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NUMERICAL SIMULATION OF THE PERFORMANCE OF AN AXIAL COMPRESSOR OPERATING WITH SUPERCRITICAL CARBON DIOXIDE

机译:超临界二氧化碳作用下轴流压气机性能的数值模拟

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Using supercritical carbon dioxide (SCO_2) as the working fluid of a closed Brayton cycle gas turbine is widely recognized nowadays, because of its compact layout and high efficiency for modest turbine inlet temperature. It is an attractive option for geothermal, nuclear and solar energy conversion. Compressor is one of the key components for the supercritical carbon dioxide Brayton cycle. With established or developing small power supercritical carbon dioxide test loop, centrifugal compressor with small mass flow rate is mainly investigated and manufactured in the literature; however, nuclear energy conversion contains more power, and axial compressor is preferred to provide SCO_2 compression with larger mass flow rate which is less studied in the literature. The performance of the axial supercritical carbon dioxide compressor is investigated in the current work. An axial supercritical carbon dioxide compressor with mass flow rate of 1000kg/s is designed. The thermodynamic region of the carbon dioxide is slightly above the vapor-liquid critical point with inlet total temperature 31 OK and total pressure 9MPa. Numerical simulation is then conducted to assess this axial compressor with look-up table adopted to handle the nonlinear variation property of supercritical carbon dioxide near the critical point. The results show that the performance of the design point of the designed axial compressor matches the primary target. Small corner separation occurs near the hub, and the flow motion of the tip leakage fluid is similar with the well-studied air compressor. Violent property variation near the critical point creates troubles for convergence near the stall condition, and the stall mechanism predictions are more difficult for the axial supercritical carbon dioxide compressor.
机译:由于密闭式布雷顿循环燃气轮机的紧凑结构和对适中的涡轮机进口温度的高效率,如今已广泛认可使用超临界二氧化碳(SCO_2)作为封闭式布雷顿循环燃气轮机的工作流体。对于地热,核能和太阳能的转换,这是一个有吸引力的选择。压缩机是超临界二氧化碳布雷顿循环的关键组件之一。随着建立或开发小功率超临界二氧化碳试验回路,文献中主要研究和制造了小质量流量的离心压缩机。然而,核能转换包含更多的功率,而轴向压缩机更适合于以较大的质量流量提供SCO_2压缩,这在文献中很少进行研究。在当前的工作中,对轴向超临界二氧化碳压缩机的性能进行了研究。设计了一种质量流量为1000kg / s的轴流超临界二氧化碳压缩机。二氧化碳的热力学区域略高于气液临界点,入口总温度为31 OK,总压力为9MPa。然后进行数值模拟以评估该轴流式压缩机,并采用查找表来处理临界点附近超临界二氧化碳的非线性变化特性。结果表明,所设计的轴流压缩机的设计点性能与主要目标相符。轮毂附近发生小角分离,并且尖端泄漏流体的流动运动与经过充分研究的空气压缩机相似。临界点附近的暴力特性变化为失速条件附近的收敛带来麻烦,并且对于轴向超临界二氧化碳压缩机,失速机理的预测更加困难。

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