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Thermodynamic analysis of high temperature nuclear reactor coupled with advanced gas turbine combined cycle

机译:先进燃气轮机联合循环的高温核反应堆热力学分析

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One of the most advanced and most effective technology for electricity generation nowadays based on a gas turbine combined cycle. This technology uses natural gas, synthesis gas from the coal gasification or crude oil processing products as the energy carriers but at the same time, gas turbine combined cycle emits SO2, NOx, and CO2 to the environment. In this paper, a thermodynamic analysis of environmentally friendly, high temperature gas nuclear reactor system coupled with gas turbine combined cycle technology has been investigated. The analysed system is one of the most advanced concepts and allows us to produce electricity with the higher thermal efficiency than could be offered by any currently existing nuclear power plant technology. The results show that it is possible to achieve thermal efficiency higher than 50% what is not only more than could be produced by any modern nuclear plant but it is also more than could be offered by traditional (coal or lignite) power plant.
机译:基于燃气轮机联合循环的当今最先进,最有效的发电技术之一。该技术使用天然气,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,燃气轮机联合循环向环境排放SO2,NOx和CO2。本文研究了结合燃气轮机联合循环技术的环保高温燃气核反应堆系统的热力学分析。被分析的系统是最先进的概念之一,它使我们能够以比目前任何现有核电站技术所提供的热效率更高的热效率发电。结果表明,有可能获得高于50%的热效率,这不仅比任何现代核电厂都能产生的热效率高,而且也比传统(煤或褐煤)发电厂所能提供的热效率高。

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