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General Fluid System Simulation Program to Model Secondary Flows in Turbomachinery

机译:通用流体系统仿真程序,用于对涡轮机械中的二次流进行建模

摘要

The complexity and variety of turbomachinery flow circuits created a need for a general fluid system simulation program for test data anomaly resolution as well as design review. The objective of the paper is to present a computer program that has been developed to support Marshall Space Flight Center's turbomachinery internal flow analysis efforts. The computer program solves for the mass. energy and species conservation equation at each node and flow rate equation at each branch of the network by a novel numerical procedure which is a combination of both Newton-Ralphson and successive substitution method and uses a thermodynamic property program for computing real gas properties. A generalized, robust, modular, and 'user-friendly' computer program has been developed to model internal flow rates, pressures, temperatures, concentrations of gas mixtures and axial thrusts. The program can be used for any network for compressible and incompressible flows, choked flow, change of phase and gaseous mixturecs. The code has been validated by comparing the predictions with Space Shuttle Main Engine test data.
机译:涡轮机械流路的复杂性和多样性导致需要一种通用的流体系统仿真程序来测试数据异常分辨率以及进行设计审查。本文的目的是提出一种计算机程序,该程序已开发出来,可支持马歇尔太空飞行中心的涡轮机械内部流量分析工作。计算机程序解决了难题。通过新颖的数值程序将网络中每个节点的能量和物质守恒方程式以及网络每个分支的流量方程式结合起来,该程序是牛顿-拉尔夫森方程和逐次替换方法的组合,并使用热力学属性程序来计算实际气体属性。已开发出通用,可靠,模块化且“用户友好”的计算机程序,以对内部流速,压力,温度,混合气体浓度和轴向推力建模。该程序可用于可压缩和不可压缩流量,阻塞流量,相变和气态混合物的任何网络。该代码已通过将预测与航天飞机主机测试数据进行比较而得到验证。

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