首页> 外文会议>2002 ASME International Mechanical Engineering Congress and Exposition , Nov 17-22, 2002, New Orleans, Louisiana >NOVEL GAS TURBINE CYCLE WITH INTEGRATION OF CO_2 RECOVERY AND LNG CRYOGENIC EXERGY UTILIZATION
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NOVEL GAS TURBINE CYCLE WITH INTEGRATION OF CO_2 RECOVERY AND LNG CRYOGENIC EXERGY UTILIZATION

机译:整合了CO_2回收和LNG低温利用的新型燃气轮机循环

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摘要

In this paper we propose a new gas turbine cycle, which employs a semi-closed recuperative gas turbine with LNG utilization. Nitrogen is selected as working fluid with air induced at the inlet of compressor. The inlet temperature of the compressor is kept pretty low with LNG cooling, and turbine inlet temperature can be very high because of internal combustion, and higher average temperature of heat absorption of the cycle is achieved due to recuperation. As a result, the cycle efficiency can reach as high as 70% (TIT=1250□). Furthermore, along the process of LNG vaporization, turbine exhaust is cooled down; CO_2 in the mixture is solidified and separated without extra power consumption. Two different natural gas sendout pressures (7.0 and 3.0 MPa) are considered. Their performances are simulated and a comprehensive analysis is carried out. The performance of the new cycle, CO_2 recovery, and heat transfer in LNG vaporizer are discussed in detail. The new cycle proposed here is based on the integration of carbon dioxide recovery and LNG cryogenic exergy utilization, and it will contribute to both improvement on power generation efficiency and reduction of greenhouse gas emission.
机译:在本文中,我们提出了一种新的燃气轮机循环系统,该循环系统采用了利用LNG的半封闭回热式燃气轮机。选择氮气作为工作流体,并在压缩机进口处引入空气。 LNG冷却可将压缩机的入口温度保持在相当低的水平,并且由于内燃机的作用,涡轮机的入口温度可能会非常高,并且由于换热,可以达到更高的循环平均吸热温度。结果,循环效率可高达70%(TIT = 1250□)。此外,随着液化天然气的汽化,涡轮机的废气被冷却。混合物中的CO_2可以固化和分离,无需额外的功率消耗。考虑了两种不同的天然气输出压力(7.0和3.0 MPa)。对它们的性能进行了仿真,并进行了综合分析。详细讨论了新循环的性能,CO_2的回收以及LNG气化器中的传热。此处提出的新循环基于二氧化碳回收和LNG低温火用的综合利用,将有助于提高发电效率和减少温室气体排放。

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