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A STUDY ON NUMERICAL MODELING OF SUPERCRITICAL CO_2 FLOW IN CENTRIFUGAL COMPRESSORS

机译:离心压缩机超临界CO_2流动的数值模拟研究

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摘要

Using supercritical carbon dioxide (SC-CO_2) as working fluid for energy systems has many benefits including high efficiency, compact turbomachinery and the abundance of CO_2. A very important issue for design optimization and performance analysis of future supercritical Brayton cycles is concerned with the SC-CO_2 flow inside high speed compressor/turbine machinery. The objective of this paper is to present a novel modeling approach to numerical simulations of the flow inside a high-speed compact compressor. The approach capitalized on using three different physical and mathematical 1-D models (compressible and incompressible flow using actual properties of SC-CO_2 and a compressible ideal gas model) to verify the predictive capabilities of a 3-D incompressible model. The latter model has been used to perform simulations for a complete multidimensional detailed model of a SC-CO_2 compressor. It has been shown that the model's predictions are consistent with the published technical data for the compressor employed in the experimental loop developed at SANDIA National Laboratories.
机译:将超临界二氧化碳(SC-CO_2)用作能源系统的工作流体具有许多好处,包括高效率,紧凑的涡轮机械和大量的CO_2。对于未来超临界布雷顿循环的设计优化和性能分析,一个非常重要的问题是高速压缩机/涡轮机内部的SC-CO_2流动。本文的目的是提出一种新颖的建模方法,以对高速紧凑型压缩机内部的流动进行数值模拟。该方法利用了三种不同的物理和数学一维模型(使用SC-CO_2的实际属性和可压缩理想气体模型的可压缩和不可压缩流量)来验证3-D不可压缩模型的预测能力。后一种模型已用于对SC-CO_2压缩机的完整多维详细模型进行仿真。已经表明,该模型的预测与SANDIA国家实验室开发的实验回路中使用的压缩机的已发布技术数据一致。

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