Life Cycle Analysis of Steam and Gas Turbine CHP Plants

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引用次数: 1

Abstract

Introduction. When choosing the optimal heat and electric power generating technology, the most promising in terms of ensuring maximum credibility of obtained results is the method of assessing the environmental and economic efficiency of various objects, which implies the application of the studied object life cycle assessment method to be the initial main stage. The authors tackle the problem of assessing the life cycle of steam and gas turbine CHP plants for selecting the optimal heat and electric power generating technology. The aim of the study is to define the main stages and their corresponding specifications of steam and gas CHP plants’ life cycle as facilities generating heat and electric power within the structure of various purpose urban complexes.Materials and methods. The authors' research is based on the object life cycle assessment method as well as on the quality management system and the theory of selecting and evaluating the various objects’ environmental and economic efficiency. Results. Based on the research, it was found that: -CHP plants are of particular interest in terms of selecting the optimal cogeneration technology because many technological types of this energy are implemented there; - the life cycle assessment method may well be implemented at CHP plants; - the authors have taken a steam and gas turbine CHP plant as an object for the life cycle analysis because it has significant advantage over other similar technologies; - the life cycle of a steam and gas turbine CHP plant includes three main stages: construction (erecting, setting-up and commissioning), operation and disposal, which have the largest share in the overall life cycle; - the most significant processes have been identified for each of the distinguished life cycle stages of a steam and gas turbine CHP plant.Discussion and conclusion. The performed life cycle analysis led to the conclusion that the life cycle of a steam and gas turbine CHP plant, the one commonly used in real life and representing particular interest in terms of choosing the optimal technology, has three main stages occupying the largest share in the overall life cycle: construction, operation and disposal. Besides, the most significant processes were identified and described for each of the distinguished life cycle stages of a steam and gas turbine CHP plant.
蒸汽和燃气轮机热电联产电厂的生命周期分析
介绍。在选择最优的热电发电技术时,从保证所获得结果的最大可信度的角度来看,最有希望的是评估各种对象的环境和经济效率的方法,这意味着研究对象生命周期评估方法的应用将是最初的主要阶段。作者解决了蒸汽和燃气轮机热电联产电厂的生命周期评估问题,以选择最优的热电发电技术。本研究的目的是定义蒸汽和燃气热电联产电厂生命周期的主要阶段及其相应的规格,作为在各种用途的城市综合体结构内产生热量和电力的设施。材料和方法。作者的研究是基于对象生命周期评价方法,以及质量管理体系和选择和评价各种对象的环境和经济效率的理论。结果。根据研究,发现:-在选择最佳热电联产技术方面,热电联产工厂特别有趣,因为这种能源的许多技术类型都在那里实施;-生命周期评估方法可在热电联产工厂实施;-作者以蒸汽和燃气轮机热电联产电厂作为生命周期分析的对象,因为它比其他类似技术具有显着优势;-蒸汽及燃气轮机热电联产电厂的生命周期包括三个主要阶段:建造(安装、设置和调试)、运行和处置,这三个阶段在整个生命周期中所占的份额最大;-为蒸汽和燃气轮机热电联产电厂的每个不同生命周期阶段确定了最重要的过程。讨论与结论。所进行的生命周期分析得出结论,蒸汽和燃气轮机热电联产电厂的生命周期是现实生活中常用的,在选择最佳技术方面具有特殊利益,在整个生命周期中占据最大份额的三个主要阶段:建设、运行和处置。此外,确定并描述了蒸汽和燃气轮机热电联产电厂每个不同生命周期阶段的最重要过程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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