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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Advanced Exergoeconomic Analysis Applied to a Complex Energy Conversion System
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Advanced Exergoeconomic Analysis Applied to a Complex Energy Conversion System

机译:先进的能效经济分析应用于复杂的能源转换系统

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摘要

Exergy-based analyses are important tools for studying and evaluating energy conversion systems. Conventional exergy-based analyses provide us with important information on the design and operation of a system. However, further insight into the improvement potential of plant components and the overall plant, as well as into component interactions, is important when optimal operation is required. This necessity led to the development of advanced exergy-based analyses, in which the exergy destruction as well as the associated costs and environmental impacts are split into avoidable/unavoidable and endogenous! exogenous parts. Based on the avoidable exergy destruction, costs and environmental impacts potential and strategies for improvement are revealed. The objective of this paper is to demonstrate the application, the advantages, and the information obtained from an advanced exergoeconomic analysis by applying it to a complex plant, i.e., to a combined cycle power plant. The largest parts of the unavoidable cost rates are calculated for the components constituting the gas turbine system and the low-pressure steam turbine. The combustion chamber has the second highest avoidable investment cost and the highest avoidable cost of exergy destruction. In general, the investment cost of most of the components is unavoidable, with the exception of some heat exchangers. Similarly, most of the cost of exergy destruction is unavoidable, with the exception of the expander of the gas turbine system and the high-pressure and intermediate-pressure steam turbines. The advanced exergoeconomic analysis reveals high endogenous values, which suggest that improvement of the total plant can be achieved by improving the design of individual components, and lower exogenous values, which means that component interactions are in general of lower significance for this plant.
机译:基于火用的分析是研究和评估能量转换系统的重要工具。常规的基于火用的分析为我们提供了有关系统设计和操作的重要信息。但是,在需要最佳操作时,进一步了解工厂组件和整个工厂的改进潜力以及组件交互非常重要。这种必要性导致了基于火用的高级分析的发展,其中将火用的破坏以及相关的成本和环境影响分为可避免/不可避免和内生的!外生部分。基于可避免的火用破坏,揭示了成本和环境影响的潜力以及改进策略。本文的目的是通过将其应用于复杂的工厂(即联合循环发电厂),来演示其应用,优势以及从先进的人类经济分析中获得的信息。对于构成燃气轮机系统和低压蒸汽轮机的组件,计算了不可避免的成本率的最大部分。燃烧室具有第二高的可避免的投资成本和最高的可避免的火用破坏成本。通常,除某些热交换器外,大多数组件的投资成本是不可避免的。类似地,除了燃气轮机系统的膨胀机以及高压和中压蒸汽轮机之外,大部分的火用破坏成本都是不可避免的。先进的能效经济分析显示出较高的内生价值,这表明可以通过改善单个组件的设计来实现对整个植物的改善,而较低的外生价值则意味着组件之间的相互作用通常对该植物的重要性较低。

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