Recognised Accreditation This course is accredited by continuing professional development (CPD). CPD UK is globally recognised by employers, professional organisations, and academic institutions, thus a certificate from CPD Certification Service creates value towards your professional goal and achievement. Course Curriculum Introduction Introduction 00:02:00 The Context 00:07:00 NZEB Definitions 00:10:00 Thermal loads and energy use in buildings 00:05:00 Steps to achieve NZEB goals 00:07:00 Project Examples 00:04:00 Global Road maps 00:05:00 Assessment Assessment - Net-Zero Energy Buildings 00:10:00 Certificate of Achievement Certificate of Achievement 00:00:00 Get Your Insurance Now Get Your Insurance Now 00:00:00 Feedback Feedback 00:00:00
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This course aims to provide a comprehensive understanding of renewable energy technologies, market forecasts, business models, financing structures, storage, and energy transition focus areas while addressing the challenges to the renewable energy business model. After the successful completion of the course, you will be able to learn about the following, Renewable energy technologies. Renewable energy market forecast. Renewable energy business model. Major financing structures. The optimum financing structure. Challenges to renewable energy business model. Renewable energy storage. Energy transition focus area. Course Aim: The aim of this course is to provide a deep understanding of renewable energy technologies, market forecast, and business models. This course will also explore major financing structures and the optimum financing structure for renewable energy projects. Additionally, students will learn about the challenges associated with renewable energy business models and how to address them. The course will also cover renewable energy storage and its importance in the energy transition focus area. The aim of this course is to make students understand a comprehensive understanding of renewable energy technologies, business models, financing structures, storage solutions, and market trends, with a focus on energy transition as a key area of opportunity and growth. VIDEO - Course Structure and Assessment Guidelines Watch this video to gain further insight. Navigating the MSBM Study Portal Watch this video to gain further insight. Interacting with Lectures/Learning Components Watch this video to gain further insight. Renewable Energy Business Development Model Self-paced pre-recorded learning content on this topic. Renewable Energy Business Development Model Put your knowledge to the test with this quiz. Read each question carefully and choose the response that you feel is correct. All MSBM courses are accredited by the relevant partners and awarding bodies. Please refer to MSBM accreditation in about us for more details. There are no strict entry requirements for this course. Work experience will be added advantage to understanding the content of the course. The certificate is designed to enhance the learner's knowledge in the field. This certificate is for everyone eager to know more and get updated on current ideas in their respective field. We recommend this certificate for the following audience. Renewable Energy Business Development Manager Renewable Energy Sales Manager Renewable Energy Project Manager Renewable Energy Market Analyst Renewable Energy Investment Analyst Renewable Energy Consultant Renewable Energy Business Analyst Renewable Energy Commercial Manager Renewable Energy Account Manager Renewable Energy Product Manager. Average Completion Time 2 Weeks Accreditation 3 CPD Hours Level Advanced Start Time Anytime 100% Online Study online with ease. Unlimited Access 24/7 unlimited access with pre-recorded lectures. Low Fees Our fees are low and easy to pay online.
Overview With the ever-increasing demand for Renewable Energy in personal & professional settings, this online training aims at educating, nurturing, and upskilling individuals to stay ahead of the curve - whatever their level of expertise in Renewable Energy may be. Learning about Renewable Energy or keeping up to date on it can be confusing at times, and maybe even daunting! But that's not the case with this course from Compete High. We understand the different requirements coming with a wide variety of demographics looking to get skilled in Renewable Energy . That's why we've developed this online training in a way that caters to learners with different goals in mind. The course materials are prepared with consultation from the experts of this field and all the information on Renewable Energy is kept up to date on a regular basis so that learners don't get left behind on the current trends/updates. The self-paced online learning methodology by compete high in this Renewable Energy course helps you learn whenever or however you wish, keeping in mind the busy schedule or possible inconveniences that come with physical classes. The easy-to-grasp, bite-sized lessons are proven to be most effective in memorising and learning the lessons by heart. On top of that, you have the opportunity to receive a certificate after successfully completing the course! Instead of searching for hours, enrol right away on this Renewable Energy course from Compete High and accelerate your career in the right path with expert-outlined lessons and a guarantee of success in the long run. Who is this course for? While we refrain from discouraging anyone wanting to do this Renewable Energy course or impose any sort of restrictions on doing this online training, people meeting any of the following criteria will benefit the most from it: Anyone looking for the basics of Renewable Energy , Jobseekers in the relevant domains, Anyone with a ground knowledge/intermediate expertise in Renewable Energy , Anyone looking for a certificate of completion on doing an online training on this topic, Students of Renewable Energy , or anyone with an academic knowledge gap to bridge, Anyone with a general interest/curiosity Career Path This Renewable Energy course smoothens the way up your career ladder with all the relevant information, skills, and online certificate of achievements. After successfully completing the course, you can expect to move one significant step closer to achieving your professional goals - whether it's securing that job you desire, getting the promotion you deserve, or setting up that business of your dreams. Course Curriculum Module 1- Renewable Energy Basics Renewable Energy Basics 00:00 Module 2- Hydroelectric Power Hydroelectric Power 00:00 Module 3- Wind Power Wind Power 00:00 Module 4- Ocean Power Ocean Power 00:00 Module 5- Bioenergy Bioenergy 00:00 Module 6- Geothermal Energy Geothermal Energy 00:00 Module 7- Solar Energy Solar Energy 00:00 Module 8- Energy Storage Energy Storage 00:00 Module 9- Grid Integration of Renewable Energy Grid Integration of Renewable Energy 00:00 Module 10- Challenges of Renewable Sources of Energy Challenges of Renewable Sources of Energy 00:00
About this Virtual Instructor Led Training (VILT) Asia Pacific is set to be the largest and fastest growing Hydrogen market globally. This growth is driven by decarbonisation of energy-use, ammonia production and rising demand of fuel cell electric vehicles. Hydrogen as a fuel has outstanding energy carrying capacity and many application possibilities ranging from Petroleum refinery, Ammonia and Methanol production, Transportation and Power generation. Although the current petrochemical market segment will remain strongest in the near future, it is the transport and power sector which spurs the vision of a massive market takeoff in the next decade. The ever-rising share of renewable energies require flexible and scalable storage solutions, which in turn offers many additional revenue streams beyond pure electricity sales. Adding to this the strong impetus towards decarbonization of the transport sector from cars, trucks, trains to ships and even airplanes creates the breed for an exciting and yet untapped market potential. This course aims to clarify and assess the hydrogen business case along its value chain and versatile market applications. Training Objectives Understanding current hydrogen market status and recent developments Major drivers and inhibitors influencing the growth of the market Understanding and comparing various production technology processes Challenges and solutions in transport, distribution and storage of hydrogen Mapping the many petrochemical, energy and transport applications Analyse business cases from around the world and understand their economics Target Audience Project developers Equipment Manufacturers Oil, Gas and Petrochemical sector companies IPPs and utilities Transport sector companies and port operators Policy makers and regulators Investors and lenders Course Level Basic or Foundation Training Methods The VILT will be delivered online in 4 half-day sessions comprising 4 hours per day, including time for lectures, discussion, quizzes and short classroom exercises. Additionally, some self-study will be requested. Participants are invited but not obliged to bring a short presentation (10mins max) on a practical problem they encountered in their work. This will then be explained and discussed during the VILT. A short test or quiz will be held at the end the course. Trainer Your expert course leader is an internationally renowned energy communicator and business educator, focused on the interconnected clean energy transition topics of renewable power, energy storage, energy system electrification and hydrogen. His own independent technology tracking, market assessment and opportunity/risk analysis is delivered to clients through a mix of business advisory work, commissioned content, small-group training (online & in-person), and one-to-one executive coaching (online). In the hydrogen sector, he is currently lead consultant and trainer to the World Hydrogen Leaders network, and writer of their 'This Week in Hydrogen' news column. He is also co-presenter of the 'New Energy Chinwag' podcast, which regularly covers hydrogen-related issues. During more than 15 years as an independent energy expert, he has helped companies from large multinationals to innovative start-ups - totalling assignments in over 30 countries across 5 continents. Most recently, he has presented clean energy training in locations as diverse as Singapore, the UK, South Africa, The Philippines, the USA, Mexico, Spain and Dubai - and, in recent times of course, online to international audiences from across the world. Prior to this, he was Research Director for over 10 years at Informa, a $9 billion business intelligence provider; where he drove new market identification, analysis and project deployment work, and managed teams in the UK and US. He has a strong science background, holding a 1st Class Honours degree in Natural Sciences from the University of Cambridge, a PhD in Earth Sciences and a further Diploma in Economics & Sustainability from the UK's Open University. 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
This course aims to provide students with an understanding of the various energy sources, including renewable sources, and their global consumption patterns, with a focus on the technologies and processes involved in harnessing renewable energy sources such as solar, wind, hydroelectric, geothermal, ocean, hydrogen, and biomass energy. After the successful completion of the course, you will be able to learn about the following,Major energy sources. Primary and secondary sources. Commercial and non-commercial sources. Renewable and non-renewable energy sources. Global energy consumption.World energy scenario.Renewable energy sources. Solar energy sources and photovoltaics. Solar Energy. Wind Energy. Hydroelectric Energy. Geothermal Energy. Ocean Energy. Hydrogen Energy. Biomass Energy. This course aims to provide students with a comprehensive understanding of different types of energy sources and their impact on the environment, while also exploring the concept of sustainability. Students will learn about major energy sources, including primary and secondary sources, commercial and non-commercial sources, and renewable and non-renewable energy sources. The course will analyze global energy consumption and the world energy scenario, highlighting the importance of renewable energy sources, and exploring solar, wind, hydroelectric, geothermal, ocean, and biomass energy. This course will also introduce students to hydrogen energy and photovoltaics technology. Upon completing this course, students will have gained a critical understanding of different types of energy sources and an appreciation of how sustainable energy practices can positively impact the environment. The aim of this course is to provide students with a comprehensive understanding of energy sources, including primary and secondary, commercial and non-commercial, renewable and non-renewable sources, and their implications for global energy consumption and the world energy scenario, with a particular focus on solar, wind, hydroelectric, geothermal, ocean, hydrogen, and biomass energy sources. VIDEO - Course Structure and Assessment Guidelines Watch this video to gain further insight. Navigating the MSBM Study Portal Watch this video to gain further insight. Interacting with Lectures/Learning Components Watch this video to gain further insight. Introduction to Renewable Energy Self-paced pre-recorded learning content on this topic. Introduction to Renewable Energy Put your knowledge to the test with this quiz. Read each question carefully and choose the response that you feel is correct. All MSBM courses are accredited by the relevant partners and awarding bodies. Please refer to MSBM accreditation in about us for more details. There are no strict entry requirements for this course. Work experience will be added advantage to understanding the content of the course. The certificate is designed to enhance the learner's knowledge in the field. This certificate is for everyone eager to know more and get updated on current ideas in their respective field. We recommend this certificate for the following audience. Renewable Energy Consultant Energy Efficiency Engineer Solar Energy Specialist Wind Energy Analyst Biomass Energy Project Manager Geothermal Energy Engineer Hydroelectric Power Plant Operator Ocean Energy Researcher Renewable Energy Business Developer Sustainable Energy Policy Analyst Average Completion Time 2 Weeks Accreditation 3 CPD Hours Level Advanced Start Time Anytime 100% Online Study online with ease. Unlimited Access 24/7 unlimited access with pre-recorded lectures. Low Fees Our fees are low and easy to pay online.
About this Training Course Wind has surpassed hydro-power generation in many countries recently. Wind energy offers many advantages, which explains why it's one of the fastest-growing energy sources in the world. The following are the advantages of wind power: Wind power is cost effective: Land-based utility-scale wind is one of the lowest-priced energy sources available today The fuel for wind power is free. This reduces the operation and maintenance cost of wind power plants significantly Wind is a clean source of power generation that does not pollute the air like power plants which rely on combustion of fossil fuel Wind power plants create jobs. Wind turbine technician is the fastest growing career in many countries Wind enables industry growth and competitiveness due to its low cost Wind power is a domestic source of energy. The wind supply is abundant and inexhaustible. The wind power generation capacity has become the largest source of renewable power in many countries Wind turbines can be built on existing farms and ranches. This greatly benefits the economy in rural areas, where most of the best wind sites are found. Wind power plant owners make rent payments to the farmers or ranchers for the use of their land, providing landowners with additional income This 5 half-day course covers all aspects of wind power plants including evaluation of a potential location for a wind power plant using wind data and using statistical distributions to approximate available wind energy at a wind power plant site. It provides also an in-depth understanding of all wind power plant equipment including wind turbines, generators, instrumentation and control systems, drive trains, gearboxes, doubly fed induction generators, synchronous generators, nacelles, towers, transformers, etc. The economics of a wind power plant including economic analysis of wind power generation, economic comparison between a large- and small-scale wind power plant, economic decision making, rate of return from a wind power plant, economic life and replacement of a wind power plant as well as the cost of electricity from wind power plants are covered in detail in this course. A thorough explanation of the design, operation and maintenance of on-shore and off-shore wind farms is presented in detail in this course as well as all the significant improvements that have been made to wind power generating plants during the last two decades. Training Objectives Evaluation of a Potential Location for a Wind Power Plant Using Wind Data: Learn how to evaluate the potential location for a wind turbine power plant using wind data. Using Statistical 'Rayleigh' Distribution to Approximate Available Power Generation from a Wind Turbine at a Specific Site: Learn how to use statistical 'Rayleigh' distribution to approximate available power generation from a wind turbine at a specific site. Calculate the Wind Energy Available at a Site: Gain an understanding on how to calculate the wind energy available at a site. Rated Capacity of a Wind Facility and Capacity Factor: Understand how to determine the rated capacity of a wind facility and its capacity factor. Designing a Wind Power Generating Plant: Learn how to design a wind power generating plant. Wind Power Plant Equipment Operation and Maintenance: Understand the operation and maintenance requirements for all wind power plant equipment including wind turbines, generators, nacelles, towers, transformers, etc. Wind Power Plant Instrumentation and Control Systems: Gain a thorough understanding about the latest instrumentation and control systems of wind power plants. Economics of Wind Power Plants: Gain a thorough understanding of the economics of wind power plants including economic analysis of wind power generation, economic comparison between a large- and small-scale wind power plant, comparison of alternatives, rate of return from a wind power plant, financial statements for a wind power plant, cost of electricity from a wind power plant, and levelized cost of wind energy. Target Audience Engineers of all disciplines Managers Technicians Maintenance personnel Other technical individuals Training Methods Your specialist course leader relies on a highly interactive training method to enhance the learning process. This method ensures that all participants gain a complete understanding of all topics covered. The training environment is highly stimulating, challenging, and effective because the participants will learn by case studies which will allow them to apply the material taught to their own organization. Each delegate will receive a soft copy of the following materials written by the instructor: POWER GENERATION HANDBOOK' second edition, published by McGraw-Hill in 2012 (800 pages) Wind Power Generating Plant Manual (500 pages) POST TRAINING COACHING SUPPORT (OPTIONAL) To further optimise your learning experience from our courses, we also offer individualized 'One to One' coaching support for 2 hours post training. We can help improve your competence in your chosen area of interest, based on your learning needs and available hours. This is a great opportunity to improve your capability and confidence in a particular area of expertise. It will be delivered over a secure video conference call by one of our senior trainers. They will work with you to create a tailor-made coaching program that will help you achieve your goals faster. Request for further information post training support and fees applicable Accreditions And Affliations
About this Virtual Instructor Led Training (VILT) Electrification of the transportation sector will impact the power system in several ways. Besides the additional load, local impact on the grid needs to be managed by the grid operators. Simultaneously charging of many electric vehicles (EVs) might exceed the limits in specific locations. On the other hand, EVs can provide flexibility and other ancillary services that will help grid operators. This 3 half-day VILT course will provide a complete overview of integrating electric vehicles (EVs) into the power grid. It will cover the whole value chain from grid operations to the car battery. This includes the control room, possible grid reinforcement, demand side management and power electronics. This course will demonstrate the impact on the grid and solutions for a safe & cost-effective grid plan and operation, with examples of successful integration of EVs. The course will also provide vital knowledge about technology used for EVs such as power electronics, demand side management, communication and batteries. In this context, the focus will be on power electronics as it has the highest impact on the grid. The grid planning tool, pandapower, is introduced as an open source tool for power system modelling. The set-up of the training course allows for discussion and questions. Questions can be formulated by the participants upfront or during the training. This course is delivered in partnership with Fraunhofer IEE. Training Objectives At the end of this course, the participants will: Understand the charging options for EVs and its impact on the grid and batteries Identify system services for EVs with regards to voltage quality at the point of common coupling Discover what are the 'grid friendly' and grid supporting functions in EVs Uncover the different applications, standards and data researched on EVs Examine the application of a grid planning tool (pandapower) for power system modelling Be able to develop code snippets with pandapower Apply and execute a code example for power system modelling with pandapower Target Audience EV and grid project developers and administrators Power grid operators and planners EPC organisations involved in grid development EV/ battery manufacturers and designers EV transport planners and designers Government regulators and policy makers Training Methods The VILT will be delivered online in 3 half-day sessions comprising 4 hours per day, with 2 x 10 minutes breaks per day, including time for lectures, discussion, quizzes and short interactive exercises. Additionally, some self-study will be requested. Participants are invited but not obliged to bring a short presentation (10 mins max) on a practical problem they encountered in their work. This will then be explained and discussed during the VILT. A short test or quiz will be held at the end of every session/day. Trainer Our first course expert is Head of Department Converters and Electrical Drive Systems at Fraunhofer IEE and Professor for Electromobility and Electrical Infrastructure at Bonn-Rhein-Sieg University of Applied Sciences. He received his engineering degree in automation in 2008 by the THM Technische Hochschule Mittelhessen (FH Giessen-Friedberg). Afterwards he studied power engineering at University of Kassel and received his diploma certificate in 2010. In 2016 he received the Ph.D. (Dr.-Ing.) from the University of Hannover. The title of his dissertation is Optimized multifunctional bi-directional charger for electric vehicles. He has been a researcher at the Fraunhofer IEE in Kassel since 2010 and deals with power converters for electric vehicles, photovoltaics and wind energy. His current research interests include the bidirectional inductive power transfer, battery charger and inverter as well as new power electronic components such as SiC MOSFETs and chokes. Additionally, our key expert is Chairman of the IEEE Joint IAS/PELS/IES German Chapter and a member of the International Scientific Committee of the EPE Association. Our second course expert is deputy head of energy storage department at Fraunhofer IEE. Prior to this he was the Director of Grid Integration department at SMA Solar Technology AG, one of the world's largest manufacturers of PV power converters. Before joining SMA, our course expert was manager of the Front Office System Planning at Amprion GmbH (formerly RWE TSO), one of the four German transmission system operators. He holds a degree of electrical engineering of the University of Kassel, Germany. In 2003 he finished his Ph.D. (Dr.-Ing.) on the topic of wind power forecasting at the 'Institute of Solar Energy Supply Technology' (now Fraunhofer IEE) in Kassel. In 2004 he started his career at RWE TSO with main focus on wind power integration and congestion management. Our course expert is chairman of the IEC SC 8A 'Grid Integration of Large-capacity Renewable Energy (RE) Generation' and has published several papers about grid integration of renewable energy source and forecasting systems on books, magazines, international conferences and workshops. Our third course expert is Research Associate at Fraunhofer IEE. He is actively working on different projects related to the integration of electric vehicle charging into the electric distribution grid. The focus of this work concerns time series based simulations for grid planning and operation in order to investigate the effect of a future rollout of electric vehicles and charging infrastructure on economics e.g. costs for grid reinforcement. He completed his master degree (MSc.) in Business Administration and Engineering: Electrical Power Engineering at RWTH Aachen University, Germany. Our trainers are experts from Fraunhofer Institute for Energy Economics and Energy System Technology (Fraunhofer, IEE), Germany. The Fraunhofer IEE researches for the national and international transformation of energy supply systems 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
In today’s world, where the need for sustainable energy solutions is more pressing than ever, learning about renewable energy isn’t just educational—it’s a pathway to making a real difference. By diving into our Advanced Diploma in Renewable Energy course, you’re not just gaining knowledge; you’re stepping into a role that could shape a more sustainable and bright future. Our course covers all the crucial aspects of renewable energy, from understanding how it can be harnessed locally and globally, to mastering the industry techniques to evaluate renewable resources. With engaging and carefully curated modules, you’ll explore various renewable energy forms, delving into their financial and environmental benefits. But it doesn’t stop there. You’ll also learn how to install, operate, and maintain these renewable energy systems thoroughly. Upon successful completion, you’ll leave with a wealth of knowledge to emerge as a confident renewable energy expert ready to apply your skills to foster positive changes in the world. Join us, and become a catalyst for change, using your skills to light the way towards a more sustainable world. Enrol NOW!!! Learning Outcomes Explain the core principles and technologies behind various renewable energy sources Analyse the environmental and economic benefits Evaluate the feasibility and sustainability of renewable energy projects in different contexts. Comprehend current and emerging regulations and standards Why choose this course Affordable, Accessible, informative and well-structured study materials Earn a globally recognised accredited qualification Study in your own time, at your own pace, through any device Benefit from feedback through mock exams and multiple-choice assessments Excellent career advancement/career switch opportunities Get 24/7 help or advice from our email and live chat teams Who is this course for New graduates from disciplines such as engineering, environmental science, or related fields who want to specialise in renewable energy to enhance their employability Workers currently in the energy sector or related fields aiming to update their skills and knowledge Individuals involved in policy, advocacy, or community leadership who need a deeper understanding of renewable energy Environmental Enthusiasts who are passionate about environmental conservation DIY Enthusiasts interested in learning about renewable energy systems for personal projects Entry requirements This course is available to learners of all academic backgrounds, but you must be 16 or above to undertake the qualification. Apart from that, all you need is an internet connection, a good understanding of English and a passion for learning. Certification Endorsed Certificate of Achievement from the Quality Licence Scheme Once the course has been completed and the assessment has been passed, all students are entitled to receive an endorsed certificate. This will provide proof that you have completed your training objectives, and each endorsed certificate can be ordered and delivered to your address for only £99. Please note that overseas students may be charged an additional £10 for postage. CPD Certificate of Achievement from Janets Upon successful completion of the course, you will be able to obtain your course completion e-certificate free of cost. Print copy by post is also available at an additional cost of £9.99 and PDF Certificate at £4.99. Career path Energy engineer Wind turbine technician Commercial energy assessor Domestic energy assessor Geoscientist Renewable Energy Engineer Sustainability Consultant Energy Analyst Environmental Policy Maker Renewable Energy Educator Course Content Module 01: An Introduction to Sustainable Energy Module 02: Solar Energy: Thermal Module 03: Solar Energy: Photovoltaics Module 04: Wind Energy Module 05: Bioenergy Module 06: Geothermal Energy Module 07: Tidal Energy Module 08: Environmental Impacts: A Global and Regional Assessment Module 09: Renewable Energy and Sustainable Development Module 10: The Future of Renewable Energy in the UK into the 2020s and Beyond
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