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Oxy-fired fluidized bed combustors with a flexible power output using circulating solids for thermal energy storage

机译:氧气燃烧流化床燃烧器,具有灵活的功率输出,使用循环固体进行热能存储

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摘要

This paper presents a power plant concept based on an oxy-fired circulating fluidized bed combustor (oxy-CFBC) combined with thermal energy storage on a large scale. The concept exploits to full advantage the large circulation flows of high temperature solids that are characteristic of these systems. Two solid storage silos (one for high temperature and the other for low temperature solids) connected to the oxy-fired CFBC allow variability in power output without the need to modify the fuel firing rate and/or the mass flow of O2 to the combustor. During the periods of high power demand the system can deliver additional thermal power by extracting heat from a series of fluidized bed heat exchangers fed with solids from the high temperature silo. Likewise, during period of low power demand, the thermal power output can be reduced by using the energy released in the combustor to heat up the low temperature solids on their way from the low temperature silo to the oxy-CFBC and storing them in the high temperature silo located below the cyclone. A preliminary economic analysis of two designs indicates that this highly flexible system could make this type of power plant more competitive in the electricity markets where fossil fuels with CCS will be required to respond to a large variability in power output.
机译:本文提出了一种基于氧燃烧循环流化床燃烧器(oxy-CFBC)与大规模热能存储相结合的发电厂概念。该概念充分利用了这些系统所特有的高温固体大循环流量。连接到氧燃烧CFBC的两个固体存储料仓(一个用于高温固体,另一个用于低温固体)允许功率输出可变,而无需修改燃料燃烧速率和/或通向燃烧室的O2的质量流量。在高功率需求期间,系统可以通过从一系列流化床换热器提取热量来提供额外的热能,该换热器中装有来自高温料仓的固体。同样,在低功率需求期间,通过使用燃烧室中释放的能量来加热从低温筒仓到氧气CFBC的低温固体并将它们存储在高温下,可以减少热能输出。位于气旋下方的温度筒仓。对两种设计的初步经济分析表明,这种高度灵活的系统可以使这种类型的发电厂在电力市场上更具竞争力,在电力市场中,需要CCS的化石燃料来应对发电量的巨大变化。

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