首页> 外文会议>14th International Conference on Nuclear Engineering 2006(ICONE14) vol.3 >Assessment of HTGR Helium Compressor Analysis Tool Based on Newton-Raphson Numerical Application to Throughflow Analysis
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Assessment of HTGR Helium Compressor Analysis Tool Based on Newton-Raphson Numerical Application to Throughflow Analysis

机译:基于Newton-Raphson数值分析的HTGR氦压缩机分析工具评估

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This study describes the development of a computer program for analyzing the off-design performance of axial flow helium compressors, which is one of the major concerns for the power conversion system of a high temperature gas-cooled reactor (HTGR). The compressor performance has been predicted by the aerodynamic analysis of meridional flow with allowances for losses. The governing equations have been derived from Euler turbomachine equation and the streamline curvature method, and then they have been merged into linearized equations based on the Newton-Raphson numerical method. The effect of viscosity is considered by empirical correlations to introduce entropy rises caused by primary loss sources. Use of the method has been illustrated by applying it to a 20-stage helium compressor of the GTHTR300 plant. As a result, the flow throughout the stages of the compressor has been predicted and the compressor characteristics have been also investigated according to the design specification. The program results show much better stability and good convergence with respect to other throughflow methods, and good agreement with the compressor performance map provided by JAEA.
机译:这项研究描述了用于分析轴流氦压缩机的非设计性能的计算机程序的开发,这是高温气冷堆(HTGR)的功率转换系统的主要问题之一。通过对子午流进行空气动力学分析,并考虑到损耗,可以预测压缩机的性能。从欧拉涡轮机方程和流线曲率法推导了控制方程,然后基于牛顿-拉夫森数值方法将它们合并为线性方程。通过经验相关性考虑粘度的影响,以引入由主要损耗源引起的熵升高。通过将该方法应用于GTHTR300工厂的20级氦气压缩机已说明了该方法的使用。结果,已经预测了整个压缩机级的流量,并且还根据设计规范研究了压缩机的特性。程序结果显示出相对于其他通流方法更好的稳定性和良好的收敛性,并且与JAEA提供的压缩机性能图有很好的一致性。

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