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WARP: a modular wind power system for distributed electric utility application

机译:WARP:用于分布式电力应用的模块化风力发电系统

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摘要

Steady development of wind turbine technology, and the accumulation of wind farm operating experience, have resulted in the emergence of wind power as a potentially attractive source of electricity for utilities. Since wind turbines are inherently modular, with medium-sized units typically in the range of a few hundred kilowatts each, they lend themselves well to distributed generation service, A patented wind power technology, the Toroidal Accelerator Rotor Platform (TARP) Windframe, forms the basis for a proposed network-distributed, wind power plant combining electric generation and transmission known as WARP (Wind Amplified Rotor Platform). While heavily building on proven wind turbine technology, this system is projected to surpass traditional configuration windmills through a unique distribution/transmission combination, superior performance, user-friendly operation and maintenance, and high availability and reliability. Furthermore, its environmental benefits include little new land requirements, relatively attractive appearance, lower noise and EMI/TV interference, and reduced avian (bird) mortality potential. Its cost of energy is projected to be very competitive, in the range of from approximately 2c/kWh to 5c/kWh, depending on the wind resource.
机译:风力涡轮机技术的稳步发展以及风力发电场运行经验的积累,导致了风力发电的兴起,这对于公用事业来说是一种潜在的有吸引力的电力来源。由于风力涡轮机本身就是模块化的,每个中型机组的功率通常在几百千瓦的范围内,因此它们非常适合分布式发电服务,一种获得专利的风力发电技术,即环形加速器转子平台(TARP)风框架,构成了拟议的网络分布式风力发电厂的基础,该发电厂将发电和输电结合在一起,称为WARP(风放大转子平台)。该系统在充分利用成熟的风力涡轮机技术的基础上,预计将通过独特的分配/传输组合,卓越的性能,用户友好的操作和维护以及高可用性和可靠性来超越传统配置的风车。此外,它的环境效益包括对新土地的需求很少,外观相对吸引,噪声和EMI / TV干扰较低,禽类(鸟类)死亡率降低。预计其能源成本极具竞争力,取决于风力资源,其成本范围大约为2c / kWh至5c / kWh。

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