首页> 外文会议>International conference on nuclear engineering;ICONE-16 >COMPUTATIONAL FLUID DYNAMICS OF SUPERCRITICAL CARBON DIOXIDE TURBINE FOR BRAYTON THERMODYNAMIC CYCLE
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COMPUTATIONAL FLUID DYNAMICS OF SUPERCRITICAL CARBON DIOXIDE TURBINE FOR BRAYTON THERMODYNAMIC CYCLE

机译:布雷顿热力学循环的超临界二氧化碳透平的计算流体动力学

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The supercritical gas turbine Brayton cycle has been adopted in the secondary loop of the Generation IV Nuclear Energy Systems, and also planned to be installed in power conversion cycles of the nuclear fusion reactors. Supercritical carbon dioxide (SCO_2) is one of widely considered fluids for this application. The potential beneficiaries include the Secure Transportable Autonomous Reactor- Liquid Metal (STAR-LM), the Korea Advanced Liquid Metal Reactor (KALIMER), and the Battery Omnibus Reactor Integral System (BORIS) which is being developed at the Seoul National University. The reason for these welcomed applications is that the SCO_2 Brayton cycle can possibly achieve higher energy conversion efficiency than the steam turbine Rankine cycle. Gas turbine design is crucial part in achieving this high efficiency. In this paper, a one-dimensional gas turbine analysis methodology is applied for optimal design of the component. Case study result shows that the entire turbine efficiency is increased as hub radius is increased for a same number of stage conditions. Comparing the efficiency which is applied the boundary condition, 4 stage turbines have optimal efficiency.
机译:超临界燃气轮机布雷顿循环已被用于第四代核能系统的二次回路中,并且还计划安装在核聚变反应堆的功率转换循环中。超临界二氧化碳(SCO_2)是为此应用而广泛考虑的流体之一。潜在的受益者包括安全运输的液态金属自主反应堆(STAR-LM),韩国先进的液态金属反应堆(KALIMER)和首尔国立大学正在开发的电池综合反应堆集成系统(BORIS)。这些受欢迎的应用的原因是,SCO_2布雷顿循环可能比蒸汽轮机兰金循环获得更高的能量转换效率。燃气轮机设计是实现这种高效率的关键部分。在本文中,将一维燃气轮机分析方法应用于组件的优化设计。案例研究结果表明,在相同数量的阶段条件下,随着轮毂半径的增加,整个涡轮机效率会提高。比较应用边界条件的效率,四级涡轮机具有最佳效率。

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