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Methodology for the economic evaluation of gas turbine air cooling systems in combined cycle applications

机译:在联合循环应用中对燃气轮机空气冷却系统进行经济评估的方法

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摘要

During the last decades, gas turbines (GT) have been widely used to produce electricity power. Despite their numerous applications, one of the most important shortcomings affecting GT behaviour is their power output decrease at higher air ambient temperatures. This problem is frequently solved by installing air cooling systems at GT inlet as a proper alternative in order to stabilise GT power output. Although maximising power output has been usually considered as the main objective of the cooling system, economical profits should also be considered, replacing the usual power increase as the main strategy to select the most suitable temperature. Moreover, especially when electricity markets tend to a deregulated scenario and its prices are settled by a pool system. Hence, an accurate methodology needs to be developed to analyse and compare the different alternatives, including the time-dependent variables involved in the technical and economical system behaviour. These variables include: ambient temperature, relative humidity, hourly electricity prices and natural gas tariff. The proposed methodology takes into account the performance simulation at the combined cycle, the air cooling system, ambient conditions, equipment maintenance and investment, and electricity and natural gas prices, in order to obtain cash flows and another relevant economical variables that maximise the profit of the integrated system. In this paper, this method has been applied as an example to a three-level-pressure combined cycle model with different GT inlet air cooling systems in a certain location and economical framework. The proposed method allows a better results interpretation, showing that some cooling systems, appearing as a proper alternative from a historical point of view, are not necessarily the most profitable option. Consequently, the proposed methodology for the economic evaluation of the. cooling systems offers more straightforward information that allows the cooling equipment technology to be sized or selected.
机译:在过去的几十年中,燃气轮机(GT)已被广泛用于发电。尽管应用广泛,但影响GT行为的最重要缺点之一是在较高的空气环境温度下其功率输出会降低。为了稳定GT的功率输出,通常通过在GT的进气口安装空气冷却系统来解决该问题,作为适当的选择。尽管通常将最大功率输出作为冷却系统的主要目标,但也应考虑经济利益,以取代通常的功率增加作为选择最合适温度的主要策略。此外,尤其是在电力市场趋于放松管制的情况下,并且其价格由集中制结算的情况下。因此,需要开发一种准确的方法来分析和比较不同的选择,包括技术和经济系统行为中涉及的随时间变化的变量。这些变量包括:环境温度,相对湿度,每小时电价和天然气电价。所提出的方法考虑了联合循环中的性能模拟,空气冷却系统,环境条件,设备维护和投资以及电和天然气价格,以便获得现金流量和其他相关经济变量,从而最大程度地提高企业的利润。集成系统。在本文中,该方法已作为实例应用于在一定位置和经济框架下具有不同GT进气系统的三级压力联合循环模型。所提出的方法可以更好地解释结果,表明从历史角度看,某些冷却系统似乎是适当的替代方案,不一定是最有利可图的选择。因此,提出了经济评价的方法论。冷却系统提供了更直接的信息,可以确定冷却设备技术的大小或进行选择。

著录项

  • 来源
    《Energy》 |2004年第11期|p.1805-1818|共14页
  • 作者单位

    CIRCE (Center for Power Plant Efficiency Research), University of Zaragoza, Centra Politecnico Superior, Maria de Luna, 3, 50015 Zaragoza, Spain;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 能源与动力工程;
  • 关键词

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