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Floating Offshore Wind Farms (Green Energy and Technology) de Laura Castro-Santos,Vicente Diaz-Casas

Descripción - Críticas “This new book … explores the safe and economical extension of this technology far into the ocean, which is believed to be a major source of renewable energy. … a number of valuable references are presented for those who may require further, relevant material on the subject. This title is an excellent reference for research on wind power and a valuable tool for a course on renewable energy. Summing Up: Recommended. Upper-division undergraduates through professionals and practitioners.” (J. Tavakoli, Choice, Vol. 54 (2), October, 2016) Reseña del editor This book provides an overview of floating offshore wind farms and focuses on the economic aspects of this renewable-energy technology. It presents economic maps demonstrating the main costs, and explores various important aspects of floating offshore wind farms. It examines topics including offshore wind turbines, floating offshore wind platforms, mooring and anchoring, as well as offshore electrical systems. It is a particularly useful resource in light of the fact that most water masses are deep and therefore not suitable for fixed offshore wind farms. A valuable reference work for students and researchers interested in naval and ocean engineering and economics, this book provides a new perspective on floating offshore wind farms, and makes a useful contribution to the existing literature. Contraportada This book provides an overview of floating offshore wind farms and focuses on the economic aspects of this renewable-energy technology. It presents economic maps demonstrating the main costs, and explores various important aspects of floating offshore wind farms. It examines topics including offshore wind turbines, floating offshore wind platforms, mooring and anchoring, as well as offshore electrical systems. It is a particularly useful resource in light of the fact that most water masses are deep and therefore not suitable for fixed offshore wind farms. A valuable reference work for students and researchers interested in naval and ocean engineering and economics, this book provides a new perspective on floating offshore wind farms, and makes a useful contribution to the existing literature. Biografía del autor Laura Castro-Santos obtained the title of Industrial Engineering (Energy) in 2009 and her PhD in Industrial Engineering at the Naval and Oceanic Engineering Department in 2013 from the University of A Coruña, where she is currently working as Lecturer in the Department of Naval and Oceanic Engineering. Her current research activities are focused on technical and economic analysis of offshore energy, particularly the floating offshore wind energy. She has collaborated on several research projects focused on mooring and anchoring of offshore renewable energy devices and on the development of the roadmap of the offshore renewable energies in Portugal. She has participated in several international research exchanges: National Energy Laboratory (LNEG), and Centro de Engenharia e Tecnologia Naval (CENTEC) of the University of Lisbon, both in Lisbon (Portugal). She has assisted to a great quantity of teaching and offshore renewable energy courses and international conferences. She has won the research prize “González-Llanos” of naval engineering. Vicente Diaz-Casas is currently an Associate Professor in the Department of Naval and Oceanic Engineering of the University of A Coruña (Spain). His academic and research activities have been strongly linked to the Engineering School of the University of A Coruña (Spain). He received his Master in Naval Architecture and Marine and Offshore Engineering from that university and his Ph.D in Mathematical Methods and Numerical Simulation in Engineering and Applied Sciences through an interuniversity program of University of Santiago de Compostela, University of Vigo and University of A Coruña. He has participated in several international and national research exchanges: Center for Advanced Studies, Research and Development in Sardinia (Sardinia, Italy), University of Auckland (Auckland, New Zealand), Instituto Superior Tecnico, (Lisbon, Portugal), Polytechnic University of Madrid (Madrid, Spain) and CEHIPAR, Towing tank and ship hydrodynamics laboratory of the Spanish Government (Madrid, Spain). He has worked closely with industry; in fact he is currently the coordinator the Naval Architecture division of the Research Group. He has participated in a high number of multidisciplinary and border line research projects. In his research he has combined different approaches and knowledge areas with topics such as artificial intelligent (artificial neural networks and evolutionary computation), computational fluid dynamics, mechanical design and control systems. However his main research topics are ship design and floating structures simulation. Right now his research is focused on simulation and design of floating platform for offshore wind turbines.

Detalles del Libro

  • Name: Floating Offshore Wind Farms (Green Energy and Technology)
  • Autor: Laura Castro-Santos,Vicente Diaz-Casas
  • Categoria: Libros,Ciencias, tecnología y medicina,Tecnología e ingeniería
  • Tamaño del archivo: 15 MB
  • Tipos de archivo: PDF Document
  • Idioma: Español
  • Archivos de estado: AVAILABLE


Download Floating Offshore Wind Farms (Green Energy and Technology) de Laura Castro-Santos,Vicente Diaz-Casas PDF [ePub Mobi] Gratis

The Future of Offshore Wind - Floating Wind Farms / Energy ~ Floating Offshore Wind Foundations unlock new renewable energy potential. Average wind speeds are higher and more consistent further from shore and around 80% of Europe’s offshore wind resources is located in waters of more than 60 meter depth, where bottom-fixed offshore wind structures are not economically attractive.

Offshore Wind Energy Technology / Wiley Online Books ~ A COMPREHENSIVE REFERENCE TO THE MOST RECENT ADVANCEMENTS IN OFFSHORE WIND TECHNOLOGY. Offshore Wind Energy Technology offers a reference based on the research material developed by the acclaimed Norwegian Research Centre for Offshore Wind Technology (NOWITECH) and material developed by the expert authors over the last 20 years.This comprehensive text covers critical topics such as wind energy .

Offshore Wind Energy Technology / Wiley ~ A COMPREHENSIVE REFERENCE TO THE MOST RECENT ADVANCEMENTS IN OFFSHORE WIND TECHNOLOGY Offshore Wind Energy Technology offers a reference based on the research material developed by the acclaimed Norwegian Research Centre for Offshore Wind Technology (NOWITECH) and material developed by the expert authors over the last 20 years. This comprehensive text covers critical topics such as wind energy .

Offshore Wind Floating Wind Technology - S3 ~ offshore wind farms » Floating Wind has the potential to be a cost-effective, secure and safe low-carbon energy source which could deliver a levelised cost of energy of less than £85/MWh from the mid-2020s » To deliver improved costs, offshore wind needs access to good quality wind resource close enough to shore and the onshore grid system so

FLOATING OFFSHORE WIND ENERGY ~ Around 80% of the offshore wind resources is located in waters of more than 60 meter depth, where bottom-fixed offshore wind (BFOW) is not economically attractive. In addition, average wind speeds are higher and more consistent further from shore. This means floating offshore wind farms can produce more energy throughout the year and have high

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Floating offshore wind 2019: 7,000 GW - Power Technology ~ Floating offshore wind is a fast evolving technology with the potential for less foundation material, shortened installation cycle and decommissioning, and additional wind power generation at water depths exceeding 50 metres to 60 metres.

Floating Offshore Wind Vision Statement ~ 6 Floating Offshore Wind Vision Statement - June 2017 WindEurope 1.1 BENEFITS AND POTENTIAL FOW allows power generators to tap into areas with much higher wind speeds. At farther distances from the shore, the wind blows stronger and its flow is more consistent.

Proven technology advances floating wind energy - Offshore ~ Classified as a form of solar energy, wind is a clean and sustainable fuel source. But there are challenges associated with wind energy development, and many of those are compounded when the installations are offshore. Nearly 10 years ago, Principle Power took on the challenge of developing a floating foundation for offshore wind turbines.

Offshore Wind Power and Farms / GE Renewable Energy ~ Recognizing this offshore wind energy potential, GE has invested more than $400 million to develop the most powerful offshore wind turbine—an investment that will also drive down offshore wind farms’ levelized cost of energy (LCOE), helping make offshore wind energy more competitive for our customers.

Floating Offshore Wind Energy - The Next Generation of ~ This book provides a state-of-the-art review of floating offshore wind turbines (FOWT). It offers developers a global perspective on floating offshore wind energy conversion technology, documenting the key challenges and practical solutions that this new industry has found to date. Drawing on a

Offshore wind turbines foundations - Iberdrola ~ Offshore wind power projects are used to exploit the potential of wind in open seas, where wind blows stronger than on land. However, the installation of offshore wind farms is a complex task. The biggest problem lies in elevating wind turbines and substations above the sea level and anchoring them to the sea bed.

Floating offshore wind farms are the future of UK energy ~ Floating offshore wind farms are the future of UK energy, according to report 31st October 2019 Pippa Neill The world’s first floating offshore wind farm was installed off the coast of Scotland in 2017 and according to the report the UK is in a unique position to export floating wind farms in deep-sea waters across the world.

Offshore Wind Farm Technology / TU Delft Online ~ Offshore wind energy is a fast growing renewable energy technology that is built upon the expertise of several engineering disciplines. Engineers who work in wind farm design, operation and maintenance must understand the various disciplines involved in order to meet energy production and cost reductions goals.

Floating Offshore Wind Farms / Laura Castro-Santos / Springer ~ This book provides an overview of floating offshore wind farms and focuses on the economic aspects of this renewable-energy technology. It presents economic maps demonstrating the main costs, and explores various important aspects of floating offshore wind farms. It examines topics including

Green light for floating offshore wind farm - Ocean Energy ~ Green light for floating offshore wind farm. Thursday, March 16 2017. The Scottish government has given planning consent for one of the world’s largest floating offshore wind farms. The 50MW eight-turbine Kincardine Offshore Windfarm will be . Energy Minister Paul Wheelhouse said the technology had huge potential if it could be .

Is Floating Offshore Wind the Future of European Wind ~ The European Marine Energy Centre have received approval from the Sustainable Energy Authority of Ireland for a €31m floating wind scheme off the coast of Co. Mayo. The project, known as AFLOWT (Accelerating Market uptake of Floating Offshore Wind Technology), is hugely exciting not just for the technology but also because of the pan-European support and supply chain behind it.

Floating Offshore Wind Energy: The Next Generation of Wind ~ Floating Offshore Wind Energy: The Next Generation of Wind Energy (Green Energy and Technology) (English Edition) eBook: Cruz, Joao, Atcheson, Mairead: : Kindle-Shop

WIND ON THE WAVES: FLOATING WIND - Department of Energy ~ Other nations are also working on innovative floating offshore wind technology solutions. The first project to scale up—using multiple large (6-megawatt capacity) offshore wind turbines on floating foundations—is Hywind Scotland, which uses a spar buoy foundation design that has one large ballast-stabilized spar. France also has an R&D program with three demonstration projects in early .

Floating offshore wind - Green Giraffe ~ Green Giraffe, Norton Rose and Sgurr Energy organized a seminar on 19 April about floating offshore wind, where the status and commercialization prospects of this nascent sector were debated in front of a large audience including bankers, investors, contractors and industry advisors.

Wind energy in Spain: first offshore wind farm project ~ Wind energy in Spain: first offshore wind farm project May 31, 2019 reve Equinor will invest more than 860 million euros to install in the Canary Islands first large offshore wind power farm in Spain, a decision adopted after the Norwegian company has been authorized to settle in the Canary Islands Special Zone (ZEC).

Floating wind - Risk analysis towards bankability ~ crucial for the floating offshore wind sector to reach commercial utility scale • A key aspect of commercialisation of floating offshore wind is to ensure that investors and lenders understand the risks involved with this technology and obtain comfort that such risks can be managed A risk assessment case study to serve as a functional model

Floating Foundations: A Game Changer for Offshore Wind Power ~ Commercialisation of floating wind farms is anticipated between 2020 and 2025. . Floating offshore wind technology, even more than its fixed-bottom counterpart, faces two major, . rapidly enough for floating offshore wind to keep up with cost-of-energy reductions anticipated in other technologies.

Floating offshore wind farm: Green light for Hywind / windfair ~ Floating offshore wind farm: Green light for Hywind Offshore wind power has developed into a real success in the recent past. Especially in Europe with its shallow coastlines, more and more wind farms use the constant breeze on the ocean to produce clean energy.

Offshore Wind Energy, the new conventional green electricity ~ Where is the offshore wind energy heading to Future •Europe Offshore wind will provide a significant part of the electricity production. Europe will lead in term of installation and technology development driven by UK and Germany. Offshore will achieve cost competitiveness sooner than predicted if stable market size, favourable