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A METHOD AND APPARATUS FOR DIRECT ENTHALPY RISE MEASUREMENT FOR GAS COMPRESSION

机译:一种用于直接焓上升测量气体压缩的方法和装置

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Gas property prediction is necessary for proper design of compressors. Equations of state are utilized to predict the thermo-physical gas properties needed for such calculations. These are semi-empirical models that allow the calculation of thermodynamic properties such as density, enthalpy, and speed of sound of gas mixtures for known pressures and temperature. Currently, there is limited or no data publically available to verify the results of these equation of state calculations for the range of pressures, temperatures and gas compositions relevant to many oil & gas applications. Especially for isentropic enthalpy head (i.e., the enthalpy rise along constant entropy lines), which is a critical parameter required to accurately design and performance test compressors, limited public domain data is available for equation of state validation. In this paper a method and test apparatus is described to measure compression enthalpy rise directly. In this apparatus a test gas is compressed using a fast acting piston inside an adiabatic autoclave. Test results are then corrected using calibration efficiencies from a known reference gas compression process at a similar Reynolds number. The paper describes the test apparatus, calibration, measurement methodology, and test results for one complex hydrocarbon gas composition at elevated temperatures and pressures. An uncertainty analysis of the new measurement method is also presented and results are compared to several equations of state. The results show that commonly used equations of state significantly under-predicted the compression enthalpy rise for the test gas case by more than 6%.
机译:用于适当设计压缩机的气体预测是必要的。使用状态方程来预测这种计算所需的热物理气体特性。这些是半经验模型,允许计算热力学性质,如密度,焓和气体混合物的声音速度,以了解已知的压力和温度。目前,有限或没有公开的数据可用于验证与许多石油和天然气应用相关的压力,温度和气体组合物范围的状态计算方程的结果。特别是对于等式焓头(即,沿恒定熵线的焓升高),这是准确设计和性能测试压缩机所需的关键参数,有限的公共域数据可用于状态验证的等式。在本文中,描述了一种方法和测试装置来直接测量压缩焓上升。在该装置中,使用在绝热性高压釜内部的快速作用活塞压缩测试气体。然后使用从类似的雷诺数的已知参考气体压缩过程中的校准效率来校正测试结果。本文介绍了在升高的温度和压力下对一个复合烃气体组合物的测试装置,校准,测量方法和测试结果。还提出了对新测量方法的不确定性分析,并将结果与​​几个状态方程进行了比较。结果表明,常用的状态方程显着下降预测测试气体壳体的压缩焓升高超过6%。

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