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isothermal holding

Oil and gas
  • Date submitted
    2018-05-24
  • Date accepted
    2018-07-20
  • Date published
    2018-10-24

Moisture content of natural gas in bottom hole zone

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For the traditional problem of gas flow to a well in the center of circular reservoir, the influence of initial reservoir conditions on dynamics of gas moisture content distribution has been determined. Investigations have been performed in the framework of mathematical model of non-isothermal real gas flow through porous media where heat conductivity was considered to be negligible in comparison with convective heat transfer. It is closed by empirical correlation of compressibility coefficient with pressure and temperature, checked in previous publications. Functional dependence of moisture content in gas on pressure and temperature is based on empirical modification of Bukacek relation. Numerical experiment was performed in the following way. At first step, axisymmetric problem of non-isothermal flow of real gas in porous media was solved for a given value of pressure at the borehole bottom, which gives the values of pressure and temperature as functions of time and radial coordinate. Conditions at the outer boundary of the reservoir correspond to water drive regime of gas production. At the second step, the calculated functions of time and coordinate were used to find the analogous function for moisture content. The results of experiment show that if reservoir temperature essentially exceeds gas – hydrate equilibrium temperature than moisture content in gas distribution is practically reflects the one of gas temperature. In the opposite case, gas will contain water vapor only near bottom hole and at the rest of reservoir it will be almost zero. In both cases, pressure manifests its role through the rate of gas production, which in turn influences convective heat transfer and gas cooling due to throttle effect.

How to cite: Bondarev E.A., Rozhin I.I., Argunova K.K. Moisture content of natural gas in bottom hole zone // Journal of Mining Institute. 2018. Vol. 233. p. 492-497. DOI: 10.31897/PMI.2018.5.492
Metallurgy and concentration
  • Date submitted
    2017-10-26
  • Date accepted
    2017-12-25
  • Date published
    2018-04-24

Conditions of austenite diffusional transformation in steel of Cr–3Ni–Mo–V-composition with high austenite stability

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The paper investigated the bainitic steel of 10KHN3MFA grade, which is characterized by the increased tendency to display structural heredity in the forgings with large cross-sections. The samples have been studied for kinetics of diffusional transformation process both under continuous cooling and isothermal conditions, as well as its microstructure. It is determined that in the range of subcritical temperatures with cooling from 900 °C in the studied steel, the initial stage of separation of the ferrite phase takes place. It is shown for the first time that the diffusional ferrite-pearlite transformation fades. Previously it was believed that the beginning of transformation under isothermal conditions proceeds to the end. It was found out that the transformation begins immediately after the beginning of isothermal holding, without the generally accepted incubation period.

How to cite: Tsukanov V.V., Lebedeva N.V., Markova Y.M. Conditions of austenite diffusional transformation in steel of Cr–3Ni–Mo–V-composition with high austenite stability // Journal of Mining Institute. 2018. Vol. 230. p. 153-159. DOI: 10.25515/PMI.2018.2.153