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Effect of heliostat design wind speed on the levelised cost of electricity from concentrating solar thermal power tower plants

机译:定日镜设计风速对太阳能热发电塔集中发电的平准化成本的影响

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This paper assesses the influence on the levelised cost of electricity (LCOE) of the design wind speed at which heliostats in concentrating solar thermal (CST) power tower (PT) plants are stowed. Lowering the design wind speed for parking heliostats in the stow position reduces the cost of the heliostat field at the expense of a reduction in the energy harvested. However, both influences are highly nonlinear and also vary from site to site, so that new understanding is needed to guide the optimisation of this parameter. The capacity factor and the power output for a PT plant without thermal storage are calculated for six locations by mapping hourly solar irradiance data to the Weibull probability distribution of mean wind speed. The cost of materials for the heliostat components and their sensitivity to heliostat size are estimated as a function of the design (stow) wind speed based on the specification of the structural design for quasi-static wind loads. The sensitivity of the LCOE to the design is assessed statistically. The results show that the materials cost of structural components in larger heliostats are most sensitive to the design wind speed, so that a 34% reduction in cost can be achieved by lowering the design wind speed from 15 m/s to 10 m/s. In contrast, the optimum design wind speed for smaller heliostats between 20 m(2) and 50 m(2) is typically above 10 m/s. The LCOE can be reduced by as much as 18% by lowering the design wind speed from the maximum recorded wind speeds at the three Australian sites. Hence there is significant economic benefit from optimising the minimum design at sites with high wind speeds. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文评估了将风能集中在太阳能热塔(PT)电厂中的定日镜对设计风速的平准化电价(LCOE)的影响。降低用于将定日镜停在收起位置的设计风速降低了定日镜场的成本,但以减少所收集的能量为代价。但是,这两种影响都是高度非线性的,并且因站点而异,因此需要新的理解以指导该参数的优化。通过将每小时太阳辐照度数据映射到平均风速的威布尔概率分布,可在六个位置计算不带蓄热的PT工厂的容量因子和功率输出。定日镜组件的材料成本及其对定日镜尺寸的敏感度是根据准静态风荷载的结构设计规范,根据设计(存放)风速估算的。统计评估LCOE对设计的敏感性。结果表明,大定日镜中结构部件的材料成本对设计风速最为敏感,因此,将设计风速从15 m / s降低到10 m / s可以使成本降低34%。相比之下,介于20 m(2)和50 m(2)之间的小型定日镜的最佳设计风速通常高于10 m / s。通过降低三个澳大利亚站点的最大记录风速来降低设计风速,可以将LCOE降低多达18%。因此,在高风速的场所优化最小设计具有巨大的经济利益。 (C)2015 Elsevier Ltd.保留所有权利。

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