首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >Thermoeconomic analysis of a combined cycle and an IRSOFC plant and carbon exergy tax influence on advanced systems economic competitiveness
【24h】

Thermoeconomic analysis of a combined cycle and an IRSOFC plant and carbon exergy tax influence on advanced systems economic competitiveness

机译:综合循环和IRSOFC植物的热经济分析及碳排出税对先进系统的经济竞争力

获取原文

摘要

In the paper, a Thermoeconomic Analysis of two advanced energy systems, using different procedures for the electric power generation, has been performed. The first system is a three pressure level combined cycle of 335 MW, with an electricity production efficiency in the order of 54%. The second system is a model of advanced plant of 142 MW proposed by Massardo, composed by a pressurised Internal Reforming Solid Oxide Fuel Cell (IRSOFC) combined with a Gas Turbine; the plant can reach efficiencies at the order of 70% A preliminary exergy analysis has been performed, which has outlined the irreversibilities generation. Then, a Thermoeconomic Analysis, evaluating the unit exergetic cost and unit thermoeconomic costs of all the energy flows of the two plants has been done. The results in terms of unit thermoeconomic costs obtained have outlined that a typology of plant like the FCGT4 is not yet competitive in economic terms with the advanced combined cycle plants, even if it represents a new high-efficiency technology, and especially An effective method for the reduction of CO{sub}2 emissions. Therefore, the second aim of the paper is to utilise a procedure of evaluation of an economic penalty applied to the C02 emissions: the Carbon Exergy Tax (CET), based on the Second Law efficiency of the plant. It is discussed how the use of CET can contribute to the promotion and adoption of an advanced energy system such as the FCGT4 plant, reducing its economic gap with a standard technology represented by the combined cycle plant.
机译:本文采用了两个先进的能量系统的热经济分析,使用了使用不同程序的发电。第一系统是​​335兆瓦的三个压力水平综合循环,电力生产效率为54%。第二个系统是由Massardo提出的142 MW的先进植物模型,由加压内重整固体氧化物燃料电池(IRSOFC)与燃气轮机组成;该植物可以达到70%的效率,已经进行了初步声法分析,这已经概述了不可逆转的生成。然后,已经完成了热经济分析,评估了两种植物的所有能量流量的单位前进成本和单位热经济成本。所获得的单位热经济成本方面的结果概述了FCGT4等植物的类型,即使它代表了新的高效技术,尤其是一种有效的方法,即使是先进的联合循环植物也尚未竞争。减少CO {SUB} 2排放。因此,本文的第二个目的是利用适用于CO 2排放的经济罚款的评估程序:基于植物第二律效率的碳开采税(CET)。讨论了CET的使用如何促进和采用诸如FCGT4植物的先进能源系统,并通过组合循环厂代表的标准技术来降低其经济差距。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号