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Analyses of the Costs Associated With Very High Turbine Entry Temperatures in Helium Recuperated Gas Turbine Cycles for Generation IV Nuclear Power Plants

机译:IV核电站氦液体汽轮机循环中具有非常高涡轮机入口温度的成本分析

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Previous analyses of generation IV (GEN IV) helium gas turbine cycles indicated the possibility for high turbine entry temperatures (TETs) up to 1200?°C in order to improve cycle efficiency, using improved turbine blade material and optimum turbine cooling fractions. The purpose of this paper is to understand the effect on the levelized unit electricity cost (LUEC) of the nuclear power plant (NPP), when the TET is increased to 1200?°C from an original TET of 950?°C and when an improved turbine blade material is used to reduce the turbine cooling fraction. The analyses focus on the simple cycle recuperated (SCR) and the intercooled cycle recuperated (ICR). The baseline LUECs of the NPPs were calculated as $61.84/MWh (SCR) and $62.16/MWh for a TET of 950?°C. The effect of changing the turbine blades improved the allowable blade metal temperature by 15% with a reduction in the LUEC by 0.6% (SCR) and 0.7% (ICR). Furthermore, increasing the TET to 1200?°C has a significant effect on the power output but more importantly it reduces the LUECs by 22.7% (SCR) and 19.8% (ICR). The analyses intend to aid development of the SCR and ICR including improving the decision making process on choice of cycles applicable to the gas-cooled fast reactors (GFRs) and very high-temperature reactors (VHTRs), where helium is the coolant.
机译:前一代(第四族)氦气涡轮机循环的先前分析表明,使用改进的涡轮叶片材料和最佳涡轮冷却级分,以提高循环效率的高达1200°C的高达1200°C的可能性。本文的目的是了解核电站(NPP)的稳定单元电力成本(LUEC)的影响,当Tet从950°C的原始Tet增加到1200°C时,当改进的涡轮叶片材料用于减少涡轮冷却级分。分析专注于恢复的简单循环(SCR)和恢复的间电压循环(ICR)。 NPP的基线Luecs按61.84 / mWh(SCR)计算,TET为61.84 / mWh(SCR),为950°C的TET为62.16 / MWH。改变涡轮机叶片的效果随着0.6%(SCR)和0.7%(ICR)的10.6%(SCR),将允许的刀片金属温度提高了15%的15%。此外,将TET增加到1200?°C对功率输出具有显着影响,但更重要的是,它将Luecs减少22.7%(SCR)和19.8%(ICR)。分析打算帮助开发SCR和ICR,包括改善关于适用于气体冷却的快速反应器(GFR)和非常高温反应器(VHTRS)的循环选择的决策过程,其中氦气是冷却剂。

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