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Numerical investigation of advanced gas turbine combined cycle coupled with high-temperature nuclear reactor and cogeneration unit

机译:先进燃气轮机联合高温核反应堆及热电联产机组的数值研究

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In the European Union by 2050, more than 80% of electricity should be generated using nongreenhousegases energy technology. Nuclear power systems share at present about 15% of the power market and thistechnology can be the backbone of a carbon-free European power system. Energy market transitions are similar to global pathways were analysed in the Intergovernmental Panel on Climate Change report. From a practical point of view currently, the most advanced and most effective technology for electricity generation is based on a gas turbine combined cycle. This technology in a normal way uses natural gas, synthesis gas from the coal gasification or crude oil processing products as the energy carriers but at the same time, such system emits sulphur oxides, nitrogen oxides, and CO_(2)to the environment. In thepresent paper, a thermodynamic analysis of environmentally friendly power plant with a high–temperature gas nuclear reactor and advanced configuration of gas turbine combined cycle technology is investigated. The presented analysis shows that it is possible to obtain for proposed thermalcycles an efficiency higher than 50% which is not only more than could be offered by traditional coal power plant but much more than can be proposed by any other nuclear technology.
机译:在欧盟,到2050年,应使用非温室气体能源技术发电80%以上。目前,核电系统约占电力市场的15%,这项技术可以成为无碳欧洲电力系统的基础。政府间气候变化专门委员会报告分析了能源市场的过渡与全球路径的相似。从实际的角度来看,目前最先进,最有效的发电技术是基于燃气轮机联合循环的。该技术通常使用天然气,煤气化或原油加工产品中的合成气作为能源载体,但与此同时,该系统也会向环境排放硫氧化物,氮氧化物和CO_(2)。本文研究了具有高温燃气核反应堆和先进配置的燃气轮机联合循环技术的环保型电厂的热力学分析。提出的分析表明,对于拟议的热循环,可以获得高于50%的效率,这不仅比传统燃煤发电厂提供的效率更高,而且比任何其他核技术所建议的效率都更高。

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