electrical drives for direct drive renewable energy systems

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Electrical Drives for Direct Drive Renewable Energy Systems
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Publisher : Woodhead Publishing Limited
Release Date :
ISBN 10 : 9781845697839
Pages : 264 pages
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Wind turbine gearboxes are one of the major reliability problems for wind energy operators and cause expensive maintenance and repair jobs when failures occur, particularly in offshore wind farms. Gearless direct drive wind energy systems present a potential solution to these problems, improving both reliability and energy conversion efficiency through simplified design. The editors and contributors present a comprehensive reference on the design and operation of direct drive wind energy systems along with applications to direct drive marine renewable energy systems. The initial sections cover the fundamental design issues related to direct drive renewable energy devices, and their interconnection into transmission networks and review the impact on design of performance testing, monitoring and characterization techniques. Final sections cover the construction, operation and maintenance issues of direct drive wind and marine energy systems installation and look to the future developments and opportunities for application of this technology.

Electrical Drives for Direct Drive Renewable Energy Systems

Wind turbine gearboxes are one of the major reliability problems for wind energy operators and cause expensive maintenance and repair jobs when failures occur, particularly in offshore wind farms. Gearless direct drive wind energy systems present a potential solution to these problems, improving both reliability and energy conversion efficiency through

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Electrical Drives for Direct Drive Renewable Energy Systems

Wind turbine gearboxes present major reliability issues, leading to great interest in the current development of gearless direct-drive wind energy systems. Offering high reliability, high efficiency and low maintenance, developments in these direct-drive systems point the way to the next generation of wind power, and Electrical drives for direct drive

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Developments in Renewable Energies Offshore

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Offshore Wind Farms

Offshore Wind Farms: Technologies, Design and Operation provides the latest information on offshore wind energy, one of Europe’s most promising and quickly maturing industries, and a potentially huge untapped renewable energy source which could contribute significantly towards EU 20-20-20 renewable energy generation targets. It has been estimated that

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Advances in Renewable Energies and Power Quality

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Sustainable Energy from Salinity Gradients

Salinity gradient energy, also known as blue energy and osmotic energy, is the energy obtainable from the difference in salt concentration between two feed solutions, typically sea water and river water. It is a large-scale renewable resource that can be harvested and converted to electricity. Efficient extraction of this energy

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Design of a superconducting DC wind generator

The trend towards larger power ratings of wind turbines asks for innovations in power generation, which requires lower weight and cost, smaller size, higher efficiency and reliability. Due to high current-carrying capability and no DC losses of superconductors, a superconducting wind generator can have a superior power to weight/volume

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Advances in Thermal Energy Storage Systems

Thermal energy storage (TES) technologies store thermal energy (both heat and cold) for later use as required, rather than at the time of production. They are therefore important counterparts to various intermittent renewable energy generation methods and also provide a way of valorising waste process heat and reducing the energy

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Renewable Heating and Cooling

Renewable Heating and Cooling: Technologies and Applications presents the latest information on the generation of heat for industry and domestic purposes, an area where a significant proportion of total energy is consumed. In Europe, this figure is estimated to be almost 50%, with the majority of heat generated by the consumption

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Organic Rankine Cycle  ORC  Power Systems

Organic Rankine Cycle (ORC) Power Systems: Technologies and Applications provides a systematic and detailed description of organic Rankine cycle technologies and the way they are increasingly of interest for cost-effective sustainable energy generation. Popular applications include cogeneration from biomass and electricity generation from geothermal reservoirs and concentrating solar power installations,

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Advanced Wind Turbine Technology

This book introduces the current challenges in modern wind turbine analysis, design and development, and provides a comprehensive examination of state-of-the-art technologies from both academia and industry. The twelve information-rich chapters cover a wide range of topics including reliability-based design, computational fluid dynamics, gearbox and bearing analyses, lightning analysis, structural

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Advanced District Heating and Cooling  DHC  Systems

Advanced District Heating and Cooling (DHC) Systems presents the latest information on the topic, providing valuable information on the distribution of centrally generated heat or cold energy to buildings, usually in the form of space heating, cooling, and hot water. As DHC systems are more efficient and less polluting than

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Advances in Ground Source Heat Pump Systems

Advances in Ground-Source Heat Pump Systems relates the latest information on source heat pumps (GSHPs), the types of heating and/or cooling systems that transfer heat from, or to, the ground, or, less commonly, a body of water. As one of the fastest growing renewable energy technologies, they are amongst

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The Performance of Photovoltaic  PV  Systems

The Performance of Photovoltaic (PV) Systems: Modelling, Measurement and Assessment explores the system lifetime of a PV system and the energy output of the system over that lifetime. The book concentrates on the prediction, measurement, and assessment of the performance of PV systems, allowing the reader to obtain a thorough

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