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Thermoeconomic Analysis of a One-Pressure Level Heat Recovery Steam Generator Considering Real Steam Turbine Cost

机译:考虑真正汽轮机成本的一次压力水平热回收蒸汽发生器的热经济分析

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Nowadays, gradual depletion of fossil fuels associated with emissions constraints due to greenhouse gases, leads to reuse wasted heat from power plant in order to increase the global efficiency. One of the implemented technologies for improvements is the application of combined cycles. In this scenario, the steam cycle is frequently combined with a Brayton cycle and the power plant performances and costs are competitive in the global market. Often, an energetic engineering company defines and studies the performance of the bottom steam cycle, thus it imposes operational conditions of steam turbine and heat recovery boiler and requires these components are built by two different manufacturers. For this reason, the plant cannot be globally optimized. From a steam turbines manufacturer point of view, the integration between proprietary simulation code and an energy balance code is an opportunity to simulate a complete bottom-cycle in order to define the best plant configuration. In the present paper, aone-pressure level heat recovery steam generator is studied in term of thermodynamic performance and cost analysis. The thermodynamic analysis is realized using a fixed steam turbine isentropic efficiency (as an energetic engineering company can do) and using anisentropic efficiency determined from steam turbine industrial tool, so a different best performance can be determined. Moreover, a comparison between two academic steam turbine cost correlations and steam turbine cost suggested by industrial cost is carried out.
机译:如今,随着由于温室气体的排放量限制相关的化石燃料,引线的逐渐消耗重用浪费从发电厂的热,以便提高全球效率。一个实施的技术改进的是联合循环的应用。在这种情况下,蒸汽循环经常与布雷顿循环相结合和电厂的性能和成本是在全球市场的竞争力。通常,底部蒸汽循环的高能工程公司定义和研究的性能,因而它规定蒸汽轮机和热回收锅炉的操作条件和要求,这些组件由两个不同的制造商制造的。为此,该厂无法进行全局优化。从一个蒸汽涡轮机制造商点之间专有的模拟代码和能量平衡的代码集成,以确定最佳的植物配置,以模拟一个完整的底部周期的机会。在本文件中,AONE压级热回收蒸汽发生器中的热力学性能和成本分析术语研究。热力学分析使用固定蒸汽涡轮等熵效率(如高能工程公司可以做),并使用从蒸汽涡轮机的工业工具确定anisentropic效率实现的,所以不同的最佳性能可被确定。此外,通过工业成本提出了两个学术汽轮机成本相关性和蒸汽涡轮机的成本之间的比较被执行。

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