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544 Courses

Seismic Stratigraphic Interpretation in Different Basin Settings (Passive, Extensional, Convergent & Oblique)

By EnergyEdge - Training for a Sustainable Energy Future

Dive deep into seismic stratigraphic interpretation in various basin settings with EnergyEdge's specialized course. Enroll in our classroom training today!

Seismic Stratigraphic Interpretation in Different Basin Settings
(Passive, Extensional, Convergent & Oblique)
Delivered In-PersonFlexible Dates
£3,399 to £3,499

Garden Design Training Course Beginner to Advanced

By ATL Autocad Training London

Who is this course for? The Garden Design Training Courses are suitable for individuals interested in learning how to plan, design, and manage outdoor spaces, including public parks, gardens, parks, and commercial landscapes. Jobs: Landscape Designer, Consultant, Garden Planner, Green Space Developer, Urban Garden Designer. Click here for more info: Website Personalized 1-on-1 sessions. Book between 9 a.m. and 7 p.m., Mon to Sat. (Book anytime and day). The 40-hour program includes AutoCAD, Sketchup, Vray, IndDesign and Photoshop. Garden Design Software Training Course Options Option A: AutoCAD, Sketchup Pro, Vray, Photoshop (Total: 40 hours) AutoCAD (10 hours): Module 1: AutoCAD Fundamentals (2 hours) - Explore the AutoCAD interface and its toolset - Master drawing creation, management, and storage - Utilize essential drawing and editing commands Module 2: Drawing and Editing Mastery (3 hours) - Achieve precision drawing with lines, circles, and arcs - Create complex shapes with polylines and polygons - Proficiently use object modification tools: Move, Copy, Rotate, and Scale Module 3: Precision and Detail (3 hours) - Implement coordinate systems for accuracy - Learn dimensioning techniques and text incorporation - Elevate designs with hatching and gradients Module 4: Advanced Design Tools (2 hours) - Harness the power of blocks and attributes - Manage layers and object properties efficiently - Craft layouts and prepare for plotting Sketchup Pro (16 hours): Specializing in Garden Planning (Planting Plans, Vegetation Layouts, and Maps) Module 1: Introduction to Sketchup Pro (2 hours) - Navigate the Sketchup Pro interface - Understand essential 2D and 3D modeling concepts - Create and manipulate garden design objects Module 2: Advanced Garden Modeling (6 hours) - Sculpt intricate garden elements with curves and surfaces - Expertly edit and transform garden geometry - Focus on Planting Plans, Vegetation Layouts, and Maps Module 3: Visualization Excellence with Vray (4 hours) - Master the Vray rendering engine for lifelike garden visuals - Apply materials and textures for realism - Set up optimal lighting and camera angles for compelling garden renders Module 4: Image Enhancement through Photoshop (10 hours) - Use Photoshop for garden design refinement - Elevate garden images from Sketchup and Vray outputs - Create visually stunning presentations for garden projects Additional Resources: Gain access to invaluable resources, including free online portfolio design assistance, career growth guidance, and mock interviews, ensuring your readiness for the competitive garden design job market. Option B: AutoCAD, Rhino, Vray, Photoshop (Total: 40 hours) AutoCAD (12 hours): Module 1: AutoCAD Introduction (2 hours) - Unveil the AutoCAD interface and its feature set - Master drawing creation, management, and storage - Proficiency in fundamental drawing and editing commands Module 2: Drawing and Editing Proficiency (3 hours) - Apply precision drawing techniques, including lines, circles, and arcs - Construct complex shapes with polylines and polygons - Skillfully use object modification commands: Move, Copy, Rotate, and Scale Module 3: Precision and Detail Mastery (3 hours) - Implement coordinate systems for precision - Explore comprehensive dimensioning methods and text integration - Enhance designs with hatching and gradients Module 4: Advanced Design Tools (4 hours) - Gain expertise in blocks and attributes for efficient design - Efficiently manage layers and object properties - Craft layouts and prepare for plotting Rhino (14 hours): Module 1: Rhino Introduction (2 hours) - Navigate within the Rhino interface - Understand essential 2D and 3D modeling concepts for garden design - Create and manipulate garden design objects Module 2: Advanced Garden Modeling (6 hours) - Craft intricate garden structures using curves and surfaces - Proficiently edit and transform garden geometry - Build complex 3D garden structures Module 3: Visualization Mastery with Vray (6 hours) - Set up optimal lighting and camera angles for garden renders - Explore rendering settings and options for high-quality outputs - Learn post-production techniques and compositing for exceptional garden visuals Module 4: Image Enhancement with Photoshop (8 hours) - Utilize Photoshop for refining garden design concepts - Enhance garden images from Rhino and Vray outputs - Create visually striking garden presentations for projects Garden Design Training Course Information When Can I Book This Training Course? - Immerse yourself in a personalized training experience with our flexible 1-on-1 training sessions. - Tailor your schedule by pre-booking a convenient hour of your choice. - Available for booking from Monday to Saturday between 9 a.m. and 7 p.m. - Alternatively, you can call 02077202581 to book over the phone. Training Duration - This comprehensive course spans 40 hours, which you can split over as many days as needed to create your ideal learning schedule. Training Method - We offer 1-on-1 training, which can be conducted either in-person Face to Face or Live Online. - Expect personalized attention, customized content, a flexible learning pace, and individualized support throughout your training. - We also provide the option of Live Online 1-on-1 sessions over Zoom for added convenience. Enroll Today - If you're ready to embark on this enriching journey, click the link below to enroll in our 1-on-1 Course. Garden Design Software Training Overview In our comprehensive garden design training program, you'll cultivate your expertise using a thoughtfully selected array of industry-leading software tools, ensuring you're well-prepared to bring your garden designs to vibrant life. Option A: - AutoCAD (10 hours): Craft precise garden layouts and plans. - SketchUp (16 hours): Specialize in garden planting plans, vegetation layouts, and maps. - Vray (4 hours): Create lifelike 3D renderings of your garden designs. - Photoshop (10 hours): Enhance garden images effectively. Option B: - AutoCAD (12 hours): Develop garden blueprints with precision. - Rhino (14 hours): Master 3D modeling for intricate garden designs. - Vray (6 hours): Craft stunning 3D visualizations of your gardens. - Photoshop (8 hours): Perfect your garden design concepts. Both options accommodate Mac and Windows operating systems, ensuring accessibility for all learners. Key Benefits Price Assurance: We are committed to delivering exceptional value for your investment in a flourishing garden design career. One-on-One Training Sessions: Tailored learning experiences designed to adapt to your unique learning style. Flexible Scheduling: Choose your preferred training time and day, with availability from Monday to Sunday, spanning from 9 am to 8 pm. Lifetime Email and Phone Support: Ongoing support continues beyond your training period, facilitating your career growth. Computer Configuration Assistance: We provide guidance to ensure a seamless software installation on your computer. Referral Benefits: Enjoy special discounts when referring a friend and substantial savings on group training courses.

Garden Design Training Course Beginner to Advanced
Delivered in London or OnlineFlexible Dates
£1,440

Subsea Production Engineering - Incorporating Subsea Tie-backs - Virtual Instructor Led Training

By EnergyEdge - Training for a Sustainable Energy Future

About this Virtual instructor Led Training (VILT)  The Subsea Production Engineering Virtual instructor Led Training (VILT) course provides an overview of all of the functionalities and key interfaces of subsea equipment. The VILT course will refer to relevant industry engineering standards for subsea equipment, subsea tie-backs and critical operational requirements. The sessions will cover challenges associated with equipment design and installability, as well as a new module on subsea tie-backs. The primary learning objectives for this VILT course are met through a combination of interactive presentations, discussion and exercises. Training Objectives By the end of this VILT course, participants will be able to: Apply the requirements of related industry standards (API 6A/ 17D, API 17A etc.) engineering standards Understand the barrier and qualification requirements Identify the barriers in place given a specific mode of operation Evaluate and select which tree alternatives are valid based on the key design drivers Identify and describe the key design drivers Explain the importance of well kill rate Describe which tree alternatives are valid for certain scenarios based on an evaluation of the key tree design requirements Examine what effects subsurface requirements may have on tree design Understand the challenges associated with designing equipment for manufacturability and installability Recognise the implications of design changes to specific components and the effects on transportation and installation (such as what type of vessels, lifting equipment, and tools to use and the logistical requirements) Recognise the implication of design changes on manufacturability of subsea equipment Target Audience This VILT course provides a comprehensive understanding of the equipment used in subsea production systems. It is designed for petroleum engineers, production engineers, subsea project engineers and is also highly suitable for cost, planning, offshore installation and offshore operations engineers. Anyone directly or indirectly involved with subsea equipment will benefit from attending this VILT course - from engineers installing the equipment to procurement staff looking to understand more. Training Methods The VILT course will be delivered online in 4 half-day sessions comprising 4 hours per day, with 2 breaks of 10 minutes per day. Course Duration: 4 half-day sessions, 4 hours per session (16 hours in total). Trainer Most of his working life, your expert course leader has been in a role that has enabled him to pass on skills and knowledge to others. A full-time role in Training and Development came about in 1996 with the offer to take up a full-time teaching post at Aberdeen College. In 1998, he was recruited by Kvaerner Oilfield Products, an Oil & Gas industry company, specialising in Subsea Control Systems, to develop and implement a Training & Competence program acceptable for its staff of over 600 and their client companies - a challenge he could not resist. In 2003, he broadened his horizons and became an independent Training & Development consultant. Building a reputation for delivering training and development to the Oil & Gas industry to the highest standards, he later joined Jee Ltd, a leading subsea engineering and training company based in Aberdeen. He was tasked with a wide portfolio of training, coaching & mentoring to achieve high levels of competence for the client's staff and customers. He is also a Science and Engineering Ambassador (Scotland), promoting the need for engineers and technicians for Scotland's industries, a frequent consultant to the European Economic & Social Committee for standardising Vocational Skills training and competence throughout the EU. He holds memberships in the Society of Operations Engineers, Chartered Institute of Personnel & Development and Society of Underwater Technologies. 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

Subsea Production Engineering - Incorporating Subsea Tie-backs - Virtual Instructor Led Training
Delivered in Internationally or OnlineFlexible Dates
£1,165 to £2,199

Facilitation Skills Training Course (£1450 total for this 2-day course for a group of 4-10 participants)

By Buon Consultancy

Facilitation Skills Training

Facilitation Skills Training Course (£1450 total for this 2-day course for a group of 4-10 participants)
Delivered In-Person in Edinburgh or UK WideFlexible Dates
£1,450

GARDEN DESIGN TRAINING (BEGINNER TO ADVANCE LEVEL)

By Real Animation Works

Garden design face to face training customised and bespoke.

GARDEN DESIGN TRAINING (BEGINNER TO ADVANCE LEVEL)
Delivered in London or OnlineFlexible Dates
£1,550

Suicide First Aid

5.0(2)

By Changing Minds Training

This one-day Suicide First Aid training course gives learners the knowledge and tools to understand that suicide is one of the most preventable deaths and some basic skills can help someone with thoughts of suicide stay safe from their thoughts and stay alive.

Suicide First Aid
Delivered in London or UK Wide or OnlineFlexible Dates
£1,995

About this Training Course This 5 full-day course is aimed at engineers and supervisors who already have a basic understanding of well construction methods but who would benefit from a more detailed knowledge of completion design. The course will concentrate on the important aspects of completion design and what makes a safe and efficient well. A common thread of practical examples will be used throughout the course in the form of a case study or 'red-thread' exercise. The case study is based around data all taken from a single field where those attending will work through all the basic issues of a completion design. The exercises associated with the case study is performed in the student's own time after each of the formal sessions. However, at the start of the next day, the case study is reviewed and discussed. The whole case study will continue through all sessions, with each element being reviewed at the start of the next session. There is no 'right' answer to the exercise - producing interesting discussions! The purpose of the course is not to go over specific equipment in detail. Teaching methods include presentations, videos, and animations and the case study. The course will cover: Types and configurations of completions The completion design process Inflow performance, skin and formation damage Perforating; selection, deployment and interface with rest of completion Stimulation and impact on completion and flow performance with coverage of modern horizontal multifrac tools Open hole, non-sand control completions including open hole packers and horizontal well clean up Sand control; when do you need it, basic types and selection guidelines. Includes standalone screens, ICDs, various gravel packing techniques, frac packs and expandable screens Tubing sizing, flow estimation and liquid loading Artificial lift; types and selection criteria, interface with drilling, reservoir and facilities. Design of gas lift and ESPs included Production chemistry impacts on completion, prevention and removal (scales, wax, asphaltene, hydrates, and souring) Metallurgy, corrosion, and erosion; metal types and selection of Elastomers and plastics; types and selection of Tubing stress analysis; picking the grade and weight of tubing, plus selection criteria for packers and expansion devices. Interface between tubing stress analysis and casing design Completion equipment; basic types of equipment, reliability and selection criteria for each (tree, safety valve, mandrel, packers, expansion devices etc) Completion installation; importance of wellbore clean-out, function and types of brines, pointers for efficient completion installation Non-conventional wells; types and when / where to use them (multilaterals, smart (intelligent) wells and also SAGD, CO2 sequestration, CBM, etc) Training Objectives By the end of this course, the participants should be able to: Have a good understanding of the completion design process and what makes a good completion design Understand the importance of the installation process (completion running) in the design process Have an appreciation of new and developing completion techniques (intelligent wells) Target Audience This course will benefit engineers and field-based personnel such as completion supervisors and production engineers. It is also suitable for completion vendors, specialists such as chemists and subsurface personnel including geologists, reservoir engineers and petrophysicists. Trainer Your expert course leader has 30 years of oil and gas industry experience. A first class degree in geophysics and a master degree in Petroleum Engineering was a prelude to seven years with BP as a petroleum engineer. He left BP and following a short spell in Camco, jointly founded ICE Energy. After six years of completions and petroleum engineering consultancy and training, ICE Energy merged with TRACS International, where he continued with petroleum and completion engineering studies, leading integrated teams, and developing / delivering training courses for a variety of different clients in diverse world-wide locations. In the last five years, he is independent again - focusing on technical consulting and course delivery. 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

Completion Design
Delivered in Internationally or OnlineFlexible Dates
£4,385 to £5,099

Competency Management & Assurance in the Energy Industry

By EnergyEdge - Training for a Sustainable Energy Future

Enhance your competency in the energy industry with EnergyEdge's classroom training on competency management assurance. Enroll now!

Competency Management & Assurance in the Energy Industry
Delivered In-Person
£1,299 to £1,399

Gas Lift Design & Optimization using NODAL Analysis

By EnergyEdge - Training for a Sustainable Energy Future

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

Gas Lift Design & Optimization using NODAL Analysis
Delivered in Internationally or OnlineFlexible Dates
£3,749 to £4,360

Seismic Stratigraphy and Depositional Systems: Predicting Reservoir Distribution, Geometry & Quality

By EnergyEdge - Training for a Sustainable Energy Future

Learn how to predict reservoir distribution, geometry, and quality with EnergyEdge's comprehensive course. Enroll now to enhance your skills and knowledge.

Seismic Stratigraphy and Depositional Systems: Predicting Reservoir Distribution, Geometry & Quality
Delivered In-PersonFlexible Dates
£3,399 to £3,499