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Africa-EU Renewable Energy Research and Innovation Symposium 2018 (RERIS 2018)

Africa-EU Renewable Energy Research and Innovation Symposium 2018 (RERIS 2018)
Author: Moeketsi Mpholo
Publisher: Springer
Total Pages: 157
Release: 2018-07-20
Genre: Technology & Engineering
ISBN: 3319934384

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This open access book presents the proceedings of the 2nd Africa-EU Renewable Energy Research and Innovation Symposium (RERIS 18), held in Maseru, Lesotho in January 2018. The symposium aimed to foster research cooperation on renewable energy between Africa and Europe – in academia, as well as the private and public sectors. Addressing thematic areas such as • Grid-connected renewable energy; • Decentralised renewable and household energy solutions; • Energy socioeconomics; and • Promotion of energy research, innovation, education and entrepreneurship, the book brings together contributions from academics and practitioners from the EU and Africa to enable mutual learning and knowledge transfer – a key factor in boosting sustainable development in the African renewable energy market. It also plays a significant role in promoting African renewable energy research, which helps to secure energy supply in both rural and urban areas and to increase generation capacities and energy system resilience. This book is an invaluable resource for academics and professionals across the renewable energy spectrum.


Grid-Connected Photovoltaic Power Generation

Grid-Connected Photovoltaic Power Generation
Author: Peter Gevorkian
Publisher: Cambridge University Press
Total Pages: 389
Release: 2017-03-21
Genre: Science
ISBN: 1316857824

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Covering technical design and construction aspects as well as financial analysis and risk assessment, this professional reference work provides a comprehensive overview of solar power technology. Whether or not you have a technology background, this essential guide will help you to understand the design, construction, financial analysis, and risk assessment of solar power technology. The first two chapters present an uncomplicated overview of solar power technology physics, solar cell technology, applications, and equipment. In subsequent chapters, readers are introduced to fundamental econometric analysis in such a way that will allow anyone, whether or not they have a background in finance, to become familiar with the fundamental costing and financing of large scale solar power programs. This book is essential reading for anyone involved with solar power project development, and is suitable for both graduate students and professionals.


Step-by-Step Design of Large-Scale Photovoltaic Power Plants

Step-by-Step Design of Large-Scale Photovoltaic Power Plants
Author: Davood Naghaviha
Publisher: John Wiley & Sons
Total Pages: 238
Release: 2022-01-12
Genre: Science
ISBN: 1119736587

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How to design a solar power plant, from start to finish In Step-by-Step Design of Large-Scale Photovoltaic Power Plants, a team of distinguished engineers delivers a comprehensive reference on PV power plants—and their design—for specialists, experts, and academics. Written in three parts, the book covers the detailed theoretical knowledge required to properly design a PV power plant. It goes on to explore the step-by-step requirements for creating a real-world PV power plant, including parts and components design, mathematical formulations and calculations, analyses, evaluations, and planning. The book concludes with a discussion of a sample solar plant design, as well as tips on how to avoid common design mistakes, and how to handle the operation and maintenance of PV power plants. Step-by-Step Design of Large-Scale Photovoltaic Power Plants also includes: Thorough introductions to the basic requirements of design, economic analyses, and investment revenue Comprehensive explorations of the requirements for feasibility study and grid connection study Introducing solar resource, and determining optimum tilt angle and module inter-row spacing Presenting methodology for design of large-scale PV plant, requirements of engineering document, and optimal design algorithm In-depth examinations for selecting PV module, inverter, string, and DC side equipment Practical discussions of system losses, as well as estimation of yearly electrical energy production, capacity factor, and performance ratio of large-scale PV plant Perfect for professionals in the solar power industry, Step-by-Step Design of Large-Scale Photovoltaic Power Plants will also earn a place in the libraries of equipment manufacturers and university professors seeking a one-stop resource for the design of PV power plants.


Solar Power Plant Pre-feasibility Study

Solar Power Plant Pre-feasibility Study
Author: Parsons Brinckerhoff Australia
Publisher:
Total Pages:
Release: 2008
Genre: Electric power systems
ISBN:

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This study identifies a 22 MW project that uses solar thermal trough technology, similar to new overseas plants, as the best option for the ACT. This technology has been chosen because of its substantial operational record (more than 20 years), lower cost compared to other solar technologies, and use in new commercial plants in the USA and Europe. The plant will produce enough electricity for approximately 10,000 Canberra homes and the project cost, before government assistance, is estimated at $141 million (including land and infrastructure). A site of 120 ha will be required and if engineering, planning and environmental work commenced immediately, it is envisaged that a plant could be commissioned by 2012.


Feasibility Study for Setting Up of a Solar PV Power Plant in Dehradun, India

Feasibility Study for Setting Up of a Solar PV Power Plant in Dehradun, India
Author: Pankaj Chauhan
Publisher:
Total Pages: 42
Release: 2015
Genre:
ISBN:

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Because of the daily growing demand for energy we have to find the more and new alternatives of energy to satisfy the demand. One of the most common sources of energy now a day is solar and its production over other energy sources rising globally. Currently 31% of energy demand is satisfied by solar energy in India and totally it contributes approximate 22% of energy that India totally produced domestically. In India government-funded and subsidized solar electricity production is not less than approximately 6.4 MW per year as of 2005 which is comparatively more with respect to other developing countries. India is ranked number one in terms of solar electricity production per watt installed, with an insolation of 1,700 to 1,900 kilowatt hours per kilowatt peak (kWh/KWP). Recently almost 25.1 MW was added in 2010 and 468.3 MW in 2011 in the form of solar energy across India. As on 30 June 2015, the installed grid connected solar power capacity is 4,060.65 MW which supports domestic distribution of solar energy and India expects to install an additional 10,000 MW by 2017 and a total of 100,000 MW by 2022. In this report researcher collected and analyzed all the information and data required for setting up of a solar power plant.