The guided imagery and visualisation techniques you will learn on this workshop are essential for helping people successfully overcome depression, addictions, anxiety and more…. Accredited CPD Certificate : 6 hours Length 1 day (9.30am - 4.00pm) Why take this course This new workshop delves deeper into this essential therapeutic skill’s power and flexibility – you will learn a variety of guided imagery techniques that are highly effective at helping people move on from problem behaviours, reframe life circumstances, lower emotional arousal, make therapeutic lifestyle changes, increase resilience and more. Building on the skills learnt on Guided Imagery and Visualisation for therapeutic change (‘Day 1’), this second workshop focuses specifically on the techniques that allow clients to move forward from depression, overcome anxiety and combat addiction. We also look at how to introduce helpful new understandings to clients in a way that overcomes resistance. Strong emotions focus and lock attention keeping people trapped or stuck – so this hands-on training also gives you the opportunity to further develop your therapeutic abilities to help people rehearse in their imagination any desired change to their behaviours and/or feelings, which dramatically increases the likelihood of those changes taking place in ‘real life’, and then being maintained in the future. Guided imagery, as taught on Day 1 is one of the most powerful psychotherapeutic tools available to us; Day 2 will allow you to develop your ability to use it flexibly and successfully in a range of different client presentations. These are essential skills to have in your therapeutic ‘toolkit’. * Please Note: counter-conditioning was previously taught on our pre-2023 Stopping Addictions workshop. Ros has a lovely delivery style that’s very inspiring and left me with so many ideas going forward...MARY FLYNN, GUIDED IMAGERY AND VISUALISATION FOR THERAPEUTIC CHANGE What will you learn How to use the brain’s powerful internal ‘reality generator’ to enable clients to make desired change in their lives Invaluable ways to enable a client to approach situations with confidence and overcome situational anxiety Powerful ways of using this skill to help a client take the ‘first steps’ out of depression An effective technique (counter-conditioning*) which increases likelihood of success when working with clients struggling with addiction Understanding of how to use guided imagery effectively when supporting a client with behaviour change of any kind The use of metaphor within guided imagery; how to craft powerful extended metaphors which take into account a client’s individual model of reality Training and practice in using these techniques Greater confidence in working flexibly with this technique so as to respect each individual client’s model of reality Powerful ways to introduce helpful ideas to a resistant client without breaking rapport Supervised practice in specific techniques for work with a range of presentations How to use healing trance states to reframe difficult life circumstances and build hope using the client’s own resources Specific techniques that can be used to manage pain, or work with anxiety or any other strong state of distress Increased understanding of trance states and their role in everyday life A scientifically-sound knowledge of why the various techniques and skills you will gain are so valuable A range of ways to help people improve their performance – sports, public speaking etc. The opportunity to experience for yourself specific new techniques within guided imagery and visualisation Dates and venues Good to know To attend this course you need to have plenty of experience in using guided imagery and visualisation for relaxing clients or to have completed our Guided Imagery and visualisation for therapeutic change (Day 1) course. (If you are taking the HG Diploma, you will need to attend both days, as both count towards Part 1 of the Human Givens Diploma.) The additional skills you will learn on this second day are introduced on the following courses as integral to effective treatment for the conditions they cover: Stopping Addictions: effective treatment and recovery How to Lift Depression Overcoming Self-harm Please note: The counter-conditioning technique was previously taught on our ‘Stopping Addictions’ workshop. This changed from January 2023. Course Programme The ‘Guided Imagery and Visualisation Additional Techniques’ course starts at 9.30am and runs until 4.00pm. From 8.30am Registration (Tea and coffee served until 9.25am) 9.30am Reality Generator: a powerful way of rehearsing new behaviours and feelings 11.00am Discussion over tea/coffee 11.30am Introducing new, more helpful patterns and overcoming resistance 1.00pm Lunch (included) 1.45pm Working with addiction and behaviour change 2.45pm Discussion over tea/coffee 3.00pm Working with addiction and behaviour change – continued 4.00pm Day ends Who is this course suitable for? Anyone who has already attended Guided Imagery and Visualisation for Therapeutic Change (Day 1) or who has experience in using guided imagery and visualisation to induce a relaxed state in their clients Anyone, with the above skills, who wants to help people effectively and for the long-term, particularly those working in mental and physical healthcare, or with addictions or self harm Psychotherapists, counsellors and mental health workers (who also have the above skills) who work with a wide range of conditions and would like to ensure long-term behaviour change Trained hypnotherapists looking to add these techniques to their existing skillset. This course has been independently accredited by the internationally recognised CPD Standards Office for 6 hours of CPD training. On completion of this training you’ll receive CPD certificates from the College and the CPD Standards Office.
Course Objectives The delegates are able to demonstrate: knowledge of hazards and risks associated with working at heights, specific to WTG (Wind Turbine Generator). understanding of current national legislation regarding working at heights. correct identification of PPE, including identification of European/Global standard markings e.g. harness, hard hat, lanyards, etc. knowledge and skills to correctly inspect, service, store and don the relevant PPE, e.g. harness, lanyards, fall arresters and work positioning equipment. correct use of the relevant PPE, e.g.harness lanyards, fall arresters and work positioning equipment. This includes correct identification of anchor points and correct ladder conduct. correct use of evacuation devices. how to approach rescue situations in WTGs and use rescue equipment efficiently.
The delegates are able to demonstrate: The participants are able to demonstrate knowledge of hazards and risks associated with working at height specific to a wind turbine generator (WTG) (L2 – Knowledge) The participants are able to demonstrate understanding of current national and regional legislation regarding working at height (L2 – Knowledge) The participants are able to demonstrate correct identification of PPE, including identification of Global and regional standard markings e.g. harness, hard hat, lanyards, etc. (L3 – Skills) The participants are able to demonstrate the knowledge and skills to correctly perform pre-use inspection, service, store and correctly fit relevant PPE, e.g. harness, fall arrest lanyards, guided type fall arrest lanyards and work positioning lanyards (L2 – Knowledge & L3 – Skills) The participants are able to demonstrate correct use of the relevant PPE, e.g. harnesses fall arrest lanyards, guided type fall arresters and work positioning lanyards. This includes correct identification of anchor points and correct conduct on ladder (L3 – Skills) The participants are able to demonstrate correct use of evacuation devices (L3 – Skills) The participants are able to demonstrate how to approach rescue situations in WTGs and use rescue equipment efficiently (L3 – Skills & Ability)
The Sales Accelerator programme is a fresh approach to improving business development productivity. It focuses on identifying and using a series of business productivity metrics in order to build a clear action plan for improving sales results - typically within 90 days. The metrics are grouped under three headings: The basic principle is that a small improvement in each area can lead to a significant increase in sales results and productivity. And the object of the programme is to show how best to achieve that. The programme therefore looks at each of these three areas in turn, spending a day on each. Suitable for any and all businesses and all levels of experience and expertise, this is a remarkably practical and hands-on programme. During the workshop, participants discuss, review and apply many proven sales and marketing techniques and personal selling ideas. The goal is to generate and commit to changes and actions that can lead to a 10-30% increase in the next three to six months. There's also a consultancy option, rather than the workshop-based programme. See below for details. Day one - Activity Key objective This first module introduces the Sales Accelerator model. The goal here is to show participants how to increase their pro-active activity levels by around 10%. It covers all aspects of creating new business opportunities, from existing customers and non-customers alike, and is linked to personal activity improvement goals. Main elements Improve the productivity, accuracy and effectiveness of your business approach by using new and unique models and techniques. Different methods of creating and generating new business opportunities in the short, medium and long term. This includes sourcing new business, up-selling, cross-selling, warm calling and gaining referrals. Using organised persistence to track and build new customer revenue. Managing your sales time effectively. Key learning points Sales productivity - understand the dynamics of increasing the combination of activity levels, deal value and conversion rate of proposals/quotations to orders and implement an improvement plan. Sales goal setting: setting business development objectives for quantity and quality - plus tips and tricks of top performers. Maintain a peak activity level, on a consistent basis using 'organised persistence' and structured business development tracking methodology. How to prioritise opportunities and manage your time when sourcing new business. Identify potential new customers - and particularly the decision-makers and influencers - with greater accuracy. Make outbound business or appointment calls with improved confidence, control and results. Day two - Value Key objective To be able to better anticipate, identify, create, and develop business opportunities using a customer / client-focused communication-based business model and consultative skills. Main elements How to develop sales more effectively from new and existing customers; and managing the first appointment with a new customer. Use structured and assertive drawing-out skills to identify, develop and formalise business opportunities and to gain commitment. How to better position your company and your products and services against your main competitors. Create and deliver persuasive business messages based on specific need areas, criteria and value. Key learning points Advanced consultative selling - use a variety of structured and advanced questioning techniques to confidently and efficiently uncover opportunities, need areas and business criteria - confidently and efficiently. Involve the customer/client at all times, and to a far greater degree, and keep better control of business development process. Value message - differentiate your solutions clearly and accurately with customer/client-matched value statements. Presenting the right USPs, features and benefits and making them relevant and real to the customer. Qualification and reading buying signals. Day three (held around four weeks after the first module) - Conversion Key objective This module looks at how to improve the final qualification, progression and conversion of opportunities in your sales pipeline. Also includes price negotiation, overcoming objections and obstacles to gaining agreement. The module begins with a learning review, sharing participants' experiences over the last four weeks in applying the new techniques and skills acquired during the first two modules. This is an opportunity to revisit particularly challenging areas as well as to share and celebrate successes. Main elements Structuring and preparing for negotiating a deal and knowing when and how to move into the 'end-game' mode. Anticipate and answer customer objections and questions more confidently. Build more credibility and proof into your business process to reduce 'buyer's remorse' and speed-up decision-making. Being more assertive and developing better instincts and strategic thinking in progressing quotations and proposals. Key learning points Smart ways to position price, emphasise value and be a strong player without being the cheapest. Becoming more assertive in closing deals, and the importance of organised follow-up on the telephone. Qualify pipeline opportunities with more accuracy, using a proven check-list. Use an 'option generator' to simplify complex proposals, increase business value and close business faster. Writing more effective sales proposal documents and quotations. How best to draw-out, understand, isolate and answer customer objections, negotiate points and concerns. Practical methods of asking for agreement and closing a sale
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Network management technologies course description A comprehensive tour of the available network management technologies available for todays networks. The course starts with basic tools such as syslog along with Python network automation. SNMP is then covered with the *flow technologies and streaming telemetry. Configuration management with ansible, Python, NETCONF and RESTCONF is then studied. The final part of the course looks at SDN. Hands on sessions are used throughout to reinforce the theory rather than teach specific manufacturer equipment. Note that sections are available as individual courses. What will you learn Evaluate network management technologies. Evaluate network management technologies. Recognise the weaknesses of SNMP versus NETCONF and streaming telemetry. Explain the role of NETCONF and RESTCONF. Compare & contrast *flow and streaming telemetry. Explain the role of SDN in network management. Automate network configuration with ansible and Python. Network management technologies course details Who will benefit: Those wishing to manage networks. (Previous Python experience is NOT needed) Prerequisites: Intro to data comms Duration 5 days Network management technologies course content Basic network management Network management What is network management? Benefits, issues. FCAPS model. Fault management, Configuration management, accounting, performance, security. What to manage, what not to manage. Managing network devices, managing servers. Monitoring networks Traditional network tools Ping..., SSH, syslog, TFTP for configurations. nmap. Wireshark. CLI. Web based management. Splunk. Nessus, snort, Kali. Hands on syslog, network inventories. Network automation using the CLI Programming and automating networks, netOps. Python, Git. Python network modules, SSH, paramiko, netmiko. EVE-NG. Hands onPython network modules. Structured versus unstructured data Problems with automation and unstructured data. XML, JSON, YAML. The role of YANG. Hands on Parsing data. SNMP SNMP architecture, SNMP MIBs, SMI, the SNMP protocol, polling security. Configuring SNMP. SNMPv1, v2, v3, SNMP security. Which version should you use? MIBs and MIB structure. mib-2, extra parts of mib-2, Private enterprise MIBs. Summary: What SNMP is good/bad at. Hands on Configuring agents and a NMS. MIB browsing. Server management Microsoft, Linux, application polling. WMI vs SNMP. Hands on: Application polling. Performance management *flow Polling, push vs pull, netflow, sflow, IPFIX, *flow. Flows. Where to monitor traffic. Comparing *flow with SNMP. Architecture: Generators and collectors. When flows are exported. NetFlow reporting products. SolarWinds. Hands on Netflow configuration. Collectors. Streaming telemetry Model driven telemetry, periodic/on change. Structured data. Telemetry protocol stack. gRPC and gNMI. Protobuf. gNMI operations. Telemetry architecture. Telegraf, databases, Grafana. Hands on Telemetry example. Configuration management Configuration management tools Chef, puppet, ansible, saltstack. Ansible architecture, controlling machines, nodes, agentless, SSH, modules. Inventories, playbooks, modules, network modules, jinja2 templates. Hands on Network configuration with ansible. NETCONF What is NETCONF? Protocol stack, Data stores, traffic flows, validating configurations, rollback. YANG data models and how YANG is used by NETCONF. XML. Explorers and other tools. Hands on anx, Python and NETCONF. RESTCONF The REST API, HTTP, What is RESTCONF? Tools including Postman. Comparison with NETCONF. Hands on Configuration with RESTCONF. Python network automation: configuration SSH issues. Using structured data. Jinja2. ncclient, requests, NAPALM, Nornir. Automated testing. Hands on Python network device configuration with nornir. Software Defined Networks and orchestration Classic SDN What is SDN? benefits. SDN architecture. SDN applications, SDN switches, SDN controllers, Network Operating Systems. Control plane, data plane. Northbound interfaces. SDN components. Southbound interfaces. OpenFlow. ONF, OpenFlow ports, Flow tables. Network virtualization Virtual networks, virtual switches, NfV. Service chaining. NfV and SDN. SDN implementations Classic SDN, Hybrid SDN, SDN via APIs, SDN via overlays. Data centre SDN, VXLAN, Service Provider SDN, SD WAN, Enterprise SDN, WiFi. SDN and open source OpenDaylight, OpenVSwitch, Open Networking Forum, Open Network Operating System. Hands onOpenStack. SD-WAN What is SD-WAN? Architecture: Edge, gateway, orchestrator, controller. Overlay and underlay. Use of MPLS, 4G/5G. Benefits and features. Secure Access Service Edge (SASE).
About this training course This 5 full-day course will cover all aspects of gas turbines, co-generation and combined cycle power plants. It will cover in detail all the components of these types of power plants such as: compressors, gas and steam turbines, heat recovery steam generators, deaerators, condensers, lubricating systems, instrumentation, control systems, and economics. The design, selection considerations, operation, maintenance, pay-back period, economics of co-generation plants and combined cycles, as well as, emission limits, reliability, monitoring and governing systems are also covered in detail. This course will also provide up-dated information in respect to all the significant improvements that have been made to co-generation and combined cycles power plants, during the last two decades. The course will illustrate through sophisticated computer simulation how gas turbines, co-generation and combined cycle plants perform under steady-state and transient conditions. In addition, the participants will learn how to use the computer simulation program which provides the following benefits: Allow the operator to extend the gas turbine operating period by avoiding unnecessary outages and maintenance activities. Determination of essential gas turbine maintenance activities to reduce the duration of outages. Profit optimization of co-generation and combined cycle plants. Minimization of the environmental emissions of co-generation and combined cycle plants. Training Objectives Power Plant Computer simulation: Gain a thorough understanding of computer simulation of gas turbines, co-generation, and combined cycle plants. Power Plant Components and Systems: Learn about all components and subsystems of the various types of power plants such as gas turbines, co-generation and combined cycle plants Power Plants Economics: Examine the advantages, applications, performance and economics of power plants such as: gas turbines, co-generation, and combined cycle plants Power Plant Equipment: Learn about various power plant equipment including: compressors, turbines, governing systems, combustors, deaerators, feed water heaters, etc. Power Plant Maintenance: Learn all the maintenance activities required for power plants such as: gas turbines, co-generation plants and combined cycles to minimize their operating cost and maximize their efficiency, reliability, and longevity Power Plant Environmental Emissions: Learn about the monitoring and control of environmental emissions. Power Plant Instrumentation and Control Systems: Learn about the latest instrumentation and control systems of gas turbines, co-generation and combined cycles power plants Power Plant Reliability and Testing: Increase your knowledge of power plant predictive and preventive maintenance, reliability and testing. Power Plant Selection and Applications: Gain a detailed understanding of the selection considerations and applications of power plants such as: gas turbines, co-generation and combined-cycle power plants Power Plant Profitability: Learn about the reliability, life cycle cost, profitability, refurbishment, and life extension methods for gas turbines, co-generation and combined cycle power plants. Target Audience Engineers of all disciplines Managers Technicians Maintenance personnel Other technical individuals 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: 'POWER GENERATION HANDBOOK' second edition, published by McGraw-Hill in 2012 (800 pages) Practical manual (500 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
About this Training Course Identifying and correcting the root cause of failures in boilers and steam power plant equipment is essential to help reduce the chance of future problems. A comprehensive assessment is the most effective method of determining the root cause of a failure. For example, a tube failure in a boiler is usually a symptom of other problems. To fully understand the root cause of the failure, one must investigate all aspects of boiler operation leading to the failure in addition to evaluating the failure itself. When a boiler tube failure occurs, the root cause of the failure must be identified and eliminated. This 5 full-day course starts by providing an in-depth understanding of root cause analysis methodology. This includes how to identify the problem, contain and analyze the problem, define the root cause of the problem, define and implement the actions required to eliminate the root cause, and validate that the corrective actions prevented recurrence of the problem. Many practical examples on how to apply root cause analysis for various industrial problems are discussed in detail. The course then provides an in-depth explanation of all failure mechanisms that occur in steam power plants including corrosion, erosion, creep, cavitation, under-deposit attacks, stress corrosion cracking, hydrogen embrittlement, flow accelerated corrosion, etc. This course also provides a thorough explanation of all the failure mechanisms that occur in boilers and steam power plant equipment including steam turbines, condensers, feedwater heaters, etc. The symptoms of the failures, possible causes, components typically affected and solutions are also provided in this course. This includes boiler waterside, fireside and general boiler failure mechanisms as well as all the causes and prevention of all steam turbine failures, condensers, and feedwater heaters. The course also includes detailed study of many case histories of failures in boilers, steam turbines, condensers and feedwater heaters. Training Objectives Electrical Equipment Testing and Maintenance: Gain a thorough understanding of all the testing and maintenance required for all key electrical equipment including transformers, inverters, rectifiers, switchgear and circuit breakers, relays and protective devices, cables and accessories, motors, variable frequency drives, uninterruptible power systems, generators, fuses, and industrial batteries Root Cause Analysis Methodology: Understand root cause analysis methodology including: identification of the problem, defining the problem, understanding the problem, identification of the root cause of the problem, providing corrective action, and monitoring the system. Applying the Root Cause Analysis Method to Industrial Problems: Learn by studying many practical examples how to apply the root cause analysis method to various industrial problems. Damage Mechanisms in Boilers and Steam Power Plant Equipment: Gain a thorough understanding of all the damage mechanisms that occur in boilers and all steam power plant equipment including turbines, condensers and feedwater heaters. These mechanisms include corrosion, erosion, flow accelerated corrosion, stress corrosion cracking, creep, under-deposit attack, cavitation, hydrogen embrittlement, etc. Symptoms of Failures in Boilers and Steam Power Plant Equipment, Possible Causes, Components Typically Affected, and Solutions: Learn about all the symptoms of failures in boilers and steam power plant equipment including steam turbines, condensers, and feedwater heaters, their possible causes, components typically affected and proven solutions. Case Histories of Failures in Boilers, Steam Turbines, Condensers, and Feedwater Heaters: Learn by studying many case histories how failures occur in boilers, steam turbines, condensers, and feedwater heaters and the corrective actions taken to deal with them Target Audience Engineers of all disciplines Managers Technicians Maintenance personnel Other technical individuals (this seminar 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 'POWER GENERATION HANDBOOK' second edition published by McGraw-Hill in 2011 (800 pages) Excerpt of the relevant chapters from the 'POWER PLANT EQUIPMENT OPERATION AND MAINTENANCE GUIDE' published by McGraw-Hill in 2012 (800 pages) ROOT CAUSE ANALYSIS FOR BOILERS AND STEAM CYCLE FAILURES MANUAL (includes practical information and case histories - 500 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 coal power plant efficiency with EnergyEdge's course on heat rate optimization. Join our classroom training for expert insights!
Enhance your career prospects in thermal power plant performance testing with EnergyEdge's course. Enroll now and gain valuable insights!