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Exergy and Exergoeconomic Model of a Ground-Based CAES Plant for Peak-Load Energy Production

机译:峰值负荷能量生产的地面CAES工厂的(火用)和(用能)经济模型

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Compressed Air Energy Storage is recognized as a promising technology for applying energy storage to grids which are more and more challenged by the increasing contribution of renewable such as solar or wind energy. The paper proposes a medium-size ground-based CAES system, based on pressurized vessels and on a multiple-stage arrangement of compression and expansion machinery; the system includes recovery of heat from the intercoolers, and its storage as sensible heat in two separate (hot/cold) water reservoirs, and regenerative reheat of the expansions. The CAES plant parameters were adapted to the requirements of existing equipment (compressors, expanders and heat exchangers). A complete exergy analysis of the plant was performed. Most component cost data were procured from the market, asking specific quotations to the industrial providers. It is thus possible to calculate the final cost of the electricity unit (kWh) produced under peak-load mode, and to identify the relative contribution between the two relevant groups of capital and component inefficiencies costs.
机译:压缩空气储能被公认为是一种将储能应用到电网的有前途的技术,随着越来越多的可再生能源(例如太阳能或风能)的应用,挑战越来越大。本文提出了一种基于中型地面的CAES系统,该系统基于压力容器和压缩和膨胀机械的多级布置。该系统包括从中间冷却器中回收热量,并将其作为显热存储在两个单独的(冷/热)水容器中,并对膨胀进行再生再热。 CAES工厂的参数已适应现有设备(压缩机,膨胀机和热交换器)的要求。对植物进行了完整的火用分析。大部分零件成本数据是从市场上获得的,要求具体报价给工业供应商。因此,有可能计算出在峰值负载模式下生产的电力单位的最终成本(kWh),并确定两组相关的资本和组件效率低下成本之间的相对贡献。

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