The historical development of computational techniques from hand calculations in the 1950s to the present-day software. Training Objectives On completion of this VILT course, participants will be able to: Identify potential loads the piping systems and categorise the loads to primary and secondary. Determine stresses that develop in a pipe due to various types of loads and how to derive stress-load relationships, starting from scratch. Treat the primary and secondary stresses in piping system in line with the intent of ASME Standards B 31.1 and B 31.3 and understand how the two codes deal with flexibility of piping systems, concepts of self-springing and relaxation/shake down, displacement stress range and fatigue, what is meant by code compliance. Understand the principles of flexibility analysis, piping elements and their individual effects, flexibility factor, flexibility characteristic, bending of a curved beam and importance of virtual length of an elbow in the flexibility of a piping system. Learn stress intensification factors of bends, branch connections and flanges. Understand how the stresses in the material should be controlled for the safety of the piping system, the user and the environment. Examine how codes give guidance to determine allowable stresses, stress range reduction due to cyclic loading, and effects sustained loads have on fatigue life of piping. Confidently handle terminal forces and moments on equipment. Understand the supplementary engineering standards required to establish acceptance of the equipment terminal loads and what can be done when there are no engineering standard governing equipment terminal loads is available and learn the techniques of local stress analysis. Get a thorough understanding of the concepts and the rules established by the ASME B 31.1 and ASME B 31.3 Standards. Perform flange load analysis calculations based on Kellogg's Equivalent Pressure method & Nuclear Code method. Perform the same using a piping stress analysis software and check for flange stresses and leakage. Confidently undertake formal training of piping stress analysis using any commercial software, with a clear understanding of what happens within the software rather than a 'blind' software training and start the journey of becoming a specialist piping stress engineer. Target Audience The VILT course is intended for: Recent mechanical engineering graduates who desire to get into the specialist discipline of Piping Stress Engineering. Junior mechanical, chemical, structural and project engineers in the industry who wish to understand the basics of Piping Stress Engineering. Engineers with some process plant experience who desire to progress into the much sought-after specialist disciplines of Piping Stress Engineering. Mechanical, process and structural engineers with some process plant experience who desire to upskill themselves with the knowledge in piping stress engineering and to become a Piping Stress Engineer. Any piping engineer with some pipe stressing experience in the industry who wish to understand the theory and practice of Piping Stress Engineering at a greater depth. A comprehensive set of course notes, practice exercises and multiple-choice questions (MCQs) are included. Participants will be given time to raise questions and participants will be assessed and graded based on responses to MCQs and mandatory exercises. A certificate will be issued to each participant and it will carry one of the three performance levels: Commendable, Merit or Satisfactory, depending on how the participant has performed in MCQs and mandatory exercises. Training Methods The VILT course will be delivered online in 5 half-day sessions comprising 4 hours per day, with 2 breaks of 10 minutes per day. Course Duration: 5 half-day sessions, 4 hours per session (20 hours in total). Trainer Your expert course leader is a fully qualified Chartered Professional Engineer with over 40 years of professional experience in Oil & Gas (onshore and offshore), Petrochemical and Mining industries in engineering, engineering/design management and quality technical management related to plant design and construction. At present, he is assisting a few Perth based oil & gas and mining companies in detail engineering, piping stress analysis, feasibility study and business development work related to plant design. He is a pioneer in piping stress engineering in Western Australia. His recent major accomplishments include the following roles and challenges: Quality Technical Support Manager of USD 54 billion (Gorgon LNG Project). This encompassed management of quality technical services connected with Welding, Welding Related Metallurgy, Non-Destructive Examination, Insulation /Refractory /Coating, AS2885 Pipelines Regulatory Compliance and Pressure Vessel Registration. Regional Piping Practice Lead and Lead Piping Engineer of Hatch Associates. In this role, he was responsible for providing discipline leadership to several mining projects for BHP Billiton (Ravensthorpe), ALCOA-Australia (Alumina), Maáden Saudi Arabia (Alumina), QSLIC China (Magnesium), COOEC China (O&G Gorgon). He was actively involved in the development of piping engineering practice in WA, including training and professional development of graduate, junior and senior engineers. This also includes the formation of the Piping Engineering Specialist Group. Lead Piping/Pipe Stress Engineer on ConocoPhillips' (COP) Bayu Undan Gas Recycle, Condensate production and processing platform. He was able to develop several novel design methodologies for the project and provided training to engineers on how to implement them. These methodologies were commended by COP and the underwriters of the project Lloyds Register of Shipping, UK. Creator of Piping Engineering Professional Course aimed at global engineering community. Professional Affiliations: Fellow, Institution of Mechanical Engineers, UK (IMechE) Fellow, Institution of Engineers, Australia (EA), National Register of Engineers (NER) Member American Society of Mechanical Engineers, USA (ASME) Honorary Life Member, Institution of Engineers, Sri Lanka (IESL) POST TRAINING COACHING SUPPORT (OPTIONAL) To further optimise your learning experience from our courses, we also offer individualized 'One to One' coaching support for 2 hours post training. We can help improve your competence in your chosen area of interest, based on your learning needs and available hours. This is a great opportunity to improve your capability and confidence in a particular area of expertise. It will be delivered over a secure video conference call by one of our senior trainers. They will work with you to create a tailor-made coaching program that will help you achieve your goals faster. Request for further information about post training coaching support and fees applicable for this. Accreditions And Affliations
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About this training course This 3-days training will provide a comprehensive review of integrity of wells exposed to carbon dioxide (CO2) in the context of Carbon Capture Utilization for enhanced oil recovery and Storage (CCUS). CO2 geological storage is a proven technology to reduce greenhouse gas emissions from sources such as coal power plants, cement kilns and steel mills. Wells are widely considered the most critical containment element, especially older wells that are not used to inject CO2 or monitor the plume evolution in the storage reservoir. The main reason for this perceived risk is the high corrosion rate of carbon steel when exposed to wet CO2, and the tendency of Portland cement to react with the gas. The training course advanced contents build on 15 years' experience in carbon storage, both in the development and deployment of technologies. First-hand, in-depth knowledge of the subject will allow us to debunk myths and focus on the real challenges of wells encountering CO2. Training Objectives After the completion of this training course, participants will be able to: Explain the CCUS market drivers Examine the behavior of CO2, on surface and in the reservoir Diagnose cement defects and design repairs Understand the limits of Portland cement Assess the benefits of different technologies and materials Realize why geology is a dominant factor in cement performance Critically choose the most appropriate monitoring techniques Classify aging processes of cement, steel, and rock when exposed to CO2 Assess the risk of existing wells if they encounter the CO2 plume Examine recent advances in real-time approaches to the production monitoring and lift management Target Audience This training course is suitable and will greatly benefit: All surface technical personnel such as process engineers & technologists Facility engineers, production engineers & technologists Drilling engineers and Well engineers Design engineers and Integrity engineers P&A engineers and Cementing engineers Geologists Senior management executives will benefit from this training as covers an overview of the technical and commercial details of CO2 capture technologies and risks involved. Course Level Intermediate Training Methods The training instructor relies on a highly interactive training method to enhance the learning process. This method ensures that all participants gain a complete understanding of all the topics covered. The training environment is highly stimulating, challenging, and effective because the participants will learn by case studies which will allow them to apply the material taught in their own organization. Course Duration: 3 days in total (21 hours). Training Schedule 0830 - Registration 0900 - Start of training 1030 - Morning Break 1045 - Training recommences 1230 - Lunch Break 1330 - Training recommences 1515 - Evening break 1530 - Training recommences 1700 - End of Training The maximum number of participants allowed for this training course is 20. This course is also available through our Virtual Instructor Led Training (VILT) format. Trainer Your expert course leader is an engineer with a passion for well integrity and possesses 28 years of international experience in field operations, technology development and management in the oil & gas and carbon storage sectors. Since 2018 he is program chair of the Well Integrity Technical Section of the Society of Petroleum Engineers (SPE). He is also author or co-author of 31 technical papers, a book chapter on CO2 geological storage and 7 patent applications. He delivers training on well integrity, plug and abandonment, asset integrity, risk management and QHSE across the Eastern Hemisphere, and carries out active research on harnessing geological barriers, modeling leaks through cement, and quantifying methane emissions from oil & gas wells. He has extensive expertise in: Well integrity, cementing, corrosion, upstream oil & gas (drilling, completion), carbon capture and storage, mathematical modeling, risk management, reliability, HSSE (health/safety/security/environment), asset integrity, management systems, sustainable development, project management, portfolio management, training, and technology development and innovation. He has personally worked on CCS projects in Europe (France, Germany, Netherlands, Norway), Algeria, Japan and USA. Partial list of companies that have benefited from the trainer's expertise: Vermilion Energy Geostock Aker BP Shell Statoil ENI TNO Geogreen Wintershall Archer INA and many more Recent CCS consulting track record: Schlumberger Total Oxand TNO THREE60 Energy and others POST TRAINING COACHING SUPPORT (OPTIONAL) To further optimise your learning experience from our courses, we also offer individualized 'One to One' coaching support for 2 hours post training. We can help improve your competence in your chosen area of interest, based on your learning needs and available hours. This is a great opportunity to improve your capability and confidence in a particular area of expertise. It will be delivered over a secure video conference call by one of our senior trainers. They will work with you to create a tailor-made coaching program that will help you achieve your goals faster. Request for further information post training support and fees applicable
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Elevate your expertise in clean hydrogen derivatives - ammonia, methanol, and synthetic hydrocarbon with EnergyEdge's course. Enroll now for virtual instructor-led training!
Join our comprehensive face-to-face training course on Obstructive Lung Diseases designed for Registered Nurses (RNs) and Healthcare Assistants (HCAs). Enhance your skills in managing asthma, COPD, bronchitis, emphysema, bronchiectasis, and cystic fibrosis. Earn CPD-accredited certification from our Centre of Excellence. Enroll now! Are you a Registered Nurse (RN) or Healthcare Assistant (HCA) looking to deepen your knowledge of obstructive lung diseases? Our comprehensive face-to-face training course covers everything you need to know about asthma, COPD, bronchitis, emphysema, bronchiectasis, and cystic fibrosis. 🔹 Key Features: Engaging lectures and hands-on workshops Practical skills for effective patient care CPD-accredited certification from our Centre of Excellence Ideal for both new learners and as a refresher course 🔹 Why Enroll? Gain valuable insights into the pathophysiology, diagnosis, and management of obstructive lung diseases Learn from experienced professionals Improve your patient care techniques 🔹 Enroll Now! Visit our website for more details and to book your spot Don't miss out on this opportunity to enhance your professional skills!
Trade barriers are going up across the globe. And cybercrime is on the increase. The link between the two? The value of trade secrets. As countries become increasingly protectionist as regards international trade, so their IP law has been changing, with the result that companies that previously would have sought protection through patents are opting to go down the trade secret route instead. But is this a high-risk strategy? Technology is changing and this is having an impact on forms of commercial co-operation. Collaborative or open forms of innovation by their very nature involve the sharing of intellectual property (IP), and in many instances this IP is in the form of valuable confidential business information (ie, trade secrets). Little surprise, then, that trade secrets disputes have increased accordingly. At the same time, the changes in technology make trade secrets more vulnerable to attack, misappropriation, theft. So just how effective are the legal protections for trade secrets? How can organisations safeguard the value in their IP (increasingly, the single biggest line in their balance sheets)? This programme is designed to help you address these issues. Note: this is an indicative agenda, to be used as a starting point for a conversation between client and consultant, depending on the organisation's specific situation and requirements. This session is designed to give you a deeper understanding of: Emerging trends in trade secrets protection and exploitation The current situation in key jurisdictions Recent case law How leading companies are responding The importance of trade secret metadata Different external stakeholders and their interests Key steps for effective protection of trade secrets Note: this is an indicative agenda, to be used as a starting point for a conversation between client and consultant, depending on the organisation's specific situation and requirements. 1 What are trade secrets? Definitions Examples Comparison with other forms of IP (patents, confidential information, know-how, copyright) 2 Current trends The various changes taking place affecting trade secrets - legal changes, trade wars, cybercrime, technology, commercial practice The current position in the UK, Europe, USA, China, Japan, Russia Corporate best practice 3 Trade secret disputes - how to avoid them Trade secret policies, processes and systems Administrative, legal and technical protection mechanisms The role of employees The sharing of trade secrets with others 4 Trade secret disputes - how to manage them Causes Anatomy of a trade secret court case 'Reasonable particularity' 5 Related issues Insurance Tax authorities and investigations Investor relations 6 Trade secret asset management roadmap Maturity ladder First steps Pilot projects
This is the first module of a series designed to provide thorough, professional training in leatherworking and accessory making. Each module has been carefully designed to equip individuals with key skills for starting a career in this sector, broadening their industry knowledge, or embarking on their own journey with solid foundational skills. During the lesson, you will learn how to proficiently handle a variety of essential hand tools and how to distinguish leather types and understand their suitability for specific projects and techniques. You will gain insights into the technical aspects of leatherworking, including preparation, marking, cutting, gluing, reinforcing, skiving, debossing, and more. You will receive valuable handouts, curated lists of leather and tool suppliers for ongoing reference, and create personalised samples for your own reference. Summary of topics covered in the class: – Leather types, tanning, finishings, and best uses – Leather preparation, pattern placement and leather marking – Leather cutting, beveling and creasing – Leather gluing and reinforcing – Leather skiving – Tool sharpening By the end of the tuition, you will have: – Worked with a variety of tools and various leathers, creating a catalogue of samples to take home – Gained a comprehensive understanding of leather types and the ability to select the correct material for your project – Developed confidence in utilising a wide range of specific tools for leather preparation, marking, finishing, cutting and more – Acquired an understanding of working with diverse leather types and thicknesses, with the ability to source and select appropriate tools for the specific material you intend to use – Obtained a thorough understanding of the differences and best uses of reinforcements, stiffeners, and stabilisers Included in the course: You will receive useful paper handouts containing: – A list of tools and materials used during the lesson(s), with descriptions and usage instructions – A list of recommended suppliers for leather and fittings, both in London and online – A glossary of leather types and characteristics You will also be provided with catalogued material swatches, including: – Main leather types – Reinforcements, stiffeners, and stabilisers Find all modules here: https://the-london-leather-workshop.cademy.co.uk/
EA/PA Excellence Workshop Live from London on the 25th of April 2024. Featuring Keynote speaker Reggie Love, former Special Assistant to 44th President of the USA, Barrack Obama. Panel featuring Sophie Chapman, assistant to Steven Bartlett entrepreneur, author, host of the diary of a CEO and youngest ever dragon on BBC's Dragon's Den, Victoria Wratten, CEO of the Executive & Personal Assistants Association. The workshop contains, panel talk, keynote talk and facilitation over key topics from Kate Wood over the course of the day.