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Performance of a SUNDISC cycle CSP plant for off-grid baseload applications in Chile

机译:Sundisc循环CSP工厂在智利中为外网基础应用的性能

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The dual-receiver SUNDISC cycle has previously been shown to generate electricity at a lower levelized cost and more reliably than combined cycle CSP plants without the low-pressure receiver. The utilization of such a plant as the provider of baseload power to an off-grid consumer, for example a mine, in northern Chile is investigated. The chosen location in the Atacama desert has high solar radiation and reasonably low ambient temperatures, however, the high altitude causes a severe decrease in Brayton cycle power output. The plant is simulated to provide an almost constant power output throughout the year from the two power cycles. Plant configurations with practically no fuel co-firing reach the lowest levelized cost of electricity, 0.14 USD/(kW_e h) based on a conservative cost model, at less than 800 h annual time of no power generation. If fuel-based operation is allowed during some of these hours, the plant operates throughout the 8760 h per year and generates electricity at less than 0.15 USD/(kW_e h) with co-firing rates of less than 8 %. All these cost figures are significantly lower than for an alternative baseload off-grid solution based on Diesel generators.
机译:先前已经示出了双接收器Sundisc循环,以便在没有低压接收器的组合循环CSP设备的情况下以较低的级别成本和更可靠地产生电力。研究了这种植物作为基于智利北部的离网消费者的基准电力的提供者,例如矿井。 Atacama沙漠中的所选位置具有高的太阳辐射和相当低的环境温度,然而,高空导致布雷顿循环功率输出的严重降低。植物被模拟,以在两个电源循环中全年提供几乎恒定的功率输出。植物配置实际上没有燃料共同达到最低级别的电力成本,0.14美元/(kW_eh)基于保守成本模型,不到800 H无发电的年度。如果在这些时间中的一些时间允许基于燃料的操作,则该工厂每年8760小时运行,并以低于0.15美元/(KW_EH)的电力,共用率小于8%。所有这些成本数字都比柴油发电机基于柴油发电机的替代地基进出电网解决方案。

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