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Re-evaluation of experimental data on the second virial coefficient for steam and development of its analytical representation as a function of the internal energy

机译:重新评估第二种病毒系数的实验数据,以作为内部能量的函数

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摘要

A re-evaluation of the second virial coefficient of steam is presented in the paper. The work is a part of broader effort to develop a formulation of the properties of dry and metastable steam suitable for CFD computations. The re-evaluation follows up previous work by Harvey and Lemmon [1], however with a special care for the lower temperature region close to the triple point and including more experimental data. The second virial coefficient was evaluated from volumetric (pvT) data, calorimetric measurements for saturated vapor, steam expansion experiments (measurements of the Joule–Thomson coefficient and the isothermal throttling coefficient) and measurements of the speed of sound. To accurately evaluate the uncertainty of calorimetric measurements, the uncertainty of the temperature derivative of the saturation pressure was determined based on refitting of the IAPWS saturation pressure formula to the experimental data. In the second step, the evaluated data and their uncertainties were used to develop an analytical formula to compute the second virial coefficient as function of internal energy in a range corresponding to the ideal-gas temperatures from 273.16 K to 1073.15 K. The choice of internal energy and density as independent variables is required for the CFD computations to avoid time-consuming iterations.
机译:本文提出了对第二种病毒系数的再评估蒸汽系数。该工作是开发适合CFD计算的干燥和亚稳蒸汽性能的制定的努力的一部分。重新评估通过Harvey和Lemmon [1]进行了以前的工作,但是对于靠近三点的较低温度区域,包括更实验数据的特殊注意。从体积(PVT)数据评估第二种病毒系数,对饱和蒸气的量热测量,蒸汽膨胀实验(焦耳 - 汤姆森系数和等温节流系数的测量)和声音速度的测量。为了准确评估量热测量的不确定性,基于将IAPWS饱和压力公式重新安装到实验数据的情况下确定饱和压力的温度衍生物的不确定性。在第二步中,使用评估的数据及其不确定性来开发分析公式,以将第二种病毒系数计算为内部能量在与273.16k至1073.15k的理想气体温度相对应的范围内的函数。 CFD计算需要能量和密度作为独立变量,以避免耗时的迭代。

著录项

  • 作者

    M. Duška; J. Hrubý;

  • 作者单位
  • 年度 2013
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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