About this Training Course Wind has surpassed hydro-power generation in many countries recently. Wind energy offers many advantages, which explains why it's one of the fastest-growing energy sources in the world. The following are the advantages of wind power: Wind power is cost effective: Land-based utility-scale wind is one of the lowest-priced energy sources available today The fuel for wind power is free. This reduces the operation and maintenance cost of wind power plants significantly Wind is a clean source of power generation that does not pollute the air like power plants which rely on combustion of fossil fuel Wind power plants create jobs. Wind turbine technician is the fastest growing career in many countries Wind enables industry growth and competitiveness due to its low cost Wind power is a domestic source of energy. The wind supply is abundant and inexhaustible. The wind power generation capacity has become the largest source of renewable power in many countries Wind turbines can be built on existing farms and ranches. This greatly benefits the economy in rural areas, where most of the best wind sites are found. Wind power plant owners make rent payments to the farmers or ranchers for the use of their land, providing landowners with additional income This 5 half-day course covers all aspects of wind power plants including evaluation of a potential location for a wind power plant using wind data and using statistical distributions to approximate available wind energy at a wind power plant site. It provides also an in-depth understanding of all wind power plant equipment including wind turbines, generators, instrumentation and control systems, drive trains, gearboxes, doubly fed induction generators, synchronous generators, nacelles, towers, transformers, etc. The economics of a wind power plant including economic analysis of wind power generation, economic comparison between a large- and small-scale wind power plant, economic decision making, rate of return from a wind power plant, economic life and replacement of a wind power plant as well as the cost of electricity from wind power plants are covered in detail in this course. A thorough explanation of the design, operation and maintenance of on-shore and off-shore wind farms is presented in detail in this course as well as all the significant improvements that have been made to wind power generating plants during the last two decades. Training Objectives Evaluation of a Potential Location for a Wind Power Plant Using Wind Data: Learn how to evaluate the potential location for a wind turbine power plant using wind data. Using Statistical 'Rayleigh' Distribution to Approximate Available Power Generation from a Wind Turbine at a Specific Site: Learn how to use statistical 'Rayleigh' distribution to approximate available power generation from a wind turbine at a specific site. Calculate the Wind Energy Available at a Site: Gain an understanding on how to calculate the wind energy available at a site. Rated Capacity of a Wind Facility and Capacity Factor: Understand how to determine the rated capacity of a wind facility and its capacity factor. Designing a Wind Power Generating Plant: Learn how to design a wind power generating plant. Wind Power Plant Equipment Operation and Maintenance: Understand the operation and maintenance requirements for all wind power plant equipment including wind turbines, generators, nacelles, towers, transformers, etc. Wind Power Plant Instrumentation and Control Systems: Gain a thorough understanding about the latest instrumentation and control systems of wind power plants. Economics of Wind Power Plants: Gain a thorough understanding of the economics of wind power plants including economic analysis of wind power generation, economic comparison between a large- and small-scale wind power plant, comparison of alternatives, rate of return from a wind power plant, financial statements for a wind power plant, cost of electricity from a wind power plant, and levelized cost of wind energy. Target Audience Engineers of all disciplines Managers Technicians Maintenance personnel Other technical individuals Training Methods Your specialist course leader relies on a highly interactive training method to enhance the learning process. This method ensures that all participants gain a complete understanding of all 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 to their own organization. Each delegate will receive a soft copy of the following materials written by the instructor: POWER GENERATION HANDBOOK' second edition, published by McGraw-Hill in 2012 (800 pages) Wind Power Generating Plant Manual (500 pages) 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 Accreditions And Affliations
About this Virtual Instructor Led Training (VILT) This 5 half-day course provides a detailed description of all performance testing methods for all thermal power plant equipment including boilers, turbines, condensers, pumps, fans, deaerators, and feedwater heaters. The methodology, and code requirements for the performance tests for all thermal power plant equipment will be explained in detail. The preparatory work and instrumentation required for each test will also be covered during the course. The efficiency calculations for all equipment used in circulating fluidized bed (CFB) boiler and pulverized coal boiler power plants will be explained, including all processes, operational and maintenance activities, capital projects, technical options, potential initiatives and incentives to implement upgrades / repairs for increasing the power plant equipment efficiency. The course will also provide a thorough explanation of CFB and pulverized coal boiler technology including hydrodynamics, combustion, emissions, design considerations, gas-solid separators, design of CFB and pulverized coal boiler components, management of solid residues, materials, stoichiometric calculations, and model for sulfur capture. The operation, maintenance, testing, and refurbishment options of all the equipment and systems used in CFB and pulverized coal power plants will be presented, including boilers, superheaters, reheaters, turbines, condensers, feedwater heaters, deaerators, pumps, compressors, fans, electric generators, instrumentation and control systems, and governing systems, etc. The participants will get equipped on all factors which affect the CFB and pulverized coal boiler power plant efficiency and emissions, all methods used to calculate the heat rate of CFB and pulverized coal power plants as well as all areas in CFB and pulverized coal boiler power plants where efficiency loss can occur. Updated information on the methods used to improve CFB boiler and pulverized coal boiler power plant heat rate will also be provided. It includes: Optimizing the combustion process and sootblowing Controlling the steam temperature Recovering moisture from boiler flue gas Performing steam turbine maintenance Lowering condenser back pressure Pre-drying high moisture coal and reducing stack temperature Training Objectives Thermal Plant Performance Testing: Gain a thorough understanding of all the performance testing methods for all thermal power plant equipment including boilers, turbines, condensers, pumps, fans, daerators, and feedwater heaters Performance Test Methodology and Code Requirements: Understand the methodology, and code requirements for performance tests of all thermal power plant equipment Performance Test Preparatory Work and Instrumentation: Learn about the preparatory work and instrumentation required for each equipment performance test in a thermal power plant Equipment Efficiency Calculations: Gain a thorough understanding of the efficiency calculations for all the equipment used in circulating fluidized bed (CFB) boilers and pulverized coal boilers power plants Calculating the Heat Rate of CFB and Pulverized Coal Boiler Power Plants: Learn all the methods used to calculate the heat rate of CFB and pulverized coal boiler coal power plants Benefits of Lowering the Heat Rate of CFB and Pulverized Coal Boiler Power Plants: Understand all the benefits of lowering the heat rate of CFB coal power plants Methods Used to Improve CFB and Pulverized Coal Boiler Power Plants Heat Rate: Gain a thorough understanding of all the methods used to improve the heat rate of CFB and pulverized boiler coal power plants Processes, Operational and Maintenance Activities in CFB and Pulverized Coal Boiler Power Plants: Discover all the processes, operational and maintenance activities used to improve the heat rate of CFB and pulverized coal power plants Capital Projects Used to Improve the Heat Rate of CFB and Pulverized Coal Boiler Power Plants: Learn about all the capital projects used to improve the heat rate of CFB and pulverized coal power plants Technical Options for Improving the Heat Rate of CFB and Pulverized Coal Boiler Power Plants: Understand all the technical options used to improve the heat rate of CFB and pulverized coal boiler power plants Potential Initiatives and Incentives to Implement Upgrades / Repairs for Improving the Heat Rate of CFB and Pulverized Coal Bed Boiler Power Plants: Discover all the potential initiatives and incentives to implement upgrades / repairs for improving the heat rate of CFB and pulverized coal power plants Factors Affecting CFB and Pulverized Coal Boiler Power Plants Efficiency and Emissions: Learn about all the factors which affect CFB and pulverized coal boiler power plants efficiency and emissions Areas in CFB and Pulverized Coal Power Plants where Efficiency Loss Can Occur: Discover all the areas in CFB and pulverized coal power plants where efficiency loss can occur Optimize the Operation of CFB and Pulverized Coal Power Plant Equipment and Systems to Improve the Plant Heat Rate: Understand all the techniques and methods used to optimize the operation of CFB and pulverized coal power plant equipment and systems to improve the plant heat rate CFB and Pulverized Coal Power Plant Equipment and Systems: Learn about the various types of CFB and pulverized coal power plant equipment and systems including boilers, superheater, reheaters, steam turbines, governing systems, deaerators, feedwater heaters, coal-handling equipment, transformers, generators and auxiliaries Target Audience Engineers of all disciplines Managers Technicians Maintenance personnel Other technical individuals Training Methods The VILT will be delivered online in 5 sessions comprising 4 hours per day, with 2 breaks of 10 minutes per day, including time for lectures, discussion, quizzes and short classroom exercises. Additionally, some self-study will be requested. Participants are invited but not obliged to bring a short presentation (10 mins max) on a practical problem they encountered in their work. This will then be explained and discussed during the VILT. A short test or quiz will be held at the end the course. The instructor relies on a highly interactive training method to enhance the learning process. This method ensures that all the delegates 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 to their own organization. Trainer Your specialist course leader relies on a highly interactive training method to enhance the learning process. This method ensures that all participants gain a complete understanding of all 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 to their own organization. Each delegate will receive a soft copy of the following materials written by the instructor: 'POWER GENERATION HANDBOOK' second edition published by McGraw-Hill in 2012 (800 pages) Excerpt of the relevant chapters from the 'POWER PLANT EQUIPMENT OPERATION AND MAINTENANCE GUIDE' published by McGraw-Hill in 2012 (800 pages) THERMAL POWER PLANT PERFORMANCE TESTING MANUAL (includes practical information about all the performance testing methods for all thermal power plant equipment - 400 pages) 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
Duration 3 Days 18 CPD hours This course is intended for This course is intended for security engineers, security architects, and information security professionals. Overview Identify security benefits and responsibilities of using the AWS Cloud Build secure application infrastructures Protect applications and data from common security threats Perform and automate security checks Configure authentication and permissions for applications and resources Monitor AWS resources and respond to incidents Capture and process logs Create and configure automated and repeatable deployments with tools such as AMIs and AWS CloudFormation This course demonstrates how to efficiently use AWS security services to stay secure in the AWS Cloud. The course focuses on the security practices that AWS recommends for enhancing the security of your data and systems in the cloud. The course highlights the security features of AWS key services including compute, storage, networking, and database services. You will also learn how to leverage AWS services and tools for automation, continuous monitoring and logging, and responding to security incidents. Prerequisites We recommend that attendees of this course have: Working knowledge of IT security practices and infrastructure concepts Familiarity with cloud computing concepts Completed AWS Security Essentials and Architecting on AWS courses 1 - Security on AWS Security in the AWS cloud AWS Shared Responsibility Model Incident response overview DevOps with Security Engineering 2 - Identifying Entry Points on AWS Identify the different ways to access the AWS platform Understanding IAM policies IAM Permissions Boundary IAM Access Analyzer Multi-factor authentication AWS CloudTrail 3 - Security Considerations: Web Application Environments Threats in a three-tier architecture Common threats: user access Common threats: data access AWS Trusted Advisor 4 - Application Security Amazon Machine Images Amazon Inspector AWS Systems Manager 5 - Data Security Data protection strategies Encryption on AWS Protecting data at rest with Amazon S3, Amazon RDS, Amazon DynamoDB Protecting archived data with Amazon S3 Glacier Amazon S3 Access Analyzer Amazon S3 Access Points 6 - Securing Network Communications Amazon VPC security considerations Amazon VPC Traffic Mirroring Responding to compromised instances Elastic Load Balancing AWS Certificate Manager 7 - Monitoring and Collecting Logs on AWS Amazon CloudWatch and CloudWatch Logs AWS Config Amazon Macie Amazon VPC Flow Logs Amazon S3 Server Access Logs ELB Access Logs 8 - Processing Logs on AWS Amazon Kinesis Amazon Athena 9 - Security Considerations: Hybrid Environments AWS Site-to-Site and Client VPN connections AWS Direct Connect AWS Transit Gateway 10 - Out-Of-Region Protection Amazon Route 53 AWS WAF Amazon CloudFront AWS Shield AWS Firewall Manager DDoS mitigation on AWS 11 - Security Considerations: Serverless Environments Amazon Cognito Amazon API Gateway AWS Lambda 12 - Threat Detection and Investigation Amazon GuardDuty AWS Security Hub Amazon Detective 13 - Secrets Management on AWS AWS KMS AWS CloudHSM AWS Secrets Manager 14 - Automation and Security by Design AWS CloudFormation AWS Service Catalog 15 - Account Management and Provisioning on AWS AWS Organizations AWS Control Tower AWS SSO AWS Directory Service
This course is designed to enable candidates to develop the knowledge of the terminology and basic concepts of TOGAF Standard, 10th Edition and principles of Enterprise Architecture. Candidates will also be able to analyze and apply knowledge of TOGAF Standard.
About this Virtual Instructor Led Training (VILT) This 5 half-day VILT course will comprehensively cover the technical aspects of gas processing. The scope will be from the wellhead through the typical gas processing plant and discuss gas gathering (pipeline hydraulics), natural gas treating (H2S, CO2 removal), acid gas injection and sulfur recovery. One unique aspect of this training course is the operations and troubleshooting discussions in each module. This VILT course is suited to technical personnel or technical management. Training Objectives After the completion of this VILT course, participants will be able to: Grasp the key specifications of natural gas and liquid products Understand the physical and transport properties of gases and liquids and liquid-vapor phase behavior Explore the various technologies for processing natural gas and to make the specifications Examine the design of the technologies Learn how to diagnose operating problems to keep facilities running reliably Target Audience This VILT course is intended for all surface technical personnel such as process engineers & technologists, facility engineers and production engineers & technologists. This VILT course will greatly benefit but not limited to: Process, petroleum and production engineers Field operators and technicians Personnel involved in gas treatment and processing Managers and Supervisors involved with gas processing operations Course Level Basic or Foundation Intermediate 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). The maximum number of participants for this course is 20 persons. Case studies and Exercises: This VILT course will use actual case references throughout its duration in various forms. This will allow the application of the participants' newly-acquired knowledge. Case studies also stimulate independent thinking and discussion among the participants Trainer Your expert course leader has written several papers that have been published in both academic and industry journals. He has over 30 years of industry experience, specializing in gas processing (pipeline hydraulics, separation, dehydration, treating, sulphur recovery and refrigeration processes) and also has experience with crude oil dehydration, stabilization and micro-refining topping plants. He has experience with developing new technology and is recently involved in lithium, waste biomass and used motor oil pyrolysis and geothermal projects. He has recognized expertise in thermodynamics and physical and transport properties of fluids. He has consulted for several EPC and operating companies through his company Chem-Pet Process Tech., and currently holds the role of Director of Technology in an integrated engineering and solutions provider to the energy industry. He is currently involved with a small power-based carbon capture project as well as helping clients determine the best options for utilities decisions. He has been involved with CO2 dehydration and CO2 flood gas treating as well as acid gas injection projects for several years. Highlighted Achievements: Developed ORC geothermal model to determine the available power from wells in Alberta Acting on the Technical Advisory Board for E3 Metals, extracting lithium from formation water. Acted as a Subject Matter Expert for assessing the performance of the Plains Midstream Canada, Empress 1 Deep Cut Straddle Plant in a potential litigation. Acted as an Expert Witness for JL Transportation patent defence of a dense phase technology. Process engineer lead on the addition of the new Orloff gas plant for Deltastream. Also troubleshooted the oil battery shipping pump, plate exchanger and FWKO and treater. Evaluated gas processing and sulphur recovery options for new feeds to the Zhaikmunai Zelenovsky Gas Plant, Kazakhstan (with PM Lucas, Serbia). Completed capacity analysis for hydrocarbon dew point versus liquid recovery of three trains at Birchcliff Pouce Coupe facility including amine unit, refrigerated gas plant and acid gas injection. Completed process design for CO2 flue gas dehydration for Husky Energy Inc (with Status Engineering) Provided simulations of EnCana Foster Creek and Christina Lake and Husky McMullen SAGD facilities (with Vista Projects). Performed process engineering for Cenovus Pelican Lake SAGD pilot (with GRB Engineering) Bear Lake heavy oil polymer injection pilot (with GRB Engineering). Lead process engineer on the design of IEC Kerrobert crude oil micro-refinery (topping plant). Provided engineering support and troubleshooting for Enerchem Slave Lake Crude tower and product blending (with Status Engineering). 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 Accreditions And Affliations
Why Learn Revit and 3dsMax V-Ray Visualization Basic to Advance Training Course? Course info Master architectural visualization and photorealistic renderings. In-person or live online options available. Learn Revit and 3dsMax, V-Ray rendering, and advanced techniques. Hands-on projects for real-world experience. Duration: 40 hrs Method: 1-on-1 - Individual support. Schedule: Tailor your own schedule by pre-booking a convenient hour of your choice, available from Mon to Sat between 9 am and 7 pm. Comprehensive Training: Master Revit, 3dsMax, and advanced visualization techniques for exceptional results. V-Ray Rendering: Explore realistic rendering with V-Ray, including advanced techniques and materials. Real-World Projects: Work on industry-relevant projects for a professional portfolio. Flexible Learning: Choose in-person or live online sessions for an engaging experience. Lesson Recordings: Access recorded classes to reinforce your understanding. Lifetime Email Support: Get guidance and assistance from experienced instructors beyond the course duration. Autodesk Certified Instructors. Comprehensive Training: Master Revit, 3dsMax, and advanced visualization techniques for exceptional results. V-Ray Rendering: Explore realistic rendering with V-Ray, including advanced techniques and materials. Real-World Projects: Work on industry-relevant projects for a professional portfolio. Flexible Learning: Choose in-person or live online sessions for an engaging experience. Lesson Recordings: Access recorded classes to reinforce your understanding. Lifetime Email Support: Get guidance and assistance from experienced instructors beyond the course duration. Autodesk Certified Instructors. Part 1: Revit (16 hours) Module 1: Introduction to Revit Familiarizing with the Revit interface and workspace Embracing the Building Information Modeling (BIM) workflow Creating a fundamental building model as a starting point Module 2: Basic Modeling in Revit Working with essential elements such as walls, doors, and windows Constructing floors and roofs to complete the building structure Crafting functional and visually appealing stairs and railings Module 3: Advanced Modeling in Revit Delving into the creation and manipulation of families Utilizing parameters and constraints to enhance modeling efficiency Exploring intricate geometries for complex designs Module 4: Annotation and Documentation in Revit Enhancing project documentation by adding text and dimensions Generating informative schedules for better project management Mastering the printing and exporting processes for professional output Part 2: 3ds Max (16 hours) Module 1: Introduction to 3ds Max Navigating the 3ds Max interface and workspace Understanding the 3D modeling workflow for design visualization Initiating the creation of basic 3D models Module 2: Basic Modeling in 3ds Max Working with primitive shapes to build foundational models Creating and refining splines to form versatile shapes Advancing to complex 3D model development for intricate designs Module 3: Materials and Textures in 3ds Max Exploring the material editor and its functionalities Skillfully applying and adjusting materials for realistic renders Incorporating textures to add depth and detail to the models Module 4: Lighting and Cameras in 3ds Max Mastering the art of lighting creation and manipulation Utilizing the daylight system for enhanced realism Understanding cameras and perspectives for compelling visual storytelling Part 3: V-Ray (8 hours) Module 1: Introduction to V-Ray Getting acquainted with the V-Ray interface and workflow Exploring V-Ray materials and textures for high-quality renders Module 2: Lighting and Rendering in V-Ray Creating and refining lighting setups for stunning renders Utilizing global illumination to enhance the realism of scenes Implementing advanced rendering techniques for professional output Module 3: Materials and Textures in V-Ray Crafting and modifying V-Ray materials for realistic surfaces Applying V-Ray textures to add depth and realism to objects Utilizing V-Ray displacement maps for intricate details For 3ds Max free trial, visit: https://www.autodesk.co.uk/products/free-trial. To access the V-Ray free trial, visit: https://www.chaosgroup.com/. Start your journey to becoming a proficient designer and renderer in the world of 3D modeling and visualization. Download Revit Revit and 3dsMax V-Ray Visualization Basic to Advance Training Course: Proficient Software Skills: Acquire a strong command of Revit and 3dsMax, along with advanced techniques in V-Ray rendering. High-Quality Visualizations: Create realistic and visually stunning architectural visualizations using V-Ray. Architectural Modeling: Master the process of modeling architectural elements with precision and efficiency. Materials and Textures: Understand how to apply realistic materials and textures to enhance visualizations. Lighting Setup: Set up lighting environments to achieve optimal illumination and ambiance in renderings. Rendering Techniques: Explore advanced rendering techniques, including global illumination, caustics, and ambient occlusion. Real-World Projects: Complete industry-relevant projects to build a professional-grade portfolio. Problem-Solving Skills: Develop the ability to troubleshoot and resolve rendering challenges effectively. Efficient Workflows: Learn time-saving workflows and best practices for efficient visualization production. Portfolio Showcase: Showcase your newly acquired skills through a diverse range of visualizations.
Business Relationship Management Professional (BRMP)®: Virtual In-House Training Business Relationship Management (BRM) embodies a set of competencies (knowledge, skills, and behaviors) to foster an effective business value-producing relationship between a service provider and its business partners. The BRM Discipline rests on solid research-based foundations verified and enhanced over a decade of successful implementations in leading organizations across the world. Proven to be equally effective for shared services including Human Resources, Finance, Legal, external service providers and others, BRM practices have enjoyed widespread adaptation in IT. The Business Relationship Management Professional (BRMP) training and certification program provides a foundational understanding of business relationship management (BRM) for individuals at every experience level, with the training and certification designed to provide a solid baseline level of knowledge. In other words, this course provides the 'why' and the 'what' - 'why' business relationship management is important to your organization and 'what' a BRM capability does to add value to your organization. This interactive course, with discussions, partnering activities, and periodic knowledge checks, will provide you with the opportunity to apply learning to your unique organizational situations, creating solutions that you can use immediately upon returning to your workplace. This practical knowledge will allow you to demonstrate immediate value in your role, as well as prepare you for the BRMP Certification exam.
About this Training Course This 3 full-day course will provide a comprehensive understanding of the various types of transformer maintenance including breakdown maintenance, preventive maintenance, total productive maintenance, condition-based maintenance, proactive maintenance, and reliability-centered maintenance. All the expected problems in dry and oil-filled transformers will be discussed in detail. All the diagnostics, troubleshooting and maintenance required to ensure adequate operation of transformers will be covered thoroughly. This course will focus on maximizing the efficiency, reliability, and longevity of all types of transformers by providing an understanding of all commissioning requirements, repair and refurbishment methods of transformers. Training Objectives Equipment Diagnostics and Inspection: Learn in detail all the diagnostic techniques and inspections required of critical components of transformers Equipment Testing: Understand thoroughly all the routine tests, type tests, and special tests required for the various types of transformers Equipment Maintenance and Troubleshooting: Determine all the maintenance and troubleshooting activities required to minimize transformer downtime and operating cost Equipment Repair and Refurbishment: Gain a detailed understanding of the various methods used to repair and refurbish transformers Efficiency, Reliability, and Longevity: Learn the various methods used to maximize the efficiency, reliability, and longevity of transformers Equipment Sizing: Gain a detailed understanding of all the calculations and sizing techniques used for transformers Design Features: Understand all the design features that improve the efficiency and reliability of transformers Equipment Selection: Learn how to select all types of transformers by using the performance characteristics and selection criteria that you will learn in this course Equipment Commissioning: Understand all the commissioning requirements for transformers Equipment Codes and Standards: Learn all the codes and standards applicable for transformers Equipment Causes and Modes of Failure: Understand the causes and modes of failure in transformers System Design: Learn all the requirements for designing different types of transformer systems Target Audience Engineers of all disciplines Managers Technicians Maintenance personnel Other technical individuals (this course is suitable for individuals who do not have an electrical background) Course Level Basic or Foundation Training Methods Your specialist course leader relies on a highly interactive training method to enhance the learning process. This method ensures that all participants gain a complete understanding of all 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 to their own organization. Each delegate will receive a copy of the following materials written by the instructor: Excerpt of the relevant chapters from the 'ELECTRICAL EQUIPMENT HANDBOOK' published by McGraw-Hill in 2003 (600 pages) Transformer Testing, Maintenance and Commissioning Manual (covering all the tests, maintenance activities, protective systems and all commissioning procedures for all types of transformers - 350 pages) Trainer Your specialist course leader has more than 32 years of practical engineering experience with Ontario Power Generation (OPG), one of the largest electric utility in North America. He was previously involved in research on power generation equipment with Atomic Energy of Canada Limited at their Chalk River and Whiteshell Nuclear Research Laboratories. While working at OPG, he acted as a Training Manager, Engineering Supervisor, System Responsible Engineer and Design Engineer. During the period of time, he worked as a Field Engineer and Design Engineer, he was responsible for the operation, maintenance, diagnostics, and testing of gas turbines, steam turbines, generators, motors, transformers, inverters, valves, pumps, compressors, instrumentation and control systems. Further, his responsibilities included designing, engineering, diagnosing equipment problems and recommending solutions to repair deficiencies and improve system performance, supervising engineers, setting up preventive maintenance programs, writing Operating and Design Manuals, and commissioning new equipment. Later, he worked as the manager of a section dedicated to providing training for the staff at the power stations. The training provided by him covered in detail the various equipment and systems used in power stations. In addition, he has taught courses and seminars to more than four thousand working engineers and professionals around the world, specifically Europe and North America. He has been consistently ranked as 'Excellent' or 'Very Good' by the delegates who attended his seminars and lectures. He written 5 books for working engineers from which 3 have been published by McGraw-Hill, New York. Below is a list of the books authored by him; Power Generation Handbook: Gas Turbines, Steam Power Plants, Co-generation, and Combined Cycles, second edition, (800 pages), McGraw-Hill, New York, October 2011. Electrical Equipment Handbook (600 pages), McGraw-Hill, New York, March 2003. Power Plant Equipment Operation and Maintenance Guide (800 pages), McGraw-Hill, New York, January 2012. Industrial Instrumentation and Modern Control Systems (400 pages), Custom Publishing, University of Toronto, University of Toronto Custom Publishing (1999). Industrial Equipment (600 pages), Custom Publishing, University of Toronto, University of Toronto, University of Toronto Custom Publishing (1999). Furthermore, he has received the following awards: The first 'Excellence in Teaching' award offered by PowerEdge, Singapore, in December 2016 The first 'Excellence in Teaching' award offered by the Professional Development Center at University of Toronto (May, 1996). The 'Excellence in Teaching Award' in April 2007 offered by TUV Akademie (TUV Akademie is one of the largest Professional Development centre in world, it is based in Germany and the United Arab Emirates, and provides engineering training to engineers and managers across Europe and the Middle East). Awarded graduation 'With Distinction' from Dalhousie University when completed Bachelor of Engineering degree (1983). Lastly, he was awarded his Bachelor of Engineering Degree 'with distinction' from Dalhousie University, Halifax, Nova Scotia, Canada. He also received a Master of Applied Science in Engineering (M.A.Sc.) from the University of Ottawa, Canada. He is also a member of the Association of Professional Engineers in the province of Ontario, Canada. 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 Accreditions And Affliations
Enhance your knowledge in petroleum geochemistry with EnergyEdge's course on petroleum exploration. Enroll now!
Course description Figma is an industry leading web-based design tool that allows you to create user interfaces for any screen type or size, collaborate on those designs in real-time and build interactive prototypes suitable for user testing. Figma is a visual design tool so there’s no coding involved. Design is achieved by adding, combining and styling shapes, text and images on a canvas or ‘Frame’. We run 2 consecutive Figma training days, the second day building on the practical activities from the first. You can attend just the first day. Attending just the second day is only recommended if you’re already very comfortable with the Figma interface. Day 1: Basic Figma design and collaboration For beginners with no prior experience with Figma who want to understand the basics, be able to create their own designs, share, collaborate and even iterate on the designs of others. You will learn: How to navigate the Figma interface. How to create your own designs by: Setting up a design file. Setting up the screen type you want to design and add grids and guides. Adding and modifying basic shapes and text to create user interface elements. How to save text and colour styles for reuse. How to create reusable components. How to use the ‘auto layout’ feature to promote tidy, consistent and usable design. How to collaborate on designs by sharing screens and commenting on designs. A brief introduction to prototyping: What’s possible. What’s not. Day 2: Component variants, design systems and prototyping This session will cover the more sophisticated aspects of Figma use such as: How to use component variants to create: Interaction styles such as hover and mouse down states ‘Flavours’ of a widget such as primary and secondary button styles. Toggleable elements within a widget such as buttons or bullets within a product card. How to turn a collection of components into a basic design system. Prototyping fundamentals: How to make journeys clickable. How to introduce animations. Tips and tricks for effective user testing. The limitations of Figma prototyping Is it for you? With no experience of Figma necessary, this course is suitable if: If you’re involved with creating or curating digital experiences. if you want to turn your design ideas into something tangible. If you work with Figma designers and want to understand the ‘art of the possible’. If you want to collaborate with your team on Figma projects. Learning objectives After completing day 1 you will be able to: Understand the Figma user interface. Create mobile and desktop interface designs. Effectively collaborate remotely. Share designs and gather feedback. Use auto layout to promote consistent and usable designs. Understand Figma’s role in user experience design, and its limitations. After day 2 you will be able to: Understand how design systems are set up and used. Create component variants for use in your own design system. Use that design system to efficiently create a user journey. Create a prototype suitable for user testing.