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Thermodynamic Analysis of Advanced Gas Turbine Combined Cycle Integration with a High-Temperature Nuclear Reactor and Cogeneration Unit

机译:高温核反应器和热电联产单位先进燃气轮机联合循环整合的热力学分析

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摘要

The EU has implemented targets to achieve a 20% share of energy from renewable sources by 2020, and 32% by 2030. Additionally, in the EU countries by 2050, more than 80% of electrical energy should be generated using non-greenhouse gases emission technology. At the same time, energy cost remains a crucial economic issue. From a practical point of view, the most effective technology for energy conversion is based on a gas turbine combined cycle. This technology uses natural gas, crude oil or coal gasification product but in any case, generates a significant amount of toxic gases to the atmosphere. In this study, the environmentally friendly power generation system composed of a high-temperature nuclear reactor HTR integrated with gas turbine combined cycle technology and cogeneration unit is thermodynamically analysed. The proposed solution is one of the most efficient ways for energy conversion, and what is also important it can be easily integrated with HTR. The results of analysis show that it is possible to obtain for analysed cycles thermal efficiency higher than 50% which is not only much more than could be proposed by typical lignite or hard coal power plant but is also more than can be offered by nuclear technology.
机译:欧盟已实施目标,以至于2020年从可再生能源实现20%的能源份额,到32%至2030年。此外,在2050年的欧盟国家,应使用非温室气体排放产生超过80%的电能。技术。与此同时,能源成本仍然是一个至关重要的经济问题。从实际的角度来看,最有效的能量转换技术基于燃气轮机组合循环。该技术采用天然气,原油或煤气化产品,但在任何情况下,为大气产生大量有毒气体。在本研究中,热力学地分析了由与燃气轮机联合循环技术和热电联产单元集成的高温核反应堆HTR组成的环保发电系统。所提出的解决方案是能量转换最有效的方法之一,而且它也很重要它可以很容易地与HTR集成。分析结果表明,可以获得分析的循环热效率高于50%,这不仅仅是通过典型的褐煤或硬煤电厂提出的远远大于,而且还可以通过核技术提供。

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