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UNCERTAINTY ANALYSIS OF CENTRIFUGAL COMPRESSOR AERO-PERFORMANCE TEST DATA: EFFECTS OF CORRELATED SYSTEMATIC ERROR

机译:离心压缩机航空性能试验数据的不确定性分析:相关系统误差的影响

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This paper presents the continuation of the work performed during the development of an uncertainty analysis method for estimating error levels in data gathered during factory aero-performance acceptance tests of centrifugal compressors. The previous work incorporated the effects of the variation and uncertainty levels associated with every parameter used in the calculation of centrifugal compressor aero-thermal performance. The work discussed herein focuses on the effects of the variation and uncertainty levels associated with the key measured variables, which are the parameters identified as having the greatest effect on the uncertainty of the performance measurements. Also included in this work is an evaluation of the effects of the correlated bias uncertainty components associated with said key variables, as well as comments on how these effects can be harnessed to reduce the uncertainty of the test data. The evaluation is performed via parametric studies, which present the test uncertainty levels achievable as a function of different correlation levels between the systematic uncertainty components of the measured data. Two different methods are used for the analysis of data measured for several machines. The first method is based on the direct use of the Monte Carlo simulation technique combined with real gas equations of state. The second method employs uncertainty propagation equations and the methodology included in the ASME PTC-19.1 (1998) test code. Both approaches use the polytropic compression model and equations for performance evaluation included in the ASME PTC 10 (1997) Power Test Code. Data gathered during an on-site acceptance test of a centrifugal gas compression package are used to illustrate the effects of the uncertainty in the knowledge of the gas composition handled by the compressor over the uncertainty levels that can be obtained with this type of tests.
机译:本文介绍了在开发不确定分析方法期间进行的工作继续,以估计在离心式压缩机的工厂航空性能验收测试中收集的数据中的误差水平。以前的作品纳入了与计算离心压缩机航空热性能计算中使用的每个参数相关的变化和不确定性水平的影响。这里讨论的工作侧重于与关键测量变量相关的变化和不确定性水平的影响,这些变量是对对性能测量的不确定性产生最大影响的参数。在本作中还包括在评估与所述关键变量相关的相关偏置不确定组件的影响,以及关于如何利用这些效果的评论,以减少测试数据的不确定性。评估通过参数研究进行,该参数研究呈现测试不确定性水平,作为测量数据的系统不确定组件之间的不同相关水平的函数。两种不同的方法用于分析测量的几种机器。第一种方法基于蒙特卡罗模拟技术的直接使用与真实的状态的真实气体方程相结合。第二种方法采用不确定性传播方程和ASME PTC-19.1(1998)测试代码中的方法。这两种方法都使用多端压缩模型和方程,用于ASME PTC 10(1997)电源测试代码中包含的性​​能评估。在离心气体压缩包的现场验收测试期间收集的数据用于说明在压缩机处理的气体组成的知识中的影响,在这种类型的测试中可以获得的不确定性水平。

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