首页> 外文会议>ASME turbo expo: turbine technical conference and exposition >DEVELOPMENT OF TEST STAND FOR MEASURING AERODYNAMIC, EROSION, AND ROTORDYNAMIC PERFORMANCE OF A CENTRIFUGAL COMPRESSOR UNDER WET GAS CONDITIONS
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DEVELOPMENT OF TEST STAND FOR MEASURING AERODYNAMIC, EROSION, AND ROTORDYNAMIC PERFORMANCE OF A CENTRIFUGAL COMPRESSOR UNDER WET GAS CONDITIONS

机译:湿气条件下测量离心压缩机气动,腐蚀和转子动力性能试验台的研制

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As the oil and gas industry addresses technology challenges for accessing gas reserves and enhancing the production of existing installations, wet gas compression becomes an important technology focus. When liquid is introduced into a compressor flow stream, the performance of the compressor is significantly influenced. Therefore, a concentrated effort is required to develop the tools to adequately predict the performance of the compressor when subjected to wet gas conditions. A series of tests were performed on a single stage compressor in a wet gas environment in order to provide empirical data for understanding how to predict wet gas performance. The compressor underwent aerodynamic, erosion, and rotordynamic performance testing. The tests were completed with a mixture of air and water at suction pressures of 10, 15, and 18.5 bar. The compressor was subjected to a multiphase flow with liquid volume fractions ranging from 0 to 3% (corresponding to a mass fraction of 73%) at three Mach numbers. Transient tests with liquid load variation were also done. This paper describes the test stand that was developed and operated for testing of the compressor in a wet gas environment. This includes a review of the overall test set-up, description of key test components and of the instrumentation installed on the compressor and the test loop. An overview of main test results is eventually shown.
机译:随着石油和天然气行业解决获取天然气储量和提高现有装置产量的技术挑战,湿气压缩已成为重要的技术重点。当将液体引入压缩机的气流中时,压缩机的性能会受到显着影响。因此,需要集中精力来开发工具,以在湿气条件下充分预测压缩机的性能。为了在湿气环境中的单级压缩机上进行一系列测试,以提供经验数据,以了解如何预测湿气性能。对压缩机进行了空气动力学,腐蚀和转子动力学性能测试。在吸气压力为10、15和18.5 bar的情况下,使用空气和水的混合物完成了测试。在三个马赫数下,使压缩机经受液体体积分数为0至3%(相当于质量分数73%)的多相流。还进行了液体负荷变化的瞬态测试。本文介绍了为测试湿气环境中的压缩机而开发和运行的试验台。其中包括对整体测试设置的审查,关键测试组件的描述以及压缩机和测试环路上安装的仪器的描述。最终显示了主要测试结果的概述。

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