Level 7 NVQ Diploma in Construction Senior Management
Better Business Cases™ Foundation: In-House Training: In-House Training Better Business Cases™ is based on the Five Case Model - which is the UK government's best practice approach to structuring spending proposals and making effective business decisions. Using this best practice approach will allow organizations to reduce unnecessary spending and improve the decision-making process which gives you a greater chance of securing necessary funding and support for initiatives. The goal of the foundation course is to enable participants to work effectively with a team to develop a strong business case in their work environment. What You Will Learn At the end of this program, you will be able to: Describe the philosophy and the underlying rationale of the Five Case Model Identify different types of business case, their purpose, who is responsible for them Recognize when the different types are required in the development of a spending proposal Develop the business case in relation to other recognized and recommended best practices for programme and project management Overview of the Five Case Model Five key components of a business case and the order in which they are presented Three key stages in the development of a spending proposal Definition of a programme / project and the key differences between programmes and projects Purpose of a Business Justification Case (BJC) and in what circumstances it should be considered Purpose of a Strategic Outline Case (SOC) Purpose of an Outline Business Case (OBC) Purpose of a Full Business Case (FBC) Relationship between policies, strategies, programmes, and projects and their deliverables Developing the Strategic Case Purpose and core content of a Strategic Case Purpose of SMART robust spending objectives and the key objectives for spend: economy, efficiency, effectiveness, re-procurement, and statutory or regulatory compliance Four main categories of benefits criteria and the parties involved in their development Three key categories of risk Purpose of identifying constraints and dependencies Difference between direct and indirect benefits Developing the Economic Case Purpose and core content of an Economic Case Purpose of critical success factors and the key critical success factors based upon the Five Case Model Purpose of the long list options and how to generate options and undertake SWOT analysis Minimum of four short-list options, how they are derived, and what they should include (Reference Project / Public Sector Comparator [PSC]) Difference between the preferred way forward and the preferred option Purpose, objectives, key participants, and outputs of Workshop Stage 2 - identifying and assessing the options Rules that should be followed for the treatment of costs and benefits Key differences between economic appraisals and financial appraisals Factors considered when selecting the preferred option Developing the Commercial Case Purpose and core content of a Commercial Case Guiding principles when apportioning risk between the contractual parties Purpose of payment mechanisms Purpose of Step 9 in the development framework: Contracting for the deal Developing the Financial Case Purpose and core content of a Financial Case The financial statements required for all projects The possible impacts to consider Developing the Management Case Purpose and core content of a Management Case Purpose of a programme / project management strategy, framework, and plan Purpose of a change management strategy, framework, and plan Purpose of a benefits realization strategy, framework, and register / plan Purpose of a risk management strategy, framework and register / plan Purpose of a post programme / project evaluation strategy, framework, and plan
This full day workshop is designed to follow on and build on the learning from the 1-hour webinar to provide an embedded learning experience leading to acceptance and change of culture around neurodiversity. We understand the pressure managers can experience working within a neurodiverse team, this training is designed with managers in mind.
About this training course Transmission lines and sub-stations are essential components in the electrical power systems. Proper design and maintenance are crucial for transmission lines to maintain a continuous operation. The objective of this 5-day training course is to deal appropriately with control systems, design characteristics and electric & magnetic fields. Participants will gain a better understanding on the corona and gap discharge phenomena, constructional features, and optimization of the transmission lines. Training Objectives By participating in this course, you will be able to: Understand transmission line design and its application Examine different types of conductors and electrical characteristics Explore basic and general transmission line parameters Prevent overvoltage through insulation design Determine surge impedance and corona effects Calculate and measure electric and magnetic fields Comprehend the impact of audible noise and electromagnetic interference Identify interference within the transmission line systems Target Audience The course will greatly benefit the following groups but not limited to: Electrical Engineers Civil Engineers Transmission & Distribution Engineers Substation Operators Safety Engineers Reliability Engineers Facility & Plant Engineers Technical Engineers Design Engineers Plant Supervisors Electrical Contractors Course Level Basic or Foundation 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: 5 days in total (35 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 25. This course is also available through our Virtual Instructor Led Training (VILT) format. Trainer Your expert course leader is a professional engineer with extensive experience in power system studies, substation design field-testing, and EHS programs settings for Mining and Electrical Utilities sectors. He was formally the Engineering Manager at GE Canada in Ontario. He received his M.Sc. in electrical engineering from the University of New Brunswick and his MBA from Laurier School of Business in Waterloo. He has managed and executed more than 150 engineering projects on substation design EMF audits and power system studies and analyses, EMF audits and grounding audits, for major electrical utilities, mines, oil and gas, data centers, industrial and commercial facilities in Canada and the U.S. He is a certified professional engineer in the provinces of Ontario and Alberta. He has various IEEE publications, has served as a technical reviewer for many IEEE journals in power systems and control systems, and is the chair of the Industry Application Chapter (IAS) for IEEE Toronto Section. He remains a very active member for the IEEE substation committee of IEEE Std. 81 ground testing (WGE6) and IEEE Std. 80 ground design (WGD7). A certified electrical safety trainer by GE Corporate and a Canadian Standard Association (CSA) committee member at the mining advisory panel for electrical safety, he also taught many technical courses all over Canada to industrial customers, electrical consultants as well as to electrical utilities customers. Highlighted Projects: Various Power System Studies for 345/230 kV Stations - Nova Scotia Power (EMERA) RF audits for Telecom tower and antennas - Cogeco/Rogers Mobile Power System analysis - Powell Canada Structural/Geotechnical Design and upgrades - Oakville Hydro Underground Cables testing and sizing - Plan Group Relay programming and design optimization - Cenovus Canada Different Arc Flash Analysis and BESS Design - SNC Lavalin Environmental site assessment (ESA) Phase I/II for multiple stations - Ontario Electromagnetic compatibility (EMC) assessment for Toronto LRT expansion - MOSAIC Battery energy storage system (BESS) installation at City of London - Siemens Canada EMF audits for 500 kV Transmission Lines - Hydro One EMF audits for 500 kV Transmission Lines - Hydro Quebec AC interference for 138 kV line modeling and mitigations - HBMS Mine 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
Behavioural Foundation Course. The foundation course is a great opportunity to learn about your dog’s needs.
The Internet of Things (IoT) promises a wide range of benefits for industry, energy and utility companies, municipalities, healthcare, and consumers. Data can be collected in extraordinary volume and detail regarding almost anything worth measuring, such as public health and safety, the environment, industrial and agricultural production, energy, and utilities.
For anyone who has to deliver presentations who wants to become more confident and improve their speaking skills.
Project Management Fundamentals: In-House Training Many projects are performed by highly competent and effective people who have little or no project management training. They perform projects like process improvement, marketing campaign development, new product development, event planning and production, and other 'tasks' which are projects. Project Management Fundamentals (PMF) is designed to support those people who need a solid foundation in project management, without being unnecessarily burdened to learn it while on the job. The course offers practical skills, concepts, and principles that can be taken back to the workplace, along with insights needed to adapt them to specific project environments. In today's environment, that means possibly adapting to Agile / Iterative methods. So, we have recently added key Agile concepts to provide a basic understanding of shifting towards agility. Since PMF's course goal is to achieve quality performance by learning effective planning and control, the focus is on a process orientation and an analytical, systems-oriented approach. Together, these frameworks promote project-related problem solving and decision-making skills necessary for real world projects. They honor project needs for collaboration, clear communications among people, and interpersonal and relationship skills. Recognition of these needs are woven throughout PMF, but are highlighted in two specific areas: Module 2 - People and Projects Module 8 - Executing, Communicating, and Developing the Team What You Will Learn At the end of this program, you will be able to: Describe the value of strong project management Identify characteristics of a successful project and project manager Recognize how current agile / adaptive practices fit within project management Explore project management processes, including Initiating, Planning, Execution, Monitoring & Controlling, and Closing Utilize project management processes and tools, based on case studies and real-world situations Create an initial project plan Use standard project management terminology Foundation Concepts Project management and definitions Value and focus of PM Competing constraints and project success Project life cycles People and Projects People and projects overview The project manager The project team People and projects in organizations Initiating and Defining Requirements Initiating the project Developing the project charter Conducting stakeholder assessments Defining requirements Using the Work Breakdown Structure Defining the Work Breakdown Structure (WBS) Developing a usable WBS Using the WBS Managing Project Risk Making the case for risk management Overview to planning for risk Identifying risks Analyzing risks Planning responses to risks Implementing response and monitoring risks Considerations for adaptive environments Estimating Defining an estimate Estimating approaches Estimating practices Estimating cost Validating an estimate Scheduling Defining the scheduling process and related terminology Sequencing and defining dependencies Determining the critical path Considering schedule risks and optimizing the schedule Executing, Communicating, and Developing the Team From baseline to execution Project communications and stakeholder relationships High-performing teams Monitoring and Controlling Defining monitoring and controlling Viewing control through the competing demands lens Variance Analysis and corrective action (Earned Value) Considerations in adaptive environments Closing the Project Closing projects Focusing on project transition Focusing on post-project evaluations
About this training course Gas-lift is one of the predominant forms of artificial lift used for lifting liquids from conventional, unconventional, onshore and offshore assets. Gas-lift and its various forms (intermittent lift, gas-assisted plunger lift) allows life of well lift-possibilities when selected and applied properly. This 5-day training course is designed to give participants a thorough understanding of gas-lift technology and related application concepts. This training course covers main components such as application envelope, relative strengths and weaknesses of gas-lift and its different forms like intermittent lift, gas-assisted plunger lift. Participants solve examples and class problems throughout the course. Animations and videos reinforce the concepts under discussion. Unique Features: Hands-on usage of SNAP Software to solve gas-lift exercises Discussion on digital oil field Machine learning applications in gas-lift optimization Training Objectives After the completion of this training course, participants will be able to: Understand the fundamental theories and procedures related to Gas-Lift operations Easily recognize the different components of the gas-lift system and their basic structural and operational features Be able to design a gas-lift installation Comprehend how digital oilfield tools help address ESP challenges 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 the following specific groups: Production, reservoir, completion, drilling and facilities engineers, analysts, and operators Anyone interested in learning about implications of gas-lift systems for their fields and reservoirs Course Level Intermediate Advanced 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: 5 days in total (35 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. Prerequisites: Understanding of petroleum production concepts. Each participant needs a laptop/PC for solving class examples using software to be provided during class. Laptop/PC needs to have a current Windows operating system and at least 500 MB free disk space. Participants should have administrator rights to install software. Trainer Your expert course leader has over 35 years' work-experience in multiphase flow, artificial lift, real-time production optimization and software development/management. His current work is focused on a variety of use cases like failure prediction, virtual flow rate determination, wellhead integrity surveillance, corrosion, equipment maintenance, DTS/DAS interpretation. He has worked for national oil companies, majors, independents, and service providers globally. He has multiple patents and has delivered a multitude of industry presentations. Twice selected as an SPE distinguished lecturer, he also volunteers on SPE committees. He holds a Bachelor's and Master's in chemical engineering from the Gujarat University and IIT-Kanpur, India; and a Ph.D. in Petroleum Engineering from the University of Tulsa, USA. Highlighted Work Experience: At Weatherford, consulted with clients as well as directed teams on digital oilfield solutions including LOWIS - a solution that was underneath the production operations of Chevron and Occidental Petroleum across the globe. Worked with and consulted on equipment's like field controllers, VSDs, downhole permanent gauges, multiphase flow meters, fibre optics-based measurements. Shepherded an enterprise-class solution that is being deployed at a major oil and gas producer for production management including artificial lift optimization using real time data and deep-learning data analytics. Developed a workshop on digital oilfield approaches for production engineers. Patents: Principal inventor: 'Smarter Slug Flow Conditioning and Control' Co-inventor: 'Technique for Production Enhancement with Downhole Monitoring of Artificially Lifted Wells' Co-inventor: 'Wellbore real-time monitoring and analysis of fracture contribution' Worldwide Experience in Training / Seminar / Workshop Deliveries: Besides delivering several SPE webinars, ALRDC and SPE trainings globally, he has taught artificial lift at Texas Tech, Missouri S&T, Louisiana State, U of Southern California, and U of Houston. He has conducted seminars, bespoke trainings / workshops globally for practicing professionals: Companies: Basra Oil Company, ConocoPhillips, Chevron, EcoPetrol, Equinor, KOC, ONGC, LukOil, PDO, PDVSA, PEMEX, Petronas, Repsol, , Saudi Aramco, Shell, Sonatrech, QP, Tatneft, YPF, and others. Countries: USA, Algeria, Argentina, Bahrain, Brazil, Canada, China, Croatia, Congo, Ghana, India, Indonesia, Iraq, Kazakhstan, Kenya, Kuwait, Libya, Malaysia, Oman, Mexico, Norway, Qatar, Romania, Russia, Serbia, Saudi Arabia, S Korea, Tanzania, Thailand, Tunisia, Turkmenistan, UAE, Ukraine, Uzbekistan, Venezuela. Virtual training provided for PetroEdge, ALRDC, School of Mines, Repsol, UEP-Pakistan, and others since pandemic. 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
Explore the complexities of seismic interpretation in carbonates through our dynamic classroom training course. Energyedge delivers cutting-edge instruction and valuable insights.