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首页> 外文期刊>International journal of energy research >A modern injected steam gas turbine cogeneration system based on exergy concept
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A modern injected steam gas turbine cogeneration system based on exergy concept

机译:基于火用概念的现代喷射式蒸汽轮机热电联产系统

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摘要

Factors such as low capital cost, good match of power and heat requirements and proven reliability can sometimes lead an end user into purchasing gas turbines for use in a modern cogeneration plant. The steam-injected gas turbine is an attractive electrical generating technology for mitigating the impacts of rising energy prices. According to such mentioned above this paper is to provide results of an optimization study on cogeneration power cycle, which works by gas turbine with recuperator and injection steam added to the combustor of the gas turbine. The performance characteristics of the cycle based on energy and exergy concepts and based upon practical performance constraints were investigated. The effect of the recuperator on the cycle was greatly clarified. Results also show that the output power of a gas turbine increases when steam is injected. When extra steam has to be generated in order to be able to inject steam and at the same time to provide for a given heat demand, power generating efficiency increases but cogeneration efficiency decreases with the increasing of injected steam. Copyright.
机译:诸如较低的资本成本,良好的功率和热量要求匹配以及可靠的可靠性等因素有时会导致最终用户购买用于现代热电联产工厂的燃气轮机。蒸汽喷射式燃气轮机是一种有吸引力的发电技术,可减轻能源价格上涨带来的影响。根据以上所述,本文旨在提供对热电联产动力循环的优化研究结果,该热电联产动力循环是由燃气轮机与同流换热器和注入燃气的燃烧器一起工作的。研究了基于能量和火用概念以及基于实际性能约束的循环的性能特征。换热器对循环的影响已大大阐明。结果还表明,当注入蒸汽时,燃气轮机的输出功率会增加。当必须产生额外的蒸汽以能够注入蒸汽并同时提供给定的热量需求时,发电效率增加,而热电联产效率随注入蒸汽的增加而降低。版权。

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