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A state-of-the-art review and feasibility analysis of high altitude wind power in Northern Ireland

机译:北爱尔兰高空风力发电的最新综述和可行性分析

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In many countries wind energy has become an indispensable part of the electricity generation mix. The opportunity for ground based wind turbine systems are becoming more and more constrained due to limitations on turbine hub heights, blade lengths and location restrictions linked to environmental and permitting issues including special areas of conservation and social acceptance due to the visual and noise impacts. In the last decade there have been numerous proposals to harness high altitude winds, such as tethered kites, airfoils and dirigible based rotors. These technologies are designed to operate above the neutral atmospheric boundary layer of 1300 m, which are subject to more powerful and persistent winds thus generating much higher electricity capacities. This paper presents an in-depth review of the state-of-the-art of high altitude wind power, evaluates the technical and economic viability of deploying high altitude wind power as a resource in Northern Ireland and identifies the optimal locations through considering wind data and geographical constraints. The key findings show that the total viable area over Northern Ireland for high altitude wind harnessing devices is 5109.6 km(2), with an average wind power density of 1998 W/m(2) over a 20-year span, at a fixed altitude of 3000 m. An initial budget for a 2 MW pumping kite device indicated a total cost 1,751,402 pound thus proving to be economically viable with other conventional wind-harnessing devices. (C) 2016 The Authors. Published by Elsevier Ltd.
机译:在许多国家,风能已成为发电结构中不可或缺的一部分。由于涡轮轮毂高度,叶片长度以及与环境相关的位置限制的局限性,基于地面的风力涡轮机系统的机会正变得越来越受限制,并且由于视觉和噪声的影响而导致了一些特殊问题,包括特殊的保护和社会认可。在过去的十年中,已经提出了许多利用高空风的提议,例如束缚的风筝,机翼和可飞旋的转子。这些技术被设计为在1300 m的中性大气边界层之上运行,这些边界层承受着更强劲和持久的风,从而产生更高的电容量。本文对高空风力发电的最新技术进行了深入的综述,评估了在北爱尔兰部署高空风力发电作为资源的技术和经济可行性,并通过考虑风力数据确定了最佳位置和地理限制。关键发现表明,在固定高度上,北爱尔兰高海拔风车装置的总可行面积为5109.6 km(2),在20年的时间里平均风能密度为1998 W / m(2)。 3000米2 MW抽风筝装置的初始预算表明总成本为1,751,402磅,因此证明在其他常规风具装置上具有经济可行性。 (C)2016作者。由Elsevier Ltd.发布

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