NPORS Lift Supervisor Training The aim of the NPORS Lift Supervisor Training is to Provide candidates with underpinning knowledge to allow them to understand the role and responsibility of the Lift Supervisor. As a result of the Lift Supervisor Course, and following successful completion of the NPORS Crane Supervisor training candidates will be able to understand and follow safe systems of work for lifting operations. This Lift supervisor course is for 3 days and can be completed at your site or ours. It is important that all delegates have a good understanding of spoken and written English for NPORS Crane Supervisor Training. NPORS Lift Supervisor Experienced Test Book with Confidence at Vally Plant Training At Vally Plant Training, we guarantee unbeatable value with our Lift Supervisor Experienced Test Price Match Promise. When you choose us, you can book with confidence, knowing that we will not be beaten on price. If you find a lower price for the same NPORS Lift Supervisor Experienced Worker Test, we’ll match it—ensuring you receive top-quality training at the best possible rate. Click for our terms and conditions Your skills, our commitment—always at the best price. NPORS Lift Supervisor Experienced Worker Test is for operators who have received some form of Lift Supervisor Course in the past or alternatively has been working with Lifting equipment, like cranes, Excavators or Telehandlers for a number of years. If you are unsure if you qualify to go down the Lift Supervisor experienced test route please contact our team to discuss this in more detail. Discounts are available for multiple Lift Supervisor Course bookings There are two parts to the lift supervisor test, a theory section comprised of 25 questions and a practical session, however Lift Supervisor training revision notes will be sent once the test has been booked. It is important that all delegates have a good understanding of spoken and written English for NPORS Crane Supervisor Training Crane Supervisor Course Summary: Leading Safe and Efficient Lifting Operations Introduction Ever wonder who keeps construction sites and warehouses running smoothly and safely? That’s where lift supervisors come in. They’re the unsung heroes ensuring everything moves like clockwork. And when it comes to proving you’re the best in the biz, NPORS certification is your golden ticket. It’s not just a piece of paper; it’s your passport to climbing the career ladder. Choose our Lifting Supervisor Course Today. Why Choose Our NPORS Lift Supervisor Training? What makes our training stand out with our Lifting Supervisor Course? Imagine learning from folks who’ve been in the trenches, in training grounds that feel like the real deal, and schedules that bend to your life, not the other way around. We’re not about boring lectures; we’re about getting your hands dirty. Who Should Attend Lift Supervisor Training? Are you the go-to person when things need to get done? Whether you’re starting out or looking to step up, if you’re in the world of construction or logistics, this Lifting Supervisor Course is for you. It’s tailored for those who like to keep things moving, safely and efficiently. Course Objectives: 1. Understanding Regulatory Requirements: Familiarise participants with relevant regulations and industry standards governing crane operations, LOLER. Ensure compliance with legal requirements and best practices for safe lifting operations, BS7121. 2. Roles and Responsibilities of a Crane Lift Supervisor: Define the roles and responsibilities of a Lift supervisor within the context of lifting operations. Highlight the importance of effective communication, leadership, and decision-making skills. 3. Crane Safety Procedures: Provide an overview of crane safety procedures, including pre-operational checks, equipment inspection, and maintenance. Emphasize the importance of hazard identification, risk assessment, and mitigation strategies. 4. Lifting Plan Development: Guide participants in the understanding of the lifting plans tailored to specific lifting tasks and site conditions created by the Appointed Person(AP). Address factors such as load weight, size, shape, centre of gravity, and environmental considerations. 5. Site Safety and Hazard Awareness: Enhance participants’ awareness of potential hazards in the lifting environment, such as overhead power lines, unstable ground, and confined spaces. Implement effective measures to mitigate risks and ensure a safe working environment. 6. Communication and Coordination: Stress the importance of clear and effective communication between crane operators, riggers, signallers, and other personnel involved in lifting operations. Provide guidance on establishing communication protocols, using standardized hand signals, and conducting pre-lift briefings. 7. Emergency Response and Crisis Management: Equip participants with the skills and knowledge to respond effectively to emergencies and crisis situations during lifting operations. Implement emergency procedures, evacuation protocols, and contingency plans to mitigate risks and ensure personnel safety. 8. Practical Exercises and Case Studies: Provide hands-on lift supervisor training opportunities for participants to apply theoretical knowledge in practical scenarios. Analyse real-life case studies to identify lessons learned, best practices, and areas for improvement in crane supervision. Learning Outcomes By the end, you’ll be a pro at keeping sites safe, managing lifts, and leading teams. You’ll walk away not just with knowledge, but with practical skills that meet and beat industry standards. It’s about making you the go to lift supervisor everyone wants on their team. Course Logistics Ready to jump in? We’ve got training spots across the UK, with dates and times that fit your life. Signing up is a breeze, and we’ll guide you through any paperwork or prerequisites. It’s all about making it easy for you to get started. Conclusion: A crane supervisor course aims to empower participants with the expertise and confidence to lead safe and efficient lifting operations on construction sites. By focusing on regulatory compliance, safety procedures, lifting plan development, hazard awareness, communication, and practical training, the course prepares crane supervisors to fulfil their roles effectively and ensure the well-being of all personnel involved in lifting activities. Investing in crane supervisor training is essential for promoting a culture of safety, minimising risks, and achieving excellence in crane operations management. Crane Supervisor Training Available 7 days a week to suit your business requirements. VPT have a team of friendly and approachable instructors, who importantly have a wealth of knowledge of lifting supervision and the construction industry We have our own training centre conveniently located close to the M5 junction 9, In Tewkesbury. With its own purpose-built practical training area to simulate an actual working environment for the supervisor course. Our Lift Supervisor training and test packages are priced to be competitive. Discounts are available for multiple bookings We can send a fully qualified NPORS supervisor Tester to your site nationwide, for instance to reduce the amount of time away from work More courses: Polish your abilities with our dedicated Lift Supervision Training, Slinger Signaller Training, Telehandler Training, Cat & Genny Training, Plant Loader Securer, Ride-On Road Roller, Abrasive Wheel Training, Lorry Loader Training and Scissor Lift Training sessions. Learn the safe and effective operation of these vital machines, crucial for construction and maintenance tasks. Elevate your skills and career prospects by enrolling in our comprehensive courses today. Frequently Asked Questions 1. What is Lift Supervisor Training? Lift Supervisor Training is a specialised course designed to equip individuals with the knowledge and skills required to supervise lifting operations safely and efficiently. This training typically covers topics such as planning lifts, managing lifting equipment, and ensuring compliance with safety regulations. 2. Who should attend The Lifting Supervisor Course? This training is ideal for individuals responsible for overseeing lifting operations on construction sites, in warehouses, or any environment where lifting equipment like cranes are used. It’s particularly beneficial for site supervisors, managers, and anyone involved in the planning and execution of lifting operations to attend the NPORS Lift supervisor Course. 3. What certifications are available through the Lift Supervisor Training? Participants can obtain several Lift Supervisor certifications, including: NPORS Traditional card: Valid for 5 years, widely accepted in various sectors. NPORS card with CSCS logo: Recognised by major building contractors, with an initial RED trained operator card that can be upgraded to a BLUE competent operator card after completing relevant Crane Supervisor NVQ. 4. Is a health and safety test required for the NPORS Crane Supervisor Red operator card with the CSCS logo? Yes, to qualify for this card, you must have completed the CSCS operatives health and safety test within the last two years. 5 . How long is the certification valid, and what is the renewal process? The NPORS Traditional card is valid for 5 years. The NPORS card with the CSCS logo’s RED trained operator card is valid for 2 years, after which it can be upgraded to a BLUE competent Crane Supervisor operator card upon completion of relevant NVQs. The renewal process typically involves undergoing a refresher course or assessment to ensure continued competence. For those looking for a “NPORS Crane Supervisor Training near me,” our widespread operations make it convenient for you to access Vally Plant Trainings top-quality training no matter where you are in the UK
Masterclasses? Refreshers? Introductions? It depends what you're looking for and where you want to pitch them, but here are six tried-and-tested highly focused sessions that organisations can take individually or as a series, to help develop their teams' project management capabilities one topic at a time. Objectives for each individual session are set out below, as part of the session outlines. Taken together, as a series, however, these modules are an ideal opportunity to develop your team's levels of project management capability maturity, whether that's by introducing them to the basic principles, refreshing them on best practice, or giving them the opportunity to really drill down into a specific area of challenge in your particular operating environment. Session outlines 1 Stakeholder management Session objectives This session will help participants: Understand why stakeholders matter to projects Be able to identify and engage stakeholders Be able to categorise stakeholders by their significance 1 Key principles What does 'stakeholder' mean - in theory? What does this mean in practice? Why stakeholders matter Consequences of missing stakeholders The stakeholder management process:IdentifyAssessPlanEngage 2 Identifying stakeholders Rapid listing CPIG analysis PESTLE analysis Drawing on the knowledge and experience of others Other ways to identify stakeholders 3 Assessing stakeholders Which stakeholders are significant? Stakeholder radar Power-interest maps Power-attitude maps 4 Planning The adoption curve Dealing with obstacles Who should engage which stakeholder? How should the project's organisation be structured? How will communication happen? 5 Engaging Seven principles of stakeholder engagement 2 Requirements and prioritisation Session objectives This session will help participants: Understand how clarity of requirements contributes to project success Use different techniques for prioritising requirements Agree requirements with stakeholders Manage changes to requirements 1 Understanding and managing stakeholder needs and expectations What are 'requirements'? What is 'requirements management'? Sources of requirements - and the role of stakeholders Are stakeholders sufficiently expert to specify their needs? Do they understand the detail of what they want, or do they need help to tease that out? What do stakeholders want to achieve? Working within constraints Prioritising requirements - three techniques 2 MoSCoW prioritisation 'Must have', should have', 'could have, 'won't have this time' When to use MoSCoW 3 The Kano Model Customer satisfaction - 'attractive' and 'must-be' qualities When to use Kano 4 Value-based prioritisation Understanding risk v value Using risk v value to prioritise features and schedules 5 Agreeing requirements Perfect v 'good enough' Establishing acceptance criteria Requirements traceability Agreeing project scope 6 Changing requirements Why requirements change Why change control matters Impact on projects A formal change control process Paying for change - managing change for different types of project 3 Estimating Session objectives This session will help participants: Understand the different purposes estimates satisfy Be able to use different estimating techniques Understand how to achieve different levels of accuracy 1 Key principles What's an estimate? Informed guesswork What needs to be estimated? Costs, resources, effort, duration Tolerances Precision v accuracy 2 Estimating through the lifecycle Start Plan Do 3 Early estimates Comparative ('analogous') estimating Parametric estimating Using multiple estimating techniques 4 Bottom-up estimating Bottom-up ('analytical') estimating Pros Cons 5 Three-point estimating Three-point ('PERT': Programme Evaluation and Review Technique) estimating Uncertainty and the range of estimates Calculating a weighted average Three-point with bottom-up 4 Scheduling Session objectives This session will help participants: Understand how to create a viable schedule Be able to use different forms of schedule Understand the concept of the critical path 1 Key principles The planning horizon Rolling wave planning Release planning 2 Viable scheduling Creating a viable schedule Define the scope Sequence the work Identify the risks and build in mitigations Identify the resources Estimate the effort and durations Check resource availability Refine until a workable schedule is produced 3 Critical path analysis The critical path Network diagrams Sequence logic Practical application:Network diagram with estimated durationsThe 'forward pass'The 'backward pass'Calculating total floatIdentifying the critical pathCalculating free float Gantt charts 5 Risk and issue management Session objectives This session will help participants: Understand the difference between risks and issues Be able to identify and assess risks Understand ways of mitigating risks Manage issues 1 Key principles Understanding risk Threats and opportunities The risk management processPreparation - proactive risk managementThe process - identify, assess, plan, implementStakeholder communication Roles and responsibilities Risk management strategy The risk register Risk appetite 2 Risk identification Brainstorming Interviews Assumption analysis Checklists 3 Risk assessment and prioritisation Probability, impact and proximity Triggers Qualitative risk assessment Qualitative impact assessment Qualitative probability assessment Probability / impact grid Bubble charts Risk tolerance 4 Planning countermeasures To mitigate or not to mitigate? Categories of risk response Avoid and exploit Reduce and enhance Transfer Share Accept Contingency Secondary risks 5 Issue management What is an issue? Tolerances Issues and tolerances The PRINCE2 view of issues Ownership of issues An issue management process Issue register 6 Budgeting and cost control Session objectives This session will help participants: Understand what to include in a budget - and why Choose - and use - the appropriate estimating technique Align the budget with the schedule Understand how to monitor spend and control costs Trouble-shoot effectively to get projects back within budget Session format Flexible. The session can be tailored to the participants' average level of project management maturity - a 60-minute session (delivered virtually) is an effective introduction. A 90-minute session allows for more in-depth treatment. A half-day session (face-to-face or virtual) gives time for a more challenging workshop, particularly to discuss specific cost control issues with any of the participants' current projects. 1 Where is the money coming from? Can we pay from revenue? Do we need to borrow? How long will the project take to pay back? The lifecycle of the budget Through-life costs Stakeholder involvement 2 Estimating costs Reminder: the relationship between estimates Reminder: possible estimating techniques What do we need to estimate?PeopleEquipmentMaterialsFacilities and operating costsWork package estimateEstimated project costs Estimating agile projects 3 Aligning budget and schedule Scheduling and financial periods Spreading the budget 4 Reserves and agreeing the budget Contingency reserve Management reserve Agreeing the budget 5 Cost control Planned spend over time Actual spend over time Work completed over time Evaluating different scenarios: delivery v spend 6 Trouble-shooting Why are we where we are? What has caused the project to spend at the rate it is? Why is it delivering at the rate it is? What are the root causes? What can we do about it?
Overview For internal employees who want to understand and expand their roles related to financial reporting, as well as those who simply need a refresher on financial accounting, this course is the ideal way to get up to speed. By exploring concepts that go beyond basic accounting, this course will enable participants to approach financial auditing with renewed confidence. The programme will walk participants through an analysis of an organization's financial statements using case study exercises, where participants will calculate key ratios and analyze trends over time. Engaging in discussions on both historic and current fraud cases, participants will learn how to recognize âred flagsâ in financial statement reporting.
About this Training Course Geomechanical evaluations are about the assessment of deformations and failure in the subsurface due to oil & gas production, geothermal operations, CO2 storage and other operations. All geomechanical evaluations include four types of modelling assumptions, which will be systematically addressed in this training, namely: 1. Geometrical modelling assumption: Impact of structural styles on initial stress and stress redistribution due to operations 2. Formation (or constitutive) behaviour: Linear elastic and non-linear behaviour, associated models and their parameters, and methods how to constrain these using 3. Initial stress: Relation with structural setting and methods to quantify the in-situ stress condition 4. Loading conditions: Changes in pore pressure and temperature on wellbore and field scale This 5 full-day course starts with the determination of the stresses in the earth, the impact of different structural styles, salt bodies, faulting and folding on the orientation of the three main principal stress components. Different (field) data sources will be discussed to constrain their magnitude, while exercises will be made to gain hands-on experience. Subsequently, the concepts of stress and strain will be discussed, linear elasticity, total and effective stress and poro-elasticity in 1D, 2D and 3D, as well as thermal expansion. Participants will be able to construct and interpret a Mohr-circles. Also, different failure mechanisms and associated models (plastic, viscous) will be discussed. All these concepts apply on a material point level. Next, geomechanics on the wellbore scale is addressed, starting with the stress distribution around the wellbore (Kirsch equations). The impact of mudweight on shear and tensile failure (fracturing) will be calculated, and participants will be able to determine the mudweight window stable drilling operations, while considering well deviation and the use of oil-based and water-based muds (pore pressure penetration). Fracturing conditions and fracture propagation will be addressed. Field-scale geomechanics is addressed on the fourth day, focussing on building a 3D geomechanical model that is fit-for-purpose (focussing on the risks that need evaluation). Here, geological interpretation (layering), initial stress and formation property estimation (from petrophysical logs and lab experiments) as well as determining the loading conditions come together. The course is concluded with interpretation of the field-wide geomechanical response to reservoir depletion with special attention to reservoir compaction & subsidence, well failure and fault reactivation & induced seismicity. Special attention is paid to uncertainties and formulating advice that impacts decision-making during development and production stages of a project. This course can also be offered through Virtual Instructor Led Training (VILT) format. Training Objectives Upon completing of this course, the participants will be able to: Identify potential project risks that may need a geomechanical evaluation Construct a pressure-depth plot based on available field data (density logs, (X)LOT, FIT, RFT) Employ log-based correlation function to estimate mechanical properties Produce a simplified, but appropriate geometrical (layered, upscaled) model that honours contrasts in initial stress, formation properties and loading conditions, including Construct and interpret a Mohr-circle for shear and tensile failure Calculate the mud weight that leads to shear and tensile failure (fracturing conditions) Identify potential lab experiments to measure required formation properties Describe the workflow and data to develop a field-wide fit-for-purpose geomechanical model Discuss the qualitative impact of pressure and temperature change on the risk related to compaction, well failure, top-seal integrity and fault reactivation Target Audience This course is intended for Drilling Engineers, Well Engineers, Production Technologists, Completion Engineers, Well Superintendents, Directional Drillers, Wellsite Supervisors and others, who wish to further their understanding of rock mechanics and its application to drilling and completion. There is no specific formal pre-requisite for this course. However, the participants are requested to have been exposed to drilling, completions and production operations in their positions and to have a recommended minimum of 3 years of field experience. Course Level Intermediate Trainer Your expert course leader has over 30 years of experience in the Oil & Gas industry, covering all geomechanical issues in the petroleum industry for Shell. Some of his projects included doing research and providing operational advice in wellbore stability, sand failure prediction, and oil-shale retortion among others. He guided multi-disciplinary teams in compaction & subsidence, top-seal integrity, fault reactivation, induced-seismicity and containment. He was also involved in projects related to Carbon Capture Storage (CCS). He is the founding father of various innovations and assessment tools, and developed new insights into the root causes seismicity induced by Oil & Gas production. Furthermore, he was the regional coordinator for technology deployment in Africa, and Smart Fields (DOFF, iField) design advisor for Shell globally. He was responsible for the Geomechanical competence framework, and associated virtual and classroom training programme in Shell for the last 10 years. He served as one of the Subject Matter Expert (SME) on geomechanics, provided Technical Assurance to many risk assessments, and is a co-author of Shell's global minimun standard on top-seal integry and containment. He has a MSc and PhD in Civil Engineering and computational mechanics from Delft University of Technology, The Netherlands. Training experience: Developed and delivered the following (between 2010 and 2020): The competence framework for the global geomechanical discipline in Shell Online Geomechanical training programs for petroleum engineers (post-doc level) The global minimum standard for top-seal integrity assessment in Shell Over 50 learning nuggets with Subject Matter Experts Various Shell virtual Geomechanical training courses covering all subjects Developed Advanced Geomechanical training program for experienced staff in Shell Coaching of KPC staff on Geomechanics and containment issues on an internship at Shell in The Netherlands, Q4 2014 Lectured at the Utrecht University summer school (The Netherlands, 2020) on induced seismicity among renowned earthquake experts (Prof. Mark Zoback, Prof. Jean-Philippe Avouac, Prof. Jean-Pierre Ampuero and Prof. Torsten Dahm) (https://www.nwo.nl/onderzoeksprogrammas/deepnl/bijeenkomsten/6-10-juli-2020-deepnl-webinar-series-induced-seismicity) Lectured at the Danish Technical University summer school (Copenhagen, 2021) summer school on Carbon Capture and Storage (https://www.oilgas.dtu.dk/english/Events/DHRTC-Summer-School) Virtual Carbon Capture and Storage (CCS): Project Risks & How to Manage Them training course (October and November 2021) 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
This course enables learners to logically and clearly work through the risk management process, from being aware of the relevant legislation, identifying hazards, assessing risk and onwards through risk reduction, balancing risk against individual choice, and the importance of recording keeping. It aims to increase learner awareness of both their responsibility and their organisation's responsibility, for meeting industry standards and keeping service users, staff, and workplaces safe.
This is an excellent introduction to health and safety in the workplace and will benefit all employees, particularly those who may be accepting a health and safety role, such as a safety representative within their organisation. A range of subjects are covered including: The roles and responsibilities for health, safety and welfare in the workplace The value and process of risk assessments The identification and control of workplace hazards How to respond to workplace incidents and accidents.
Gain expertise in biohazard safety with our "Biohazard Safety: Managing Blood and Body Fluid Spillages Instructor Training" course. Ideal for healthcare professionals, lab staff, and emergency responders.
This course will provide delegates involved in tackling the financial underpinning of corrupt behaviour with the knowledge, concepts and practices necessary to understand and mitigate illicit financial flows.